首页> 外文期刊>International Journal of Biometeorology: Journal of the International Society of Biometeorology >Simulation of schoolyard's microclimate and human thermal comfort under Mediterranean climate conditions: effects of trees and green structures
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Simulation of schoolyard's microclimate and human thermal comfort under Mediterranean climate conditions: effects of trees and green structures

机译:地中海气候条件下校园小气候和人类热舒适的模拟:树木和绿色结构的影响

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摘要

The present study explores the effects on microclimate parameters and on heat stress conditions of the bioclimatic redevelopment of an urban schoolyard based mainly on inserting shading canopies and replacing hard surfaces with green cover. This included the use of the recent version of the microclimate model ENVI-met (V4), first validated using experimental data and then later applied to different case studies in schoolgrounds of Volos, a coastal city in central Greece under Mediterranean type climate. The simulation of the existing yard condition showed that the values of the biometorological index PET (physiologically equivalent temperature, in degrees C), were within the range of the thermal sensation class of extreme heat stress (& 41 degrees C) from early morning, while at midday 80.5% of the yard area was within the range of the above class. With the implementation of the redesign proposal, 69.9% of the yard area was improved by two or three PET scale classes, helping to improve the microclimate in 82% of the total area of the courtyard. Tree canopies reduced the direct incident radiation more than 90%, reduced T-mrt and PET index up to 31 degrees C and 19 degrees C, respectively, and the surface ground temperatures of wet grass and hard surfaces more than 20 degrees C and 14 degrees C, respectively.
机译:本研究探讨了对微气候参数的影响以及城市校园的生物恐慌重建的热应力条件,主要是在插入遮阳篷上,用绿盖取代硬表面。这包括使用最近版本的微气候模型Envi-Met(v4),首先使用实验数据验证,然后在地中海型气候下的沿海城市沿海城市储蓄的不同案例研究。现有码条件的仿真表明,生物计量指数PET(生理上等效温度为C)的值在最早的热敏应力(& 41摄氏度)的热敏级别的范围内早上,虽然处于上午80.5%的院子区,但在上述课程的范围内。通过实施重新设计建议,69.9%的院区由两三个宠物规模课程得到改善,有助于改善庭院总面积的82%的微气候。树檐篷将直接入射辐射减少超过90%,降低T-MRT和PET指数,分别高达31℃和19摄氏度,湿草和硬表面的表面接地温度超过20摄氏度和14度C分别。

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