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Three-dimensional thermal and airflow (3D-TAF) model of a dome-covered house in Canada

机译:加拿大圆顶覆盖房屋的三维热力和气流(3D-TAF)模型

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A dome-covered house is an example of designing sustainable buildings by learning from the optimized biological forms from the nature. The paper presents a 3-D thermal and air flow (3D-TAF) model that estimates the energy needs of a dome-covered house. The model is verified with CFD simulations under the COMSOL Multiphysics environment, experimental measurements and simulation results from similar structures published by other researchers. The use of the dome is expected to reduce the annual heating load of the house by 62.6%, compared with that of an isolated house located in Montreal at 45°N latitude.
机译:圆顶覆盖的房屋是通过学习自然界中最优化的生物形式来设计可持续建筑的示例。本文介绍了一种3D热空气流动(3D-TAF)模型,该模型可估算圆顶住宅的能源需求。该模型通过COMSOL Multiphysics环境下的CFD模拟,实验测量和其他研究人员发布的相似结构的模拟结果进行了验证。与位于蒙特利尔北纬45°的独立式房屋相比,使用圆顶预计将使房屋的年度供暖负荷减少62.6%。

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