Features
Sustaining vistas of Peradeniya Campus landscape beyond 80 years
By Professor Emeritus Nimal Gunatilleke,
(nimsavg@gmail.com)
Member, Sustainable Development Council of Sri Lanka
The Peradeniya University was literally ‘more open than usual’ on the 01 July 2023, when it celebrated the very first Founder’s Day on her 80th (or 81st to be exact) birthday. Thousands of people, the majority of them being the young aspirants to higher education, thronged this world-renown Garden University of Sri Lanka on that day. They would have been, no doubt, enthralled by the scenic beauty of university park while paying equal or more attention to an assortment of events organised by the university within its library- and different faculty premises.
Amongst them, the Great Chronicle – Mahawansa text, which was selected as the authentic copy to be listed among the 64 new items of documentary heritage inscribed on the UNESCO’s Memory of the World (MoW) International Register in 2023, was on display at the new wing of the University Library. Also, the memorabilia of Prof. Ediriweera Sarachchandra including his hand-written briefs and the original costumes of the iconic Maname stage drama and a selection of rare paintings and line drawings of George Keyt MBE (1901 – 1993), who is considered Sri Lanka’s most distinguished modern painter was on display. Likewise, different faculties, too, had their own thematic exhibits for public viewing.
The university should be congratulated on organising such an event for the first time in its history for which the public response was so outpouring and the University was less than prepared for this ‘widely open-than-usual’ blitz. It reflects the inquisitiveness of people from all walks of life to see for themselves what is going on inside these portals of higher learning about which a gloomy picture has been painted more often than not.
I was informed by a former employee of the university that 17 busloads of students, their parents, and teachers, all from a single school in Jaffna had come, probably traveling overnight.
The lead taken by Peradeniya University in celebrating Founder’s Day with an Open Day, which most universities the world over has as a regular feature in their annual calendar is indeed heartening. It should surely be on the annual calendar of all our universities. Even more remarkable was that the Park was cleaned up of litter and residual garbage almost completely the following day and a special tribute to the University Health Services in charge of the garbage disposal among the many other chores they performed to their utmost to cope with the sudden deluge. Thankfully, the heavy rains that followed would have washed away any undesirables that remained.
University Park
The walk along the maze of driveways and footpaths within the University Park seemed to have fascinated the young and the old alike on this Open Day, as I myself, was witness to it. In this context, what came to my mind immediately was the Queen’s Drive on the occasion of the formal opening of the University of Ceylon at Peradeniya by HRH Duke of Edinburgh K.G in the presence of H. M. Queen Elizabeth II on the 20th April 1954, 69 years ago. The panoramic landscape along this Queen’s Drive on which the Royal Entourage was escorted by the first Vice Chancellor of the University Sir William Ivor Jennings is vividly described in the guide booklet that was prepared on the occasion. The landscape of the Peradeniya University Park which was planned by Sir Patrick Abercrombie and Mr. Clifford Holliday and implemented to near perfection by the renowned landscape architect Mr. Shirley d’Alwis during the preceding 10 years has been described in this booklet in the following way: ‘IN TWENTY YEARS’ TIME, THE UNIVERSITY PARK SHOULD BE MORE BEAUTIFUL THAN THE ROYAL BOTANIC GARDENS’.
This was probably not an impetuous statement as Sir Ivor was already well aware of the outstanding beauty of the Royal Botanic Gardens, which he acknowledges as among the finest botanic gardens in the tropics at the time. He goes on to quote Count Angelo de Gubernatis – a mid-Victorian visitor from Naples in the former’s book ‘Kandy Road’: ‘ If India is the paradise of Asia; if the Island of Ceylon is the Paradise of India; the botanic Gardens of Peradeniya is the paradise of Ceylon, and thus, as has been said the Heart of paradise’(sic. p.59).
Most likely Sir Ivor was referring to the approx. 320-acre (130 ha) University Park Landscape which he compared with the Peradeniya Botanic Gardens. A detailed description of the avenue planting along the main driveway and the selection of tree species displaying the University Colours (Scarlet and gold) twice a year is given in the said booklet. Except for the larger Mara trees along the Galaha road and some rubber trees still surviving on the New Peradeniya Estate (now the University Park) amidst the buildings, all other trees were planted or have grown from seed in nurseries at the time the landscaping was originally planned.
When trees and woody climbers are in bloom (mostly planted exotics and some escapees from the Royal Botanic Gardens across the road), it is truly a magnificent spectacle to behold. For someone with a botanical interest seeing the nuanced seasonal changes in leafing and flowering of the manicured gardens and the associated woodlands is indeed a delight beyond measure.
However, the Mara trees are more than a century old now, and with the added weight of the aggressively growing woody creepers/lianes overtopping these tree giants pose serious risks of their limbs falling off during strong winds causing dangers to passersby. The curatorial staff of the University should join hands with those of the Botanic Gardens personnel, who are more professionally trained to manage its Park while incorporating creative ideas coming from academia through their research pursuits. In that way, the panoramic landscapes of the two institutions together uniquely positioned on either side of the Kandy Road would be even more beautiful than what Sir Ivor would have envisioned.
