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Numerical Study of Solar Chimney Operation in a Two story Building

机译:两层楼太阳能烟囱手术的数值研究

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In the present study a CFD model is developed for the examination of natural ventilation in a two store building with a solar chimney. The steady-state transport equations for the vector and scalar quantities (velocity vectors, turbulence, energy and spectral intensity of radiation) are solved numerically by a FV numerical method. The turbulent nature of the flow is simulated by the two equation k-w high Reynolds model while for the incident radiation is used the Discrete Ordinates (DO) model. The model efficiently renders the buoyancy effects inside the building, through density variation caused by temperature raise. The radiation modelling takes into account the thermal and optical spectral properties of materials. The developed numerical model was validated against published works for relative flows. Three modifications of the basic 2D geometry were examined in order to exploit the functionality design of a solar chimney. The better performance was achieved with the simpler design which has single openings connecting the solar chimney and the ventilated rooms, while the ventilation rate was compared with analytical models. 2D simulations' results can be used safely as indication about the solar chimney qualitative performance while they underestimate the mass flow rate in comparison with equivalent 3D approaches. The solar chimney operates better at morning and afternoon, while the worst operation is observed at the noon of June, as far it concerns the ventilation of the whole building
机译:在本研究中,开发了一种CFD模型,用于检查两家商店建筑物的自然通风,具有太阳烟囱。通过FV数值方法在数值上求解矢量和标量数量(速度矢量,湍流,能量和辐射的辐射速度,能量和光谱强度)的稳态传输方程。流动的湍流性质由两个等式K-W高雷诺模型模拟,而入射辐射使用离散坐落(DO)模型。该模型通过温度升高引起的密度变异有效地使建筑物内部的浮力效应变得有效地呈现。辐射建模考虑了材料的热和光谱性能。开发的数值模型对公布的作品进行了验证,以获得相对流动。检查基本2D几何形状的三种修改,以利用太阳能烟囱的功能设计。通过更简单的设计实现了更好的性能,该设计具有连接太阳能烟囱和通风房的单个开口,而通风率与分析模型进行了比较。 2D模拟的结果可以安全地用作关于太阳烟囱定性性能的指示,同时与等效3D方法相比,它们低估了质量流量。太阳烟囱在早上和下午运营,而6月中午在6月份观察到最糟糕的操作,它涉及整个建筑的通风

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