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Efficiency of Recycling Double-Pass V-Corrugated Solar Air Collectors

机译:双通道V型波纹太阳能集热器的回收效率

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摘要

The influence of recycling on double-pass solar air collectors with welding of the V-corrugated absorber has been studied experimentally and theoretically. Welding the V-corrugated absorber and the recycle-effect concept to the solar air collector was proposed to strengthen the convective heat-transfer coefficient due to turbulence promotion. Both the recycle effect and the V-corrugated absorber can effectively enhance the heat transfer efficiency compared to various designs such as single-pass, flat-plate double-pass, and double-pass wire mesh packed devices. Recycling operations and welding the V-corrugated absorber could enhance the collector efficiency by increasing the recycle ratio, incident solar radiations, and air mass flow rates. The most efficient and economical operating conditions were found at R ≈ 0.5, with relatively small hydraulic dissipated energy compensation. It was found that the turbulence intensity increase from welding the V-corrugated absorber into the solar air collector channel could compensate for the power consumption increase, when considering economic feasibility.
机译:通过实验和理论研究了再循环对焊接V型波纹吸收器的双通道太阳能空气收集器的影响。提出将V型波纹吸收器和循环效应概念焊接到太阳能集热器上,以增强湍流促进作用下的对流传热系数。与单通道,平板双通道和双通道丝网包装设备等各种设计相比,再循环效应和V型波纹吸收器均可有效地提高传热效率。回收操作和焊接V形波纹吸收器可通过提高回收率,入射太阳辐射和空气质量流量来提高收集器效率。发现最有效,最经济的运行条件为R≈0.5,液压耗散能量补偿相对较小。当考虑到经济可行性时,发现将V形波纹吸收器焊接到太阳能集热器通道中引起的湍流强度增加可以补偿功耗的增加。

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