首页> 外文期刊>International Journal of Energy and Environmental Engineering >Parametric investigation of solar chimney with new cooling tower integrated in a single room for New Assiut city, Egypt climate
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Parametric investigation of solar chimney with new cooling tower integrated in a single room for New Assiut city, Egypt climate

机译:集成新冷却塔的太阳能烟囱的参数化研究,该冷却塔集成在一个新房间中,适用于埃及新阿西尤特市

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Houses in Egypt are often designed without taking the climate into account sufficiently. Consequently, new houses often have a poor indoor climate, which affects comfort, health and building efficiency. In hot and arid climates, passive cooling system employs non-mechanical procedures to maintain suitable indoor temperature. Thus, they have been increasing the influence of the traditional cooling concepts but with new technology. Therefore, these conditions encourage such a concept to enhance natural ventilation with evaporative cooling and save energy in the New Assiut city. In the present study, the effect of solar chimney parameters on wind tower parameters was numerically investigated as a second phase of the new integrated model. All the detailed mathematical equations and system description are presented in phase one. A numerical simulation is implemented in Transient systems simulation program-Conjunction of multizone infiltration specialists program softwares. The parametric studies of the integrated system in phase two were studied to achieve high performance with new compact small design especially for the hottest days in the summer season. The temperature and airflow rates are predicted iteratively taking into account the zone pressure and the pressure drop in the evaporative cooler component. The result shows that the system achieves nearly at least close to 80?% acceptable comfort range according to Adaptive Comfort Standard of American Society of Heating, Refrigerating and Air-Conditioning Engineers with optimum ventilation rate 414?m_(3)/h for the hottest day. The findings show that the system achieves high performance in the hottest day with small solar chimney dimension and is easy to integrate in the building envelope than the proposed system before parametric studies in phase one.
机译:埃及的房屋设计往往没有充分考虑到气候。因此,新房子的室内气候通常很差,这会影响舒适度,健康状况和建筑效率。在炎热和干旱的气候下,被动冷却系统采用非机械程序来维持合适的室内温度。因此,他们一直在使用新技术来增加传统冷却概念的影响。因此,这些条件鼓励了这样一种概念,即通过蒸发冷却来增强自然通风并节省新阿西乌特市的能源。在本研究中,作为新的集成模型的第二阶段,对太阳烟囱参数对风塔参数的影响进行了数值研究。第一阶段介绍了所有详细的数学方程式和系统描述。在瞬态系统仿真程序-多区域渗透专家程序软件的结合中实现了数值模拟。对第二阶段集成系统的参数研究进行了研究,目的是通过新的紧凑型小型设计实现高性能,尤其是在夏季最热的日子。考虑到区域压力和蒸发冷却器组件中的压降,反复预测温度和气流速率。结果表明,根据美国供热,制冷和空调工程师学会的适应性舒适标准,该系统达到了至少接近80%的可接受舒适度范围,最热时的最佳通风速率为414?m_(3)/ h。天。研究结果表明,该系统在第一天进行参数研究之前,在最热的一天中以较小的太阳烟囱尺寸实现了高性能,并且比拟议中的系统更易于集成到建筑围护结构中。

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