However, conventional landscaping with elegantly designed and manicured lawns, beds of exotic flower species including potential invasives, rows of non-native trees, etc., may help shape an aesthetically appealing, relaxing campus environment, but it also could pose a veiled threat to the native wildlife populations. The invasive and non-native species without their natural predators or normal control mechanisms, can spread exponentially and become dominant which we are already witnessing in the Peradeniya University Park.
History of Forest Conservation Initiatives in Hantana Mountain Amphitheatre
In addition to the 130 ha of the University Park in the lower slopes and the valley of the Mahaweli Ganga (part of Ganga Wata Korale), approximately 1100 acres (445 ha) on the upper slopes of Hantana forms a mountain amphitheatre draining to Maha Oya which meanders through the University Park and deposit its relatively clean water to the Mahaweli river just above the railway bridge. Hantana Ridge is the last westward bastion of the Hantana mountain range which forms the catchment from which the University continued to draw its water supply during Sir Ivor’s time until recent times.
The Hantana water scheme was initiated during the Second World War period to ensure a steady pipe-borne water supply by the troops of Lord Louis Mountbatten’s South-East Asia Command who occupied this parkland.
Realising its value as a watershed for the campus community, Sir Ivor was of the view that the Upper Hantana Campus land bequeathed from the Old Peradeniya Tea Estate should go back to a jungle with the added benefit of earning revenue from its timber that would provide a valuable endowment. Indeed, the Forest Department was advised to plant the area first with Mahogany in between the shade trees (mostly Albizzia spp.) of the abandoned tea plantation. In more recent times, in particular, during the USAID-funded Reforestation of Upper Mahaweli Catchment project in the 1980s, the remaining pathana grasslands on ridge tops and upper slopes were planted with Caribbean pine. About 100 ha or 14% of the University lands have been planted with pines during this project.
Large-scale planting of Pinus spp. in the watershed areas was (and still is) vehemently criticised by environmentalists having experienced negative impacts on biodiversity, soil, and water conservation exacerbated by frequent fire hazards. The University of Peradeniya was very much a contributor to this nationally important environmental debate on public media at the time, so much so that a symposium on ‘Reforestation with Pinus in Sri Lanka’ was jointly organized by the University of Peradeniya and the British High Commission on behalf of the Overseas Development Administration of the UK, in 1988, to address this sensitive issue between the environmentalists and forestry professionals. Being a part of the catchment of the Victoria Reservoir built with generous British assistance and together with the keen interest of the then British High Commissioner to Sri Lanka David Gladstone on sensitive environmental issues of this nature would have paved the way for the British sponsorship of the event.
Quoting famous poets Longfellow, Tennyson, and Kipling, on ‘black and gloomy temperate pines’ ( in Hiawatha) in his Keynote Address, the High Commissioner conveyed the message that the objective of organising the symposium was to come to the grips of the problem of Pinus cultivation in Sri Lanka and if possible to reach a consensus on how to handle the issue of commercial and scientific considerations in guiding the hand that sows the seeds of the new forests or the tree farms. Reinforcing his standpoint, he went to the extent of posing 17 questions on Pinus cultivation in Sri Lanka for which answers were sought from the participating professional and scientific community at the end of the symposium, before embarking on supporting any further large-scale afforestation schemes based on Pine.
This landmark symposium probably would have positively contributed to the inclusion of a University of Peradeniya- Oxford Forestry Institute (UP-OFI) Link project to the overall Aid/Loan program on the Forestry Sector Development Plan for Sri Lanka with bilateral and multilateral funding in the early 1990s. The UP-OFI Link project was primarily geared toward facilitating collaboration in training and research in forest management.
Around the same time, Dr. Nihal Karunaratne, a distinguished citizen of Kandy, while being a member of the University Council in the late 1980s was instrumental in establishing a Forestry Subcommittee on ‘Reforestation of the University Lands’ and strongly supported the ongoing conservation efforts at the time. We ourselves being members of the same committee, while supporting his noble initiative, also proposed that a selected portion of the University land could be used as a crop gene pool garden in which the rare and valuable varieties of food crops, indigenous medicinal plants, industrial crops like rubber, and others could be maintained for posterity.
Being located in an environmentally favourable landscape in close proximity to the germplasm gardens of the Department of Agriculture and surrounded by traditional Kandyan spice gardens with fast-disappearing valuable gene pools of mixed species in them (spices, fruits and beverages like coffee), it would be a tremendous boost to agro-biodiversity conservation that the University could offer at a local, regional and even global scale.
As an example, the University of California, Riverside Citrus Variety Collection (UCR-CVC), USA is one of the most important collections of citrus diversity in the world. This collection with over 1000 accessions spread over in approx. 10 ha on the UCR campus is used for long-term research in plant breeding and educational extension services
(https://en.wikipedia.org/wiki/University_of_California,_Riverside_Citrus_Variety_Collection#:~:text=The%20collection%20is%20composed%20of,in%20the%20Rutaceae%20subfamily%20Aurantioideae).
