A hybrid framework for assessing outdoor thermal comfort in large-scale urban environments

IF 7.9 1区 环境科学与生态学 Q1 ECOLOGY Landscape and Urban Planning Pub Date : 2024-12-12 DOI:10.1016/j.landurbplan.2024.105281
Siqi Jia , Yuhong Wang , Nyuk Hien Wong , Qihao Weng
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Abstract

Given the challenges posed by rapid urbanization and global warming, outdoor thermal comfort has become crucial for urban livability. However, there is a lack of field survey-based research on large-scale thermal comfort assessment across continuous urban spaces. To address this gap, this study developed a framework for assessing outdoor thermal comfort. A total number of 668 onsite observations from field studies during the daytime on typical summer days were collected and used for model development. The sites were distributed in diverse local climate zones (LCZs) of Hong Kong, enabling the prediction of outdoor thermal comfort across the city under different urban settings. A neural network model was trained for predicting daytime outdoor thermal comfort based on both meteorological and morphological variables. Universal Thermal Climate Index (UTCI) was used to indicate objective measures of human thermal comfort. The model was then applied to wider urban layouts and dynamic climatic conditions. The results revealed that during extreme hot conditions, approximately 74.8% of areas experienced strong to extreme heat stress, with thermal sensations classified as hot or very hot, while the remaining 25.3% fell under moderate heat stress. High levels of thermal stress were observed in urban layouts of low-rise buildings, with LCZ 3 showing the highest extreme heat stress percentage at 61.3%, followed closely by LCZ 6 at 57.6%. In both LCZs, over 90% of areas faced strong to extreme thermal stress. These findings are crucial for identifying urban regions with high thermal stress. The framework could be valuable for cities with similar climate and geographical contexts.
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评估大规模城市环境中室外热舒适度的混合框架
考虑到快速城市化和全球变暖带来的挑战,室外热舒适已经成为城市宜居性的关键。然而,基于现场调查的大尺度连续城市空间热舒适评价研究尚缺乏。为了解决这一差距,本研究开发了一个评估室外热舒适的框架。在典型的夏季白天,收集了668个实地研究的现场观测数据,并将其用于模型开发。这些站点分布在香港不同的本地气候带(lcz),可以预测不同城市环境下整个城市的室外热舒适。建立了基于气象和形态变量的室外热舒适预测神经网络模型。通用热气候指数(UTCI)是人类热舒适的客观指标。然后将该模型应用于更广泛的城市布局和动态气候条件。结果表明,在极端高温条件下,约74.8%的地区经历了强烈到极端热应激,热感觉分为热或非常热,其余25.3%的地区处于中等热应激状态。低层建筑的城市布局中存在高水平的热应力,其中lcz3的极端热应力百分比最高,为61.3%,其次是lcz6,为57.6%。在这两个lccs中,超过90%的地区面临强至极端热应力。这些发现对于确定高热应力的城市区域至关重要。该框架对气候和地理环境相似的城市可能很有价值。
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来源期刊
Landscape and Urban Planning
Landscape and Urban Planning 环境科学-生态学
CiteScore
15.20
自引率
6.60%
发文量
232
审稿时长
6 months
期刊介绍: Landscape and Urban Planning is an international journal that aims to enhance our understanding of landscapes and promote sustainable solutions for landscape change. The journal focuses on landscapes as complex social-ecological systems that encompass various spatial and temporal dimensions. These landscapes possess aesthetic, natural, and cultural qualities that are valued by individuals in different ways, leading to actions that alter the landscape. With increasing urbanization and the need for ecological and cultural sensitivity at various scales, a multidisciplinary approach is necessary to comprehend and align social and ecological values for landscape sustainability. The journal believes that combining landscape science with planning and design can yield positive outcomes for both people and nature.
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