利用城市地表模型评估基于自然的解决方案实施方案

Emmanuel Panagiotakis, D. Kolokotsa, N. Chrysoulakis
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引用次数: 2

摘要

本文旨在研究基于自然的解决方案(NBS)对城市环境的影响。地面城市能源和水平衡方案(SUEWS)用于量化NBS对希腊克里特岛的伊拉克利翁市的影响,这是一个人口密集的城市地区。模型的模拟和评价采用了当地气象资料和安装在市中心的涡动相关通量塔的数据。通过用绿色基础设施(即树木、草地和水体)取代城市的屋顶和路面,测试了五种不同的场景。国家统计局的影响评价是基于距离地面2米以上的空气温度、相对湿度和能量通量的变化。在所有情况下,当路面被草地取代时,气温下降幅度最大(2.3%)。随着空气温度的降低,湍流感热通量也随之减少。在几乎所有情况下,都注意到相对湿度的增加,伴随着湍流潜热通量的显著增加。因此,NBS显著地改变了城市的能源平衡,改善了城市环境,造福于市民。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Evaluation of nature-based solutions implementation scenarios, using urban surface modelling
The present paper aims to study the impact of Nature Based Solutions (NBS) on the urban environment. The Surface Urban Energy and Water balance Scheme (SUEWS) is used to quantify the impact of NBS in the city of Heraklion, Crete, Greece, a densely built urban area. Local meteorological data and data from an Eddy Covariance flux tower installed in the city center are used for the model simulation and evaluation. Five different scenarios are tested by replacing the city’s roofs and pavements with green infrastructure, i.e., trees and grass, and water bodies. The NBS impact evaluation is based on the changes of air temperature above 2m from the ground, relative humidity and energy fluxes. A decrease of the air temperature is revealed with the highest reduction (2.3%) occurring when the pavements are replaced with grass for all scenarios. The reduction of the air temperature is followed by a decrease in turbulent sensible heat flux. For almost all cases, an increase of the relative humidity is noticed, accompanied by a considerable increase of the turbulent latent heat flux. Therefore, NBS in cities change the energy balance significantly and modify the urban environment for the citizens' benefit.
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