On a similar mission, we received a very favourable response from the Rubber Research Institute of Sri Lanka at that time for establishing a rubber gene pool garden (seed orchard) with FAO assistance but unfortunately, these efforts did not materialise.
Subsequently, there was a subcommittee of the Lands, Buildings, and their Maintenance Committee (LBMC) for developing a Master Plan for Landscaping the University of Peradeniya in the 1990s especially to address primarily the issues of encroachments and requests for timber extraction. Towards the master plan preparation, maps depicting i) Land Use, ii) Contours and Slope Classes at 10 m intervals [1:10,000], and iii) physical structures were prepared with support from the UP-OFI link project and handed over to the then Vice-Chancellor. Around the same time, yet another project – The Multipurpose Tree Research Network of the Faculty of Agriculture in collaboration with the Sri Lanka-German Upper Mahaweli Watershed Management Project – was mooted to conserve stream reservations – Maha Oya in particular – with aesthetically pleasing landscaping incorporating appropriate tree planting. Currently, there is an urgent need for this as the Maha Oya embankments are eroding as a result of flash floods arising upstream in Upper Hantana with a threat to the very existence of the playing fields.
While serving on those committees and with our own experience in forest ecology, we initiated several forest restoration experiments in lower Hantana i) Reforesting pathana grasslands and ii) converting Pinus plantations into mixed-species plantations in 1991 and 2004 respectively, using several broad-leaved species that are widely used for timber and medicinal uses in Kandyan districts viz. Gini Sapu, Bedi Del, Mahogany, Albizzia, Bulu, and Mee.
Both these trials have proved to be successful applied ecological research models and after 20 years or more; these long-term forestry trials have demonstrated that indeed pathana grasslands as well as Pinus plantations can be converted to native species stands. Consequently, these two sites are being regularly used as demonstration models in providing training in restoration ecological fundamentals to the students at Peradeniya and other universities over the last two decades.
The above is an abridged chronological narrative of the history of some of the conservation efforts by the University of Peradeniya (formerly University of Ceylon) during the past eighty years since Sir Ivor’s initial recommendation for establishing revenue-earning forests in Hantana Watersheds. However, in the present circumstances, while aligning with our legally binding national commitments to the global conventions on the environment (UNCBD, UNFCCC, and UNCCD), there is a need for a transformative shift to a more ecologically sustainable campus landscape, in particular, the upper Hantana hill slopes.
We need to reassess the ecological and socio-economic context that this important watershed provides in this era of our national commitment to achieving Sustainable Development Goals – the UN’s blueprint for a more sustainable future for all. Their adoption could place environmental restoration, sustainability, adapting to climate change, and ensuring water security under the international spotlight. Two classic textbook examples of this kind of long-term watershed restoration projects, to take a cue from, are the Hubbard Brook Watershed Ecosystem in New Hampshire and the equally famous Catskill/Delaware watershed project in upstate New York, both in the USA. With the availability of modern computer and sensor technologies, long-term hydrological and meteorological monitoring in the Hantana watershed would be an invaluable teaching and research tool with the potential of upscaling onto all major river systems deriving wider-scale benefits in the era of changing climate.
Sustaining Peradeniya Campus Landscape as outdoor living laboratories
The campus landscape is the most highly visible representation of the university and its relationship with nature. Just like its buildings, the campus landscape can be seen as the physical embodiment of the cultural and other values of the region it represents – Kanda Uda Rata – being located at the Northwestern edge of the central highlands. As such, the campus landscape together with the surrounding Kandyan Spice Gardens of traditional communities in Uda Peradeniya, Dangolla, Penideniya, Hindagala and Mahakanda, is an asset for cultural sustainability, among others. It offers the potential to integrate environmental, economic, and cultural sustainability entwined with intellectual well-being into the fabric of the university for generations to come.
The present site for the then University of Ceylon chosen after an intense ‘battle for sites’ over a decade or more since the 1920s has emerged as a landscape that expresses the soul and personality of this outstanding institution about which Sir Ivor once had said that it had one of the most beautiful environments in the world. So many literary works have been associated with Hantana Mountain Range and its foothills. Consequently, the campus landscape with the human-dominated University Park and the nature-dominated Upper Hantana Wilderness has the potential to become a key instrument to advance university sustainability and a legacy for future generations to build upon.
A major portion of the Upper Hantana watershed is included in the Hantana Environmentally Protected Area (EPA) of the Central Environmental Authority declared under a Gazette notification (# 1641/28) which is under review at present. As such, the Hantana watershed is pronounced as a climatically benign and land degradation-neutral area of national importance with its inherent biological richness and ecosystem services effectively conserved.
The world today faces extraordinary environmental challenges and all Universities, being caldrons of innovative thinking have a crucial role to play in meeting this challenge of utilizing the campus landscapes as the best outdoor laboratories for socio-cultural, economic, and scientific exploration and management.
