Singapore: Singapore is planting one million trees to cool its streets, but scientists say the biggest impact could be on air-conditioning bills | World News

Singapore: Singapore is planting one million trees to cool its streets, but scientists say the biggest impact could be on air-conditioning bills | World News


<b>Singapore is planting one million trees to cool its streets, but scientists say the biggest impact could be on air-conditioning bills</b>
Representative Image of lush urban greenery shading a busy street in Singapore (AI-generated image)

As cities across the tropics search for ways to cope with rising temperatures, Singapore has increasingly turned to a familiar, low-tech solution: trees. A specific figure keeps surfacing in planning documents and public discussion: the claim that shading a street with trees can lower street-level temperatures by as much as 2.6 degrees Celsius. That number has real scientific grounding, but tracing exactly where it comes from, and what local Singapore research has since found on its own streets, reveals a more layered and, in some ways, more useful picture than the headline figure alone suggests.

Why Singapore’s tree cooling estimate comes from research in Germany

The number appears in Strategies for Cooling Singapore, a catalogue of 86 heat mitigation measures compiled for policymakers by the Cooling Singapore project, a collaboration between the Singapore-ETH Centre, SMART, TUMCREATE and the National University of Singapore. Its entry on vegetation around buildings estimates cooling from tree-shaded streets at between 0.9 and 2.6 degrees Celsius, set against the context that Singapore’s urban heat island effect already runs at roughly 4 degrees on average and can exceed 7 degrees during certain hours of the day.Crucially, that 2.6 degree figure was never actually measured in Singapore. It traces back to research by Sten Gillner and colleagues, who monitored six tree species along residential streets in Dresden, Germany, over the summer of 2013, finding that trees with dense foliage and high transpiration rates produced the strongest cooling effect on surrounding air. The Cooling Singapore catalogue is transparent about this origin, describing itself as a review of existing international science translated into local planning guidance, meaning a single European study, covering six tree species over one temperate summer, is now doing considerable work informing tropical urban policy.

What researchers actually measured on Singapore’s own streets




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