基于生态系统的城市适应策略研究

P. Derbek, J. Blumelova, J. Resler, P. Jurus, P. Krč, O. Vlcek, N. Benesová, P. Bauerová, D. Srbova, K. Eben, P. Hrubes
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引用次数: 1

摘要

本文描述了当前正在运行的项目UrbanAdapt的一些方面。该项目涉及城市对不断变化的气候条件的适应。该项目的主要目标是开始制定城市适应战略,制定适应情景,并测试特定措施的效果和效益。以前开发的适应影响模型与现有的真实数据一起使用,并根据几个准备好的情景提供必要的决策工具。最后的政策必须考虑到气候条件、可用的手段和提出必要的修正和解决办法的手段。项目组成员来自不同领域,涉及适应措施的各个方面,包括经济分析、政策制定过程、教育和向公众传播。提出的文件涉及的部分活动,其重点是模拟适应措施和气候对布拉格市的影响。这些活动包括从太阳辐射、大气和城市环境相互作用的角度评价城市的能量平衡。城市环境不仅包括建筑物、街道表面和植被,还包括对能量平衡有影响的过程,如交通、空调和产生人为热量的工业,这些热量可以在夏季热浪中发挥作用。最终目的是评估不同的适应措施对生活在城市热岛效应日益严重的环境条件下的市民的影响。因此,必须研究客观气象变量与主观生物指标之间的关系。采用了生理等效温度(PET)的概念。相对于气温、空气湿度、全球水平辐照度、风速等气象指标的单一值,PET概念在确定重要的生物气象指标值方面具有附加价值。
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On the development of urban adaptation strategies using ecosystem-based approaches to adaptation
Selected aspects of currently running project UrbanAdapt are described. The project deals with the adaptation of cities on changing climatic conditions. The main project objective is to start the process of preparation of cities adaptation strategies, developing adaptation scenarios and testing the effects and benefits of particular measures. Previously developed models of adaptation impacts are used with available real data and according to several prepared scenarios to provide necessary decision making tools. The final policies have to take into account climatic conditions, available means, and devices to propose necessary amendments and solutions. Project team involves groups from different fields that cover various aspects of adaptation measures including economic analyses, policy making processes, education and dissemination to the public. The presented paper deals with the part of activities which are focused on modelling of adaptation measures and climatic impacts for the city of Prague. These activities include assessment of energy balance of city, in terms of interactions of solar radiation, atmosphere and urban environment. Urban environment includes not only buildings, street surfaces and vegetation, but also the processes having impact on energy balance such as the traffic, air conditioning and industry that produce anthropogenic heat which can play a role for example in summer heat waves. The ultimate goal is to assess the impact of different adaptation measures on citizens who live in environmental conditions of growing effect of urban heat island. Thus the connection between objective meteorological variables and subjective biological indices has to be investigated. The concept of Physiological Equivalent Temperature (PET) is adopted. In comparison to single values of air temperature, air humidity, global horizontal irradiance, wind speed, and other meteorological indexes, concept of PET has added value in determining the value of important biometeorological index in.
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