Today, the Peradeniya University campus landscape together with its neighbouring Kandyan Spice Gardens of world repute provides multifarious functions, including aesthetic appreciation, recreational facilities, and a living laboratory for academic pursuits while delivering crucial environmental services including ecological safeguards.
The ‘Living Campus Landscape’ concept could be incorporated into the University’s Environmental Sustainability Strategy, specifically to address the challenges of a growing peri-urban campus alongside the opportunities for a healthy environment provides for people and nature. For example, sustainable campus landscapes can demonstrate effective reduction of the university’s carbon footprint. In this context, perhaps a more rationalised perspective than what Sir Ivor originally envisioned to meet the current and future challenges through strengthening partnerships with public and private sector institutions and local, regional, and global communities including the ever-loyal alumni in these changing climates is the need of this critical hour.
Universities the world over are no longer ivory towers; they are inevitably the microcosms of the larger society with all its attendant advantages and drawbacks churning up from within. An enduring legacy of sustainability backed by meaningful transformative changes integrating scholarship with environmental stewardship can inspire generations to come.
Features
When floods strike: How nations keep food on the table
Insights from global adaptation strategies
Sri Lanka has been heavily affected by floods, and extreme flooding is rapidly becoming one of the most disruptive climate hazards worldwide. The consequences extend far beyond damaged infrastructure and displaced communities. The food systems and supply networks are among the hardest hit. Floods disrupt food systems through multiple pathways. Croplands are submerged, livestock are lost, and soils become degraded due to erosion or sediment deposition. Infrastructural facilities like roads, bridges, retail shops, storage warehouses, and sales centres are damaged or rendered inaccessible. Without functioning food supply networks, even unaffected food-producing regions struggle to continue daily lives in such disasters. Poor households, particularly those dependent on farming or informal rural economies, face sharp food price increases and income loss, increasing vulnerability and food insecurity.
Many countries now recognie that traditional emergency responses alone are no longer enough. Instead, they are adopting a combination of short-term stabilisation measures and long-term strategies to strengthen food supply chains against recurrent floods. The most common immediate response is the provision of emergency food and cash assistance. Governments, the World Food Programme, and other humanitarian organisations often deliver food, ready-to-eat rations, livestock feed, and livelihood support to affected communities.
Alongside these immediate measures, some nations are implementing long-term strategic actions. These include technology- and data-driven approaches to improve flood preparedness. Early warning systems, using satellite data, hydrological models, and advanced weather forecasting, allow farmers and supply chain operators to prepare for potential disruptions. Digital platforms provide market intelligence, logistics updates, and risk notifications to producers, wholesalers, and transporters. This article highlights examples of such strategies from countries that experience frequent flooding.
China: Grain Reserves and Strategic Preparedness
China maintains a large strategic grain reserve system for rice, wheat, and maize; managed by NFSRA-National Food and Strategic Reserves Administration and Sinograin (China Grain Reserves Corporation (Sinograin Group), funded by the Chinese government, that underpins national food security and enables macro-control of markets during supply shocks. Moreover, improvements in supply chain digitization and hydrological monitoring, the country has strengthened its ability to maintain stable food availability during extreme weather events.
Bangladesh: Turning Vulnerability into Resilience
In recent years, Bangladesh has stood out as one of the world’s most flood-exposed countries, yet it has successfully turned vulnerability into adaptive resilience. Floating agriculture, flood-tolerant rice varieties, and community-run grain reserves now help stabilise food supplies when farmland is submerged. Investments in early-warning systems and river-basin management have further reduced crop losses and protected rural livelihoods.
Netherlands, Japan: High-Tech Models of Flood Resilience
The Netherlands offers a highly technical model. After catastrophic flooding in 1953, the country completely redesigned its water governance approach. Farmland is protected behind sea barriers, rivers are carefully controlled, and land-use zoning is adaptive. Vertical farming and climate-controlled greenhouses ensure year-round food production, even during extreme events. Japan provides another example of diversified flood resilience. Following repeated typhoon-induced floods, the country shifted toward protected agriculture, insurance-backed farming, and automated logistics systems. Cold storage networks and digital supply tracking ensure that food continues to reach consumers, even when roads are cut off. While these strategies require significant capital and investment, their gradual implementation provides substantial long-term benefits.
Pakistan, Thailand, Indonesia, and Vietnam: Reform in Response to Recurrent Floods
In contrast, Pakistan and Thailand illustrate both the consequences of climate vulnerability and the benefits of proactive reform. The 2022 floods in Pakistan submerged about one-third of the country, destroying crops and disrupting trade networks. In response, the country has placed greater emphasis on climate-resilient farming, water governance reforms, and satellite-based crop monitoring. Pakistan as well as India is promoting crop diversification and adjusting planting schedules to help farmers avoid the peak monsoon flood periods.
