可持续城市规划中绿地对小气候的影响

Fatih ADIGÜZEL
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引用次数: 0

摘要

近年来,人们越来越重视旨在减轻气候变化影响的各种模式和情景的发展。这种做法在我国也越来越突出。本研究基于在梅尔辛省塔尔苏斯地区ye ilyurt社区进行的研究。本研究的主要目的是利用ENVI-met模拟来评估增加绿色空间对小气候条件的影响。在本研究的范围内,比较了目前的情况和绿色空间数量增加的情况。利用测量得到的温度、湿度、风向、风速等气候数据,利用ENVI-met模拟软件对绿地面积进行分析。在增加绿地的情况下,绿地总面积从目前的2487平方米增加到4398平方米。模拟结果强调了这种增强对小气候的实质性影响。平均温度在31.11°C - 33.04°C之间波动,表明绿地的扩大导致温度降低,从而对环境产生积极影响。这意味着整个地区的整体温度下降了约0.45°C。该研究强调了增加绿地对小气候条件的有利影响,这一点得到了来自ENVI-met模拟的结果的证明。它阐明了这种增加如何有助于温度调节。这些成果强调了将绿色空间纳入城市规划和设计过程的重要性,指导了促进环境可持续性的决策。因此,建议地方政府在考虑与小气候和环境质量有关的因素的同时,优先考虑绿地面积的扩大。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Effects of Green Spaces on Microclimate in Sustainable Urban Planning
In recent years, there has been a growing importance placed on the development of various models and scenarios aimed at mitigating the effects of climate change. This approach is gaining prominence in our country as well. This study is based on research conducted in the Yeşilyurt neighborhood within the Tarsus district of Mersin province. The primary objective of this research is to assess the impact of increased green space on microclimate conditions using ENVI-met simulation. Within the scope of this research, a comparison was made between the current situation and a scenario in which the amount of green space was increased. The analysis of green area quantities was conducted using the ENVI-met simulation software, utilizing climate data such as temperature, humidity, wind direction, and speed, which were obtained through measurements. In the scenario involving an increase in green space, the total green area was augmented from its current 2,487 m² to 4,398 m². The simulation results underscore the substantial effect of this augmentation on the microclimate. Average temperature values fluctuate between 31.11°C and 33.04°C, revealing that the expansion of green space leads to a reduction in temperature, thereby positively impacting the environment. This translates to an overall temperature decrease of approximately 0.45°C across the entire area. The research highlights the favorable influence of heightened green space on microclimate conditions, as evidenced by findings derived from ENVI-met simulations. It elucidates how such an increase can contribute to temperature regulation. These outcomes underscore the significance of deliberate green space incorporation in urban planning and design processes, guiding decisions that promote environmental sustainability. Thus, it is recommended that forthcoming strategies of local governments prioritize the expansion of green areas while considering factors related to microclimate and environmental quality.
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