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A review on the CFD analysis of urban microclimate

机译:城市小气候的CFD分析研究述评

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Urban microclimate studies are gaining popularity due to rapid urbanization. Many studies documented that urban microclimate can affect building energy performance, human morbidity and mortality and thermal comfort. Historically, urban microclimate studies were conducted with observational methods such as field measurements. In the last decades, with the advances in computational resources, numerical simulation approaches have become increasingly popular. Nowadays, especially simulations with Computational Fluid Dynamics (CFD) is frequently used to assess urban microclimate. CFD can resolve the transfer of heat and mass and their interaction with individual obstacles such as buildings. Considering the rapid increase in CFD studies of urban microclimate, this paper provides a review of research reported in journal publications on this topic till the end of 2015. The studies are categorized based on the following characteristics: morphology of the urban area (generic versus real) and methodology (with or without validation study). In addition, the studies are categorized by specifying the considered urban settings/locations, simulation equations and models, target parameters and keywords. This review documents the increasing popularity of the research area over the years. Based on the data obtained concerning the urban location, target parameters and keywords, the historical development of the studies is discussed and future perspectives are provided. According to the results, early CFD microclimate studies were conducted for model development and later studies considered CFD approach as a predictive methodology. Later, with the established simulation setups, research efforts shifted to case studies. Recently, an increasing amount of studies focus on urban scale adaptation measures. The review hints a possible change in this trend as the results from CFD simulations can be linked up with different aspects (e.g. economy) and with different scales (e.g. buildings), and thus, CFD can play an important role in transferring urban climate knowledge into engineering and design practice.
机译:由于快速的城市化,城市小气候研究正日益普及。许多研究表明,城市小气候会影响建筑物的能源性能,人类发病率,死亡率和热舒适度。从历史上看,城市微气候研究是通过观测方法(例如野外测量)进行的。在过去的几十年中,随着计算资源的发展,数值模拟方法变得越来越流行。如今,尤其是经常使用计算流体动力学(CFD)进行的模拟来评估城市小气候。 CFD可以解决热量和质量的传递以及它们与建筑物等单个障碍物之间的相互作用。考虑到城市小气候的CFD研究的快速增长,本文对直到2015年底期刊发表的有关该主题的研究进行了综述。研究根据以下特征进行分类:城市形态(一般与真实) )和方法(有或没有验证研究)。此外,通过指定考虑的城市设置/位置,模拟方程式和模型,目标参数和关键字对研究进行分类。这篇评论记录了这些年来研究领域的日益普及。基于获得的有关城市位置,目标参数和关键词的数据,讨论了研究的历史发展并提供了未来的展望。根据结果​​,进行了早期CFD小气候研究以进行模型开发,后来的研究则将CFD方法视为一种预测方法。后来,随着建立的仿真设置,研究工作转移到了案例研究上。最近,越来越多的研究集中在城市规模适应措施上。该评论暗示了这种趋势的可能变化,因为CFD模拟的结果可以与不同方面(例如经济)和不同规模(例如建筑物)联系起来,因此,CFD在将城市气候知识转化为气候变化方面可以发挥重要作用。工程和设计实践。

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