Thailand has invested in flood zoning and improved farm infrastructure that keep markets supplied even during severe flooding. Meanwhile, Indonesia and Vietnam are actively advancing flood-adapted land-use planning and climate-resilient agriculture. For instance, In Vietnam’s Mekong Delta, pilot projects integrate flood-risk mapping, adaptive cropping strategies, and ecosystem-based approaches to reduce vulnerability in agricultural and distribution areas. In Indonesia, government-supported initiatives and regional projects are strengthening flood-risk-informed spatial planning, adaptive farming practices, and community-based water management to improve resilience in flood-prone regions. (See Figure 1)
The Global Lesson: Resilience Requires Early Investment
The global evidence is clear: countries that invest early in climate-adaptive agriculture and resilient logistics are better able to feed their populations, even during extreme floods. Building a resilient future depends not only on how we grow food but also on how we protect, store, and transport it. Strengthening infrastructure is therefore central to stabilising food supply chains while maintaining food quality, even during prolonged disruptions. Resilient storage systems, regional grain reserves, efficient cold chains, improved farming infrastructure, and digital supply mapping help reduce panic buying, food waste, and price shocks after floods, while ensuring that production capacity remains secure.
Persistent Challenges
However, despite these advances, many flood-exposed countries still face significant challenges. Resources are often insufficient to upgrade infrastructure or support vulnerable rural populations. Institutional coordination across the agriculture, disaster management, transport, and environmental sectors remains weak. Moreover, the frequency and scale of climate-driven floods are exceeding the design limits of older disaster-planning frameworks. As a result, the gap between exposure and resilience continues to widen. These challenges are highly relevant to Sri Lanka as well and require deliberate, gradual efforts to phase them out.
The Role of International Trade and global markets
When domestic production falls in such situations, international trade serves as an important buffer. When domestic production is temporarily reduced, imports and regional trade flows can help stabilise food availability. Such examples are available from other countries. For instance, In October 2024, floods in Bangladesh reportedly destroyed about 1.1 million tonnes of rice. In response, the government moved to import large volumes of rice and allowed accelerated or private-sector imports of rice to stabilize supply and curb food price inflation. This demonstrates how, when domestic production fails, international trade/livestock/food imports (from trade partners) acted as a crucial buffer to ensure availability of staple food for the population. However, this approach relies on well-functioning global markets, strong diplomatic relationships, and adequate foreign exchange, making it less reliable for economically fragile nations. For example, importing frozen vegetables to Sri Lanka from other countries can help address supply shortages, but considerations such as affordability, proper storage and selling mechanisms, cooking guidance, and nutritional benefits are essential, especially when these foods are not widely familiar to local populations.
Marketing and Distribution Strategies during Floods
Ensuring that food reaches consumers during floods requires innovative marketing and distribution strategies that address both supply- and demand-side challenges. Short-term interventions often include direct cash or food transfers, mobile markets, and temporary distribution centres in areas where conventional marketplaces become inaccessible. Price stabilisation measures, such as temporary caps or subsidies on staple foods, help prevent sharp inflation and protect vulnerable households. Awareness campaigns also play a role by educating consumers on safe storage, cooking methods, and the nutritional value of unfamiliar imported items, helping sustain effective demand.
Some countries have integrated technology to support these efforts; in this regard, adaptive supply chain strategies are increasingly used. Digital platforms provide farmers, wholesalers, and retailers with real-time market information, logistics updates, and flood-risk alerts, enabling them to reroute deliveries or adjust production schedules. Diversified delivery routes, using alternative roads, river transport, drones, or mobile cold-storage units, have proven essential for maintaining the flow of perishable goods such as vegetables, dairy, and frozen products. A notable example is Japan, where automated logistics systems and advanced cold-storage networks help keep supermarkets stocked even during severe typhoon-induced flooding.
The Importance of Research, Coordination, and Long-Term Commitment
Global experience also shows that research and development, strong institutional coordination, and sustained national commitment are fundamental pillars of flood-resilient food systems. Countries that have successfully reduced the impacts of recurrent floods consistently invest in agricultural innovation, cross-sector collaboration, and long-term planning.
Awareness Leads to Preparedness
As the summary, global evidence shows that countries that act early, plan strategically, and invest in resilience can protect both people and food systems. As Sri Lanka considers long-term strategies for food security under climate change, learning from flood-affected nations can help guide policy, planning, and public understanding. Awareness is the first step which preparedness must follow. These international experiences offer valuable lessons on how to protect food systems through proactive planning and integrated actions.
(Premaratne (BSc, MPhil, LLB) isSenior Lecturer in Agricultural Economics Department of Agricultural Systems, Faculty of Agriculture, Rajarata University. Views are personal.)
Key References·
Cabinet Secretariat, Government of Japan, 2021. Fundamental Plan for National Resilience – Food, Agriculture, Forestry and Fisheries / Logistics & Food Supply Chains. Tokyo: Cabinet Secretariat.
