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首页> 外文期刊>Solar Energy >Numerical coupling model to compute the microclimate parameters inside a street canyon Part Ⅱ: Experimental validation of air temperature and airflow
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Numerical coupling model to compute the microclimate parameters inside a street canyon Part Ⅱ: Experimental validation of air temperature and airflow

机译:计算街道峡谷内微气候参数的数值耦合模型第二部分:空气温度和气流的实验验证

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摘要

Software and hardware systems have evolved rapidly in recent years. The numerical microclimate simulation is becoming an important tool for providing better information and analysis of thermal comfort, thermodynamic behaviors and energy consumption for a large range of urban configurations. This research is conducted over two parts. In the first part (Athamena et al., 2018), we have presented the development of a new numerical model based on full dynamic coupling process between the thermo-radiative software “Solene” and the CFD model “Code_Saturne”. The surface temperatures’ output results of coupled simulations were compared with the measurements data obtained during the EM2PAU1Etude Micro-Météorologique sur la Propagation Acoustique en milieu Urbain.1experimental campaign. The comparisons showed that the coupling model reproduced the wall and ground surface temperatures quite well. This second part discusses the experimental validation concerning the air temperature and airflow results. Foremost, the measurement devices used during the EM2PAU experiment to measure air temperatures and average wind velocities inside the street canyon are detailed. Next, we present the inlet boundary conditions for the thermodynamic model. Following the same method used for surface temperatures, we have submitted the numerical results of air temperature, wind velocity and turbulent kinetic energy to an assessment with the statistical parameters and experimental data. The results indicate that the coupling model simulates the air temperatures and mean wind velocities at local scale adequately. On the others hand, the comparisons for turbulent kinetic energy highlight unsatisfactory results which are probably due to an erroneous representation of the inlet profiles ofkandɛbased on the theoretical formulations.
机译:近年来,软件和硬件系统发展迅速。微气候数值模拟正成为一种重要工具,可为各种城市配置提供更好的信息并分析热舒适性,热力学行为和能耗。这项研究分为两个部分。在第一部分(Athamena等人,2018)中,我们介绍了基于热辐射软件``Solene''和CFD模型``Code_Saturne''之间的全动态耦合过程开发的新数值模型。耦合模拟的表面温度输出结果与EM2PAU1EtudeMicro-Météorologiquesur la Apaustique en milieu Urbain.1实验战役期间获得的测量数据进行了比较。比较表明,耦合模型很好地再现了墙和地面的温度。第二部分讨论有关空气温度和气流结果的实验​​验证。首先,详细介绍了在EM2PAU实验期间用于测量街道峡谷内的空气温度和平均风速的测量设备。接下来,我们介绍热力学模型的入口边界条件。遵循用于表面温度的相同方法,我们将空气温度,风速和湍动能的数值结果提交给具有统计参数和实验数据的评估。结果表明,耦合模型可以在局部尺度上充分模拟空气温度和平均风速。另一方面,湍流动能的比较突出了不令人满意的结果,这可能是由于根据理论公式错误地表示了kandɛ的入口轮廓。

著录项

  • 来源
    《Solar Energy》 |2018年第8期|470-485|共16页
  • 作者单位

    Laboratoire Architecture et Environnement, Ecole Polytechnique de l’Architecture et de l’Urbanisme (EPAU),Centre Scientifique et Technique du Bâtiment (CSTB), CAPE Département,Laboratoire de recherche en Hydrodynamique, Énergétique et Environnement Atmosphérique,Institut de Recherche en Sciences et Techniques de la Ville (IRSTV);

    Laboratoire de recherche en Hydrodynamique, Énergétique et Environnement Atmosphérique,Institut de Recherche en Sciences et Techniques de la Ville (IRSTV);

    Laboratoire de recherche en Hydrodynamique, Énergétique et Environnement Atmosphérique,Institut de Recherche en Sciences et Techniques de la Ville (IRSTV);

    Centre Scientifique et Technique du Bâtiment (CSTB), CAPE Département;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Numerical coupling model; Street canyon; CFD model; Air temperature; Wind velocity; Turbulent kinetic energy; Experimental campaign;

    机译:数值耦合模型;街道峡谷;CFD模型;气温;风速;湍动能;实验活动;

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