基于被动材料的解决方案用于冷却和"辐射"的城市
1Xiaobo Yinis professor of mechanical engineering and professor of physics (by courtesy) at the University of Hong Kong.
概括
创纪录的热浪正在越来越多地影响全球主要城市, 这些极端温度事件凸显了应对城市气候挑战的迫切需要.
科学领域:
- 环境科学
- 城市气候学
- 公共卫生
背景情况:
- 在全球人口密集的城市地区, 创纪录的气温越来越频繁.
- 最近南美,印度和日本的热浪显示出极端高温的影响越来越大.
- 香港连续几年经历了创纪录的夏季气温.
研究的目的:
- 记录和分析全球主要城市最近的极端热情事件.
- 在人口密的城市中,
- 为了强调极端高温对城市人口的威胁.
主要方法:
- 从东京,里约热内卢和德里收集的温度记录.
- 分析最近南美,印度和东亚的热浪趋势.
- 在过去的三个夏季, 在香港观察温度异常.
主要成果:
- 东京在2024年9月超过35°C,创下新纪录.
- 在最近的热浪中, 里约热量指数达到62.3°C.
- 香港连续三个夏季创下气温纪录.
结论:
- 在世界上人口最多的城市, 极端的高温现象越来越令人担忧.
- 城市热浪的频率和强度迫切需要采取气候行动和适应战略.
- 持续监测和研究对于了解和减轻城市热量影响至关重要.
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