· Delta Programme Commissioner, 2022. Delta Programme 2023 (English – Print Version). The Hague: Netherlands Delta Programme.
· Hasanuddin University, 2025. ‘Sustainable resilience in flood-prone rice farming: adaptive strategies and risk-sharing around Tempe Lake, Indonesia’, Sustainability. Available at: https://www.mdpi.com/2071-1050/17/6/2456 [Accessed 3 December 2025].
· Mekong Urban Flood Resilience and Drainage Programme (TUEWAS), 2019–2021. Integrated urban flood and drainage planning for Mekong cities. TUEWAS / MRC initiative.
· Ministry of Agriculture and Rural Affairs, People’s Republic of China, 2025. ‘China’s summer grain procurement surpasses 50 mln tonnes’, English Ministry website, 4 July.
· National Food and Strategic Reserves Administration (China) 2024, ‘China purchases over 400 mln tonnes of grain in 2023’, GOV.cn, 9 January. Available at: https://english.www.gov.cn/archive/statistics/202401/09/content_WS659d1020c6d0868f4e8e2e46.html
· Pakistan: 2022 Floods Response Plan, 2022. United Nations / Government of Pakistan, UN Digital Library.
· Shigemitsu, M. & Gray, E., 2021. ‘Building the resilience of Japan’s agricultural sector to typhoons and heavy rain’, OECD Food, Agriculture and Fisheries Papers, No. 159. Paris: OECD Publishing.
· UNDP & GCF, 2023. Enhancing Climate Resilience in Thailand through Effective Water Management and Sustainable Agriculture (E WMSA): Project Factsheet. UNDP, Bangkok.
· United Nations Development Programme (UNDP), 2025. ‘Rice Bank revives hope in flood hit hill tracts, Bangladesh’, UNDP, 19 June.
· World Bank, 2022. ‘Bangladesh: World Bank supports food security and higher incomes of farmers vulnerable to climate change’, World Bank press release, 15 March.
Features
Can we forecast weather precisely?
Weather forecasts are useful. People attentively listen to them but complain that they go wrong or are not taken seriously. Forecasts today are more probabilistically reliable than decades ago. The advancement of atmospheric science, satellite imaging, radar maps and instantly updated databases has improved the art of predicting weather.
Yet can we predict weather patterns precisely? A branch of mathematics known as chaos theory says that weather can never be foretold with certainty.
The classical mechanics of Issac Newton governing the motion of all forms of matter, solid, liquid or gaseous, is a deterministic theory. If the initial conditions are known, the behaviour of the system at later instants of time can be precisely predicted. Based on this theory, occurrences of solar eclipses a century later have been predicted to an accuracy of minutes and seconds.
The thinking that the mechanical behaviour of systems in nature could always be accurately predicted based on their state at a previous instant of time was shaken by the work of the genius French Mathematician Henri Poincare (1864- 1902).
Eclipses are predicted with pinpoint accuracy based on analysis of a two-body system (Earth- Moon) governed by Newton’s laws. Poincare found that the equivalent problem of three astronomical bodies cannot be solved exactly – sometimes even the slightest variation of an initial condition yields a drastically different solution.
A profound conclusion was that the behaviour of physical systems governed by deterministic laws does not always allow practically meaningful predictions because even a minute unaccountable change of parameters leads to completely different results.
Until recent times, physicists overlooked Poincare’s work and continued to believe that the determinism of the laws of classical physics would allow them to analyse complex problems and derive future happenings, provided necessary computations are facilitated. When computers became available, the meteorologists conducted simulations aiming for accurate weather forecasting. The American mathematician Edward Lorenz, who turned into a reputed meteorologist, carried out such studies in the early 1960s, arrived at an unexpected result. His equations describing atmospheric dynamics demonstrated a strange behaviour. He found that even a minute change (even one part in a million) in initial parameters leads to a completely different weather pattern in the atmosphere. Lorenz announced his finding saying, A flap of a butterfly wing in one corner of the world could cause a cyclone in a far distant location weeks later! Lorenz’s work opened the way for the development branch of mathematics referred to as chaos theory – an expansion of the idea first disclosed by Henri Poincare.
We understand the dynamics of a cyclone as a giant whirlpool in the atmosphere, how it evolves and the conditions favourable for their origination. They are created as unpredictable thermodynamically favourable relaxation of instabilities in the atmosphere. The fundamental limitations dictated by chaos theory forbid accurate forecasting of the time and point of its appearance and the intensity. Once a cyclone forms, it can be tracked and the path of movement can be grossly ascertained by frequent observations. However, absolutely certain predictions are impossible.
