首页> 外文期刊>Open Journal of Applied Sciences >Numerical Study of Mixed Convection in a Photovoltaic Trombe Wall Channel Coupled with a Solar Chimney Integrated into a Building for Habitats Passive Cooling
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Numerical Study of Mixed Convection in a Photovoltaic Trombe Wall Channel Coupled with a Solar Chimney Integrated into a Building for Habitats Passive Cooling

机译:光伏曲线墙通道混合对流的数值研究,其与栖息地被栖息地的太阳烟囱集成到栖息地被动冷却的建筑物中

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The solar chimney can generate airflow through the living space of the building to provide cooling. Hence, solar energy represents the best renewable, environmentally friendly source of energy that can be used for heating and cooling of houses. The present paper reports the numerical study of the performance of the mixed convection in the associated hybrid Photovoltaic/Thermal chimneys integrated into building for natural habitat ventilation. The front side glass plate of the chimneys is heated by a non-uniform daily solar radiation flux. Air is considered to be the cooling fluid. The stream fucntion-vorticity formulation with a finite difference numerical discretization solution scheme has been adopted. The system of algebraic governing equations is solved by Thomas algorithm method. The aim of the present paper is to study and to predict the dynamic fields and particularly of the mass flow rate of the air thermosiphon drawing in the associated hybrid Photovoltaic-Thermal chimneys integrated into a building for passive cooling in the habitats. The effects of the governing parameters, namely Reynolds number (30 ≤ Re ≤ 200), Rayleigh number (103 ≤ Ra≤ 105), the integrated chimney width on the fluid flow and the heat transfer characteristics, are studied in detail. The local Nusselt number, streamlines, isotherms, PV cells electrical efficiency and the outlet velocity at the top of the channels are the results represented versus the above controlling parameters.
机译:太阳烟囱可以通过建筑物的生活空间产生气流,以提供冷却。因此,太阳能代表了可用于加热和冷却房屋的最佳可再生,环保能源来源。本文报道了在综合到建筑物中的相关混合光伏/热烟囱中混合对流性能的数值研究,用于自然栖息地通风。烟囱的前侧玻璃板通过非均匀的日常太阳辐射通量加热。空气被认为是冷却液。采用了具有有限差分数值离散化解决方案的流式发电机涡流配方。代数控制方程系统由托马斯算法方法解决。本文的目的是研究和预测动态领域,特别是在相关的混合光伏 - 热芯片中集成到栖息地中被动冷却的建筑物中的空气热虹吸管中的气体热虹吸管的质量流量。控制参数的效果,即雷诺数(30≤Re≤200),瑞利数(103≤RA≤105),流体流动上的集成烟囱宽度和传热特性。通道顶部的本地营养数,流线,等温线,光伏电池电效率和出口速度是与上述控制参数表示的结果。

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