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A new method to assess spatial variations of outdoor thermal comfort : onsite monitoring results and implications for precinct planning

机译:一种评估室外热舒适度空间变化的新方法:现场监测结果及其对区域规划的意义

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摘要

Residents wish to have outdoor spaces to enjoy walking, cycling, and other recreational activities, which are often hindered by the unfavorable thermal comfort conditions, especially in the summer. High building densities lower the average wind speed and this intensifies the urban heat island effects at city scale. The conscientious use of building morphology to create local thermal comfort zone at selected spots in a large precinct is becoming a pressing issue for sustainable urbanization. This paper is a proof of concept study via continuous monitoring of the pedestrian level winds and thermal parameters at two sample days in summer, which include instantaneous air temperature, globe temperature, wind speed and humidity. Three outdoor locations at an university campus are chosen and daytime thermal perceptions at the three sites were evaluated using PET (Physiological equivalent temperature). A PET based new index was defined, which is called the thermally-perceivable environmental parameter difference. By analyzing the simultaneous differences of radiant temperature, wind speed and air temperature between the monitored spots, it is shown that it was the wind speed and radiant temperature differences that were making significant differences in thermal comfort. This pilot study clearly indicates that wind amplification combined with shading effects can generate thermally comfortable conditions in the open ground floor beneath an elevated building, even on a sunny, hot summer day in a subtropical city. This finding helps to alert city planners of additional options available in precinct planning to encourage outdoor activities.
机译:居民希望有户外空间来享受散步,骑自行车和其他娱乐活动,而这通常受到不利的热舒适条件的阻碍,尤其是在夏天。高建筑密度降低了平均风速,这在城市规模上加剧了城市热岛效应。认真使用建筑形态在大型区域的选定位置创建局部热舒适区,已成为可持续城市化的紧迫问题。本文是通过在夏季的两个采样日连续监测行人水平风和热参数(包括瞬时空气温度,地球温度,风速和湿度)而进行的概念验证研究。选择大学校园中的三个室外地点,并使用PET(生理等效温度)评估三个地点的白天热感。定义了基于PET的新指标,称为热可感知环境参数差异。通过分析监测点之间的辐射温度,风速和空气温度的同时差异,表明是风速和辐射温度的差异在热舒适性上产生了显着差异。这项初步研究清楚地表明,即使是在亚热带城市的阳光明媚,炎热的夏日,风的放大与遮蔽的影响也可以在高架建筑物下方的空旷地面上产生热舒适的条件。这一发现有助于提醒城市规划人员区域规划中可用的其他选项,以鼓励户外活动。

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