A peculiarity of weather is that the chaotic nature of atmospheric dynamics does not permit ‘long – term’ forecasting with a high degree of certainty. The ‘long-term’ in this context, depending on situation, could be hours, days or weeks. Nonetheless, weather forecasts are invaluable for preparedness and avoiding unlikely, unfortunate events that might befall. A massive reaction to every unlikely event envisaged is also not warranted. Such an attitude leads to social chaos. The society far more complex than weather is heavily susceptible to chaotic phenomena.
by Prof. Kirthi Tennakone (ktenna@yahoo.co.uk)
Features
When the Waters Rise: Floods, Fear and the ancient survivors of Sri Lanka
The water came quietly at first, a steady rise along the riverbanks, familiar to communities who have lived beside Sri Lanka’s great waterways for generations. But within hours, these same rivers had swollen into raging, unpredictable forces. The Kelani Ganga overflowed. The Nilwala broke its margins. The Bentara, Kalu, and Mahaweli formed churning, chocolate-brown channels cutting through thousands of homes.
When the floods finally began to recede, villagers emerged to assess the damage, only to be confronted by another challenge: crocodiles. From Panadura’s back lanes to the suburbs of Colombo, and from the lagoons around Kalutara to the paddy fields of the dry zone, reports poured in of crocodiles resting on bunds, climbing over fences, or drifting silently into garden wells.
For many, these encounters were terrifying. But to Sri Lanka’s top herpetologists, the message was clear: this is what happens when climate extremes collide with shrinking habitats.
“Crocodiles are not invading us … we are invading floodplains”
Sri Lanka’s foremost crocodile expert, Dr. Anslem de Silva, Regional Chairman for South Asia and Iran of the IUCN/SSC Crocodile Specialist Group, has been studying crocodiles for over half a century. His warning is blunt.
“When rivers turn into violent torrents, crocodiles simply seek safety,” he says. “They avoid fast-moving water the same way humans do. During floods, they climb onto land or move into calm backwaters. People must understand this behaviour is natural, not aggressive.”
In the past week alone, Saltwater crocodiles have been sighted entering the Wellawatte Canal, drifting into the Panadura estuary, and appearing unexpectedly along Bolgoda Lake.
“Saltwater crocodiles often get washed out to sea during big floods,” Dr. de Silva explains. “Once the current weakens, they re-enter through the nearest lagoon or canal system. With rapid urbanisation along these waterways, these interactions are now far more visible.”
- An adult Salt Water Crocodile (Crocodylus porosus) (Photo -Madura de Silva)
- Adult Mugger (Crocodylus plaustris) Photo -Laxhman Nadaraja
- A Warning sign board
- A Mugger holding a a large Russell ’s viper (Photo- R. M. Gunasinghe)
- Anslem de Silva
- Suranjan Karunarathna
This clash between wildlife instinct and human expansion forms the backdrop of a crisis now unfolding across the island.
A conflict centuries old—now reshaped by climate change
Sri Lanka’s relationship with crocodiles is older than most of its kingdoms. The Cūḷavaṃsa describes armies halted by “flesh-eating crocodiles.” Ancient medical texts explain crocodile bite treatments. Fishermen and farmers around the Nilwala, Walawe, Maduganga, Batticaloa Lagoon, and Kalu Ganga have long accepted kimbula as part of their environment.
But the modern conflict has intensified dramatically.
A comprehensive countrywide survey by Dr. de Silva recorded 150 human–crocodile attacks, with 50 fatal, between 2008 and 2010. Over 52 percent occurred when people were bathing, and 83 percent of victims were men engaged in routine activities—washing, fishing, or walking along shallow margins.
Researchers consistently emphasise: most attacks happen not because crocodiles are unpredictable, but because humans underestimate them.
Yet this year’s flooding has magnified risks in new ways.
“Floods change everything” — Dr. Nimal D. Rathnayake
Herpetologist Dr. Nimal Rathnayake says the recent deluge cannot be understood in isolation.
“Floodwaters temporarily expand the crocodile’s world,” he says. “Areas people consider safe—paddy boundaries, footpaths, canal edges, abandoned land—suddenly become waterways.”
Once the water retreats, displaced crocodiles may end up in surprising places.
“We’ve documented crocodiles stranded in garden wells, drainage channels, unused culverts and even construction pits. These are not animals trying to attack. They are animals trying to survive.”
According to him, the real crisis is not the crocodile—it is the loss of wetlands, the destruction of natural river buffers, and the pollution of river systems.
“When you fill a marsh, block a canal, or replace vegetation with concrete, you force wildlife into narrower corridors. During floods, these become conflict hotspots.”
Past research by the Crocodile Specialist Group shows that more than 300 crocodiles have been killed in retaliation or for meat over the past decade. Such killings spike after major floods, when fear and misunderstanding are highest.
“Not monsters—ecosystem engineers” — Suranjan Karunaratne
On social media, flood-displaced crocodiles often go viral as “rogue beasts.” But conservationist Suranjan Karunaratne, also of the IUCN/SSC Crocodile Specialist Group, says such narratives are misleading.
“Crocodiles are apex predators shaped by millions of years of evolution,” he says. “They are shy, intelligent animals. The problem is predictable human behaviour.”
In countless attack investigations, Karunaratne and colleagues found a repeated pattern: the Three Sames—the same place, the same time, the same activity.
