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Impact of urbanization level on the interactions of urban area, the urban climate, and human thermal comfort

机译:城市化水平对城市地区互动,城市气候和人类热舒适的影响

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One significant effect of urbanization is the modification of natural surfaces, local environment, and thermal comfort. Farmland and agricultural land in Klang Valley conurbation, Malaysia have been replaced with engineered surfaces and infrastructures to accommodate the rapid population growth witnessed in the past decades. To understand the current environmental conditions of the conurbation, numerical Weather Research and Forecasting (WRF) model coupled to the Urban Canopy Model (UCM) was used. A model evaluation conducted against a network of observations showed an overall good performance of the model in predicting near-surface meteorological parameters. Also, an examination of spatiotemporal variability of urban parameters revealed a diurnal dependence of human physiological thermal conditions on urbanization level. A maximum urban heat island intensity (UHII) of -2.64 C was observed. In an effort to investigate the effect of urbanization level on the extremities of urban climatic conditions, two different experiments with varying urban/vegetation fractions were further simulated. The latter results indicate that urbanization level has a significant effect on the extremities of urban climatological parameters and spatial extent of the induced impacts. Furthermore, the effect of urbanization level on the mean urban outdoor thermal discomfort (UOTD) level was significant (with an increase of 0.7 C, 0.64 C and 0.04 observed) for temperature humidity index (THI), effective temperature index (ETI) and relative strain index (RSI), respectively. However, a non-significant (at95% level) effect of urbanization level on the extremities of UOTD indices was observed. 2016 Elsevier Ltd. All rights reserved.
机译:城市化的一个显着效果是自然表面,局部环境和热舒适的改变。在Klang Valley Pururbonation的农田和农业用地,马来西亚已被改造的表面和基础设施所取代,以适应过去几十年目睹的人口迅速增长。要了解电流的当前环境条件,使用了与城市树冠模型(UCM)相连的数值天气研究和预测(WRF)模型。针对观察网络进行的模型评估显示了预测近表面气象参数的模型的总体性能。此外,对城市参数的时空变异性的检查揭示了人类生理热条件对城市化水平的差价。观察到-2.64℃的最大城市热岛强度(UHII)。努力调查城市化水平对城市气候条件极端的影响,进一步模拟了不同城市/植被级分的两种不同的实验。后一种结果表明,城市化水平对城市气候参数的四肢具有显着影响,以及诱导的影响的空间程度。此外,城市化水平对平均城市室外热不适(UOTD)水平的影响是显着的(随着0.7℃,0.64℃和0.04观察到的),用于温度湿度指数(THI),有效的温度指数(ETI)和相对应变索引(RSI)分别。然而,观察到在尿路指数四肢上的城市化水平的非显着(AT95%水平)效应。 2016年elestvier有限公司保留所有权利。

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