The solar air heater is a device rises air flowing temperature in numerous engineering applications as; heating of buildings, and agricultural crops drying. An indoor investigation was experimentally established using the solar simulator to test the flat plate double-pass solar air heater performance with and without paraffin wax-based on phase change material PCM. Although the temperature inside this collector is higher than the required temperature. Therefore, being a paraffin wax may be used as a heat storing material will enable the collector to work during the night. The tests were applied to evaluate the charge and discharge process of the new system and was performed under various air MFRs of (0.6, 0.9, 1.2, 1.5, and 1.8) kg/min and constant solar irradiation of 625 W/m~2. The results showed that the maximum thermal efficiencies obtained for the double-pass with and without PCM were 63.53% and 68.23%, respectively, for airflow rate of 1.8 kg/min and also the efficiencies is a strongly dependence on the air MFR. Also, the maximum air temperature rise was about 10.9°C, and 12.25 °C with and without PCM, respectively, above the inlet temperature at air MAF of 0.6 kg/min and solar irradiation of 625 W/m~2 during charging period and this leads to energy saving. The experimental tests showing reasonable agreement with the previous study with a maximum error of thermal efficiency was about (4.5%) at the same indoor conditions.
展开▼
机译:的太阳能空气加热器是一个设备上升在许多工程应用中,空气流动的温度;加热的建筑物,和农作物干燥。使用太阳能模拟器进行测试平板具有和不具有基的蜡上的相变材料PCM石蜡双通太阳能空气加热器性能室内调查实验确定。虽然这种收集器内的温度低于所需的温度更高。因此,作为一个石蜡可以被用作一个储热材料将使在夜间集电极工作。该试验用于评价新系统的充电和放电过程和下的各种空气的MFR进行(0.6,0.9,1.2,1.5,1.8)公斤/分钟,625瓦/米〜2恒定的太阳辐射。结果表明,为双通有和没有PCM获得的最大热效率分别为63.53%和68.23%,为1.8 kg / min的气流速率,并且还效率是一个对空气MFR强烈依赖性。另外,最大空气温度升高充电周期期间为约10.9℃,12.25℃下具有和不具有PCM,分别以上以0.6千克/分钟和625瓦/米〜2的太阳辐射空气MAF入口温度和这导致节能。显示用的热效率的最大误差与先前的研究吻合的实验测试是大约在相同的室内条件下(4.5%)。
展开▼