“People use the same bathing spot every single day. Crocodiles watch, learn, and plan. They hunt with extraordinary patience. When an attack occurs, it’s rarely random. It is the culmination of observation.”
He stresses that crocodiles are indispensable to healthy wetlands. They: control destructive catfish populations, recycle nutrients, clean carcasses and diseased fish, maintain biodiversity, create drought refuges through burrows used by amphibians and reptiles.
“Removing crocodiles destroys an entire chain of ecological services. They are not expendable.”
Karunaratne notes that after the civil conflict, Mugger populations in the north rebounded—proof that crocodiles recover when given space, solitude, and habitat.
Floods expose a neglected truth: CEEs save lives—if maintained In high-risk communities, Crocodile Exclusion Enclosures (CEEs) are often the only physical barrier between people and crocodiles. Built along riverbanks or tanks, these enclosures allow families to bathe, wash, and collect water safely.
Yet Dr. de Silva recounts a tragic incident along the Nilwala River where a girl was killed inside a poorly maintained enclosure. A rusted iron panel had created a hole just large enough for a crocodile to enter.
“CEEs are a life-saving intervention,” he says. “But they must be maintained. A neglected enclosure is worse than none at all.”
Despite their proven effectiveness, many CEEs remain abandoned, broken or unused.
Climate change is reshaping crocodile behaviour—and ours
Sri Lanka’s floods are no longer “cycles” as described in folklore. They are increasingly intense, unpredictable and climate-driven. The warming atmosphere delivers heavier rainfall in short bursts. Deforested hillsides and filled wetlands cannot absorb it.
Rivers swell rapidly and empty violently.
Crocodiles respond as they have always done: by moving to calmer water, by climbing onto land, by using drainage channels, by shifting between lagoons and canals, by following the shape of the water.
But human expansion has filled, blocked, or polluted these escape routes.
What once were crocodile flood refuges—marshes, mangroves, oxbow wetlands and abandoned river channels—are now housing schemes, fisheries, roads, and dumpsites.
Garbage, sand mining and invasive species worsen the crisis
The research contained in the uploaded reports paints a grim but accurate picture. Crocodiles are increasingly seen around garbage dumps, where invasive plants and waste accumulate. Polluted water attracts fish, which in turn draw crocodiles.
Excessive sand mining in river mouths and salinity intrusion expose crocodile nesting habitats. In some areas, agricultural chemicals contaminate wetlands beyond their natural capacity to recover.
In Borupana Ela, a short study found 29 Saltwater crocodiles killed in fishing gear within just 37 days.
Such numbers suggest a structural crisis—not a series of accidents.
Unplanned translocations: a dangerous human mistake
For years, local authorities attempted to reduce conflict by capturing crocodiles and releasing them elsewhere. Experts say this was misguided.
“Most Saltwater crocodiles have homing instincts,” explains Karunaratne. “Australian studies show many return to their original site—even if released dozens of kilometres away.”
Over the past decade, at least 26 Saltwater crocodiles have been released into inland freshwater bodies—home to the Mugger crocodile. This disrupts natural distribution, increases competition, and creates new conflict zones.
Living with crocodiles: a national strategy long overdue
All three experts—Dr. de Silva, Dr. Rathnayake and Karunaratne—agree that Sri Lanka urgently needs a coordinated, national-level mitigation plan.
* Protect natural buffers
Replant mangroves, restore riverine forests, enforce river margin laws.
* Maintain CEEs
They must be inspected, repaired and used regularly.
* Public education
Villagers should learn crocodile behaviour just as they learn about monsoons and tides.
* End harmful translocations
Let crocodiles remain in their natural ranges.
* Improve waste management
Dumps attract crocodiles and invasive species.
* Incentivise community monitoring
Trained local volunteers can track sightings and alert authorities early.
* Integrate crocodile safety into disaster management
Flood briefings should include alerts on reptile movement.
“The floods will come again. Our response must change.”
As the island cleans up and rebuilds, the deeper lesson lies beneath the brown floodwaters. Crocodiles are not new to Sri Lanka—but the conditions we are creating are.
Rivers once buffered by mangroves now rush through concrete channels. Tanks once supporting Mugger populations are choked with invasive plants. Wetlands once absorbing floodwaters are now levelled for construction.
Crocodiles move because the water moves. And the water moves differently today.
Dr. Rathnayake puts it simply:”We cannot treat every flooded crocodile as a threat to be eliminated. These animals are displaced, stressed, and trying to survive.”
Dr. de Silva adds:”Saving humans and saving crocodiles are not competing goals. Both depend on understanding behaviour—ours and theirs.”
And in a closing reflection, Suranjan Karunaratne says:”Crocodiles have survived 250 million years, outliving dinosaurs. Whether they survive the next 50 years in Sri Lanka depends entirely on us.”
For now, as the waters recede and the scars of the floods remain, Sri Lanka faces a choice: coexist with the ancient guardians of its waterways, or push them into extinction through fear, misunderstanding and neglect.
By Ifham Nizam
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