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New criteria for assessing low wind environment at pedestrian level in Hong Kong

机译:评估香港行人水平低风环境的新准则

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The choice of proper wind comfort criterion is considered to be crucial to reliable assessment of pedestrian level wind comfort. This paper aims to propose a wind comfort criterion that can be applied to Hong Kong, in which the wind comfort is seriously deteriorated by the moderated airflow, particularly in the hot and humid summer. By thoroughly reviewing and comparing exiting wind comfort criteria, the parameters in Lawson (1978) criterion are adopted for acceptable, tolerable and intolerable category and the parameters in NEN8100 (2006) criterion are adopted for danger category in the proposed criteria. Besides, a low wind parameter suggested by AVA scheme (2005) is adopted for unfavourable category in summer criterion. The adopted parameters provide scientific foundations and they are carefully chosen to adapt the weak wind conditions. The prominent features of the criteria are proposed seasonally (summer and winter, respectively) and the overall mean wind velocity ratio (OMVR) is used as threshold wind velocity parameter. The wind tunnel tests of Hong Kong Polytechnic University (HKPolyU) campus model were used as a case study. The results show that the proposed criteria can reasonably represent the weak wind condition and provide suitable assessments of the wind comfort in Hong Kong. Moreover, the findings in this study provide scientific basis for future policy-making and the proposed criteria can also help city planners to improve the pedestrian level wind comfort. (C) 2017 Elsevier Ltd. All rights reserved.
机译:选择适当的风舒适度标准被认为对行人水平风舒适度的可靠评估至关重要。本文旨在提出一种适用于香港的风舒适标准,其中适度的气流会严重降低风舒适度,尤其是在炎热潮湿的夏季。通过彻底审查和比较现有的风舒适度标准,在拟议的标准中,采用Lawson(1978)标准中的参数来确定可接受,可忍受和不可忍受的类别,将NEN8100(2006)标准中的参数用于危险类别。此外,夏季标准的不利类别采用了AVA方案(2005)建议的低风参数。所采用的参数提供了科学依据,并且经过精心选择以适应弱风条件。该标准的显着特征是按季节(分别是夏季和冬季)提出的,并且将整体平均风速比(OMVR)用作阈值风速参数。以香港理工大学(HKPolyU)校园模型的风洞试验为例。结果表明,所提出的标准可以合理地代表弱风情况,并可以对香港的风舒适度进行适当的评估。此外,本研究的发现为将来的决策提供了科学依据,并且所提出的标准还可以帮助城市规划者提高行人风的舒适度。 (C)2017 Elsevier Ltd.保留所有权利。

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