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Numerical Investigation of Heat Transfer and Fluid Flow Characteristic of V-corrugated Plate Solar Air Collector with Prismatic Fin as An Extended Surface

机译:V形瓦楞板太阳能空气收集器传热和流体流动特性的数值研究,棱镜翅片作为延伸表面

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As the time goes by, fossil energy consumption is increasing. Absolutely, It will cause the decreasing on fossil energy. Because of that it is essential to look for renewable energy, for example is solar energy. Solar energy can be implicated on solar air collector. Solar air collector consists of absorber plate, ducting channel, cover glass, and blower .A numerical investigation of heat transfer and fluid flow characteristics in v-corrugated plate solar air collector having prismatic fin on the absorber plate is presented in this study. Three-dimensional simulations are conducted using FLUENT 6.3.26 and SST-Kω turbulence model. The computations are performed for different fin dimension with a varying thickness and spacing of fin. Simulations were used to find the optimal thickness of the 3mm, 4mm, and 5mm fin with 0.25l, 0.50 l, and 0.75 l spacing between the obstacle on each thickness variation. The effects of the fin dimension and spacing on pressure drop and pressure difference are obtained and analyzed. As the result, using fin on the plate absorber enhanced the heat transfer. The maximum value of the thermal performance parameter was found in 3 mm fin thickness and 0.50l spacing with AP/AT 37.0672 compared to solar air collector without fin. Presence of prism fin generate turbulence in the flow that obviously increase the heat transfer, but it also gives effect on the pressure drop along the ducting channel.
机译:随着时间的推移,化石能量消耗正在增加。绝对,它会导致化石能量减少。因为它必须寻找可再生能源,例如太阳能。太阳能可以涉及太阳能空气收集器。太阳能收集器由吸收板,管道通道,覆盖玻璃和