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Solar Air Collectors for Space Heating and Ventilation Applications—Performance and Case Studies under Romanian Climatic Conditions †

机译:用于空间供暖和通风应用的太阳能集热器—罗马尼亚气候条件下的性能和案例研究†

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Solar air collectors have various applications: on the one hand, they can be used for air heating in cold seasons; on the other hand they can be used in summer to evacuate the warm and polluted air from residential, offices, industrial, and commercial buildings. The paper presents experimental results of a solar collector air, under the climatic conditions of the Southeastern Europe. The relationships between the direct solar irradiation, the resulting heat flow, the air velocity at the outlet, the air flow rate, the nominal regime of the collector and the efficiency of conversion of solar energy into thermal energy are all highlighted. Thus, it was shown that after a maximum 50 min, solar air collectors, with baffles and double air passage can reach over 50% efficiency for solar irradiation of 900–1000 W/m2. The article also presents a mathematical model and the results of a computational program that allows sizing solar collectors for the transfer of air, with the purpose of improving the natural ventilation of buildings. The article is completed with case studies, sizing the area to be covered with solar collectors, to ensure ventilation of a house with two floors or for an office building. In addition, the ACH (air change per hour) coefficient was calculated and compared.
机译:太阳能集热器有多种应用:一方面,它们可以在寒冷季节用于空气加热;另一方面,它们可以在夏天用于从住宅,办公室,工业和商业建筑中排出温暖和污染的空气。本文介绍了东南欧气候条件下太阳能集热器空气的实验结果。太阳直射辐射,产生的热流,出口处的空气速度,空气流速,集热器的标称状态以及太阳能转换成热能的效率之间的关系都得到了强调。因此,表明在最长50分钟后,带有挡板和双空气通道的太阳能空气收集器在900-1000 W / m 2 的太阳辐射下可以达到50%以上的效率。本文还介绍了一个数学模型和一个计算程序的结果,该计算程序可以确定用于收集空气的太阳能收集器的大小,目的是改善建筑物的自然通风。本文将通过案例研究来完成,确定要用太阳能集热器覆盖的区域,以确保两层楼的房屋或办公楼的通风。另外,计算并比较了ACH(每小时换气量)系数。

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