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How neighborhood form influences building energy use in winter design condition: Case study of Chicago using CFD coupled simulation

机译:如何在冬季设计条件下影响建筑能源使用:使用CFD耦合模拟的芝加哥案例研究

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The energy use in building is affected by various factors including building shape, climate conditions, building envelope, equipment efficiency, HVAC system, and occupant behavior. Besides those factors, the wind environment of the microclimate and the neighborhood form, are potential factors influencing energy use. In this research, a neighborhood-scale building energy simulation scheme coupled with computational fluid dynamics (CFD) simulation is developed. The convective heat transfer coefficient (CHTC) obtained from CFD simulation is dynamically coupled with EnergyPlus simulation. To understand how neighborhood form and wind environment will change the energy use in different types of buildings inside a neighborhood in winter, the energy uses of different types of prototype buildings conforming to ASHRAE 90.1 2004 and 2016 standards are evaluated and compared. It is found that the CHTC and mean external wall temperature for each building have wide distributions under various neighborhood forms. The energy use intensity (EUI) in high-rises including office and residential buildings (ASHRAE, 2004) range from -10.2% to 20.7% and -13.3%-19.2% respectively against the mean EUI scenario. Generally, in winter design case, the increase in building multiplier will increase neighborhood EUI. The impact of building orientation on electricity and gas use intensity is different and shows a sinusoidal pattern, while the larger the setback, the less the energy use intensity (EUI) is. The EUI in ASHRAE 2016 buildings is less affected by neighborhood forms and the wind environment in Chicago due to better thermal insulation and higher building equipment efficiency. It is found a more scattered and low-rising neighborhood facing south is energy efficient on the winter design day in Chicago. (c) 2020 Elsevier Ltd. All rights reserved.
机译:建筑物的能源使用受各种因素的影响,包括建筑形状,气候条件,建筑信封,设备效率,HVAC系统和乘员行为。除了那些因素,微气密的风环境和邻域形式,是影响能源使用的潜在因素。在该研究中,开发了一种与计算流体动力学(CFD)模拟耦合的邻域级构建能量模拟方案。从CFD仿真获得的对流传热系数(CHTC)与EnergyPlus模拟动态耦合。要了解邻里的形式和风环境如何在冬季将不同类型的建筑物中的能源使用改变,并进行评估并比较符合ASHRAE 904和2016标准的不同类型的原型建筑的能源使用。发现每个建筑物的CHTC和平均外壁温度在各个邻域形式下具有广泛的分布。能源使用强度(EUI)高上升,包括办公室和住宅建筑(Ashrae,2004)的范围为-10.2%至20.7%和-13.3%-19.2%,而平均欧盟方案分别为-13.3%-19.2%。通常,在冬季设计案例中,建筑乘数的增加将增加邻里EUI。建筑方向对电力和天然气使用的影响是不同的并且显示正弦图案,而挫折越大,能量使用强度(EUI)越少。由于更好的保温和更高的建筑设备效率,欧盟2016年Ashrae 2016年建筑物的欧盟屋宇署的影响较小。它被发现面向南方的一个更散落和低于较低的邻居是芝加哥冬季设计日的节能。 (c)2020 elestvier有限公司保留所有权利。

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