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Energy Consumption and Indoor Environment Predicted by a Combination of Computational Fluid Dynamics and Building Energy Performance Simulation

机译:计算流体力学与建筑能耗模拟相结合预测的能耗与室内环境

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摘要

An interconnection between a building energy performance simulation program and a Computational Fluid Dynamics program (CFD) for room air distribution is introduced for improvement of the predictions of both the energy consumption and the indoor environment.The article describes a calculation of the energy consumption in a large building where the building energy simulation program is modified by CFD predictions of the flow between three zones that are connected by pressure and buoyancy-driven air flow through open areas. The two programs are interconnected in an iterative procedure. The article shows also an evaluation of the air quality in the main area of the buildings based on CFD predictions. It is demonstrated that an interconnection between a CFD program and a building energy performance simulation program will improve both the energy consumption data and the prediction of thermal comfort and air quality in a selected area of the building.
机译:为了改善能耗和室内环境的预测,引入了建筑能耗性能模拟程序和用于室内空气分配的计算流体动力学程序(CFD)之间的互连,从而描述了室内能耗的计算。大型建筑物,通过CFD对三个区域之间的流动进行CFD预测来修改建筑能耗模拟程序,这三个区域通过压力和由浮力驱动的空气通过开放区域进行连接。这两个程序以迭代过程相互连接。文章还显示了基于CFD预测的建筑物主要区域的空气质量评估。结果表明,CFD程序和建筑物能源性能模拟程序之间的互连将改善建筑物选定区域的能耗数据以及热舒适度和空气质量的预测。

著录项

  • 作者

    Nielsen Peter Vilhelm;

  • 作者单位
  • 年度 2003
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类

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