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Performance analysis of triple-pass solar air heater system: Effects of adding a net of tubes below absorber surface

机译:三通太阳能空气加热器系统性能分析:在吸收器表面下添加净管的效果

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摘要

In this article, two triple-pass solar air heater (TPSAH) collectors have been experimentally investigated to analyse their performances through adding a net of tubes below the absorber surface and double glass cover on one of them for purpose of comparison. The first collector (TPSAH-1) has been covered with a single glass, whereas the second collector (TPSAH-2) has been covered with a double glass and adding a net of tubes below the absorber surface. The experiments for each system have been carried out in winter and compared under the same weather conditions. For all air mass flowrates, the results indicated that TPSAH-2 produces a higher efficiency as compared to TPSAH-1, where the maximum efficiency for high air mass flowrate have been obtained equal to 80.2% and 73.4%, respectively. A considerable temperature difference has been observed when using TPSAH-2 in comparison with that obtained using TPSAH-1. The improvement in the efficiency of TPSAH-2 compared to TPSAH-1 confirms that the adding of a net of tubes and additional glass cover have significant influence on heat transfer rate. The air mass flowrate has a substantially impact as compared to temperature difference. Thus, the performance of TPSAH is directly proportional to rise in air mass flowrate. For TPSAH-1, the glass, plate and outlet temperatures have been always found lower than TPSAH-2. Based on the outlet air temperature, it can be concluded that TPSAH-2 can be used for the applications that required large temperature difference and TPSAH-1 for the applications that required small temperature difference.
机译:在本文中,已经通过实验研究了两个三通太阳能空气加热器(TPSAH)收集器,通过在其中一个中添加吸收剂表面下方的管,通过在其中一个下方的管子中添加净的管,以进行比较。第一收集器(TPSAH-1)已覆盖有单个玻璃,而第二收集器(TPSAH-2)已被双玻璃覆盖并在吸收器表面下方添加管的网。每种系统的实验已经在冬季进行,并在相同的天气条件下进行比较。对于所有空气质量流量,结果表明,与TPSAH-1相比,TPSAH-2产生更高的效率,其中高空气质量流量的最大效率分别等于80.2%和73.4%。与使用TPSAH-1获得的相比,使用TPSAH-2时,已经观察到相当大的温差。与TPSAH-1相比,TPSAH-2效率的提高证实,添加了一套管和额外的玻璃覆盖对传热速率有显着影响。与温度差相比,空气质量流量具有显着的影响。因此,TPSAH的性能与空气质量流量的上升成正比。对于TPSAH-1,玻璃,板和出口温度始终低于TPSAH-2。基于出口空气温度,可以得出结论,TPSAH-2可用于所需的应用程序,用于所需的应用需要较小的温差。

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