
Key Points
- Sensors in the London Natural History Museum garden recorded 11 million data points in the first year.
- During the June 2026 heatwave, soil under trees was found to be 10°C cooler than asphalt areas.
- The study proves the potential of urban green spaces to reduce the heat island effect.
By the Numbers
The sensor network installed in the London Natural History Museum's Nature Discovery Garden recorded 11 million data points in its first year of operation. During the June 2026 heatwave, soil temperature in tree shade was found to be up to 10°C lower compared to asphalt areas.
The study proves with concrete data the cooling effect created by urban green spaces during extreme heat events. Researchers emphasize that afforestation and green infrastructure play a critical role in reducing the urban heat island effect.
The sensor network continuously monitors microclimate data, creating a long-term dataset that will help cities develop climate change adaptation strategies.
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Frequently Asked Questions
- Where were the sensors installed and what did they measure?
- Sensors installed in the London Natural History Museum's Nature Discovery Garden measured soil temperature to compare tree-covered and asphalt areas.
- How many degrees of difference were detected between under the tree and asphalt?
- During the June 2026 heatwave, soil under trees was measured to be 10°C cooler than asphalt areas.
- What is the significance of this study?
- It proves the cooling effect of urban green spaces during extreme heat events, providing scientific data for climate adaptation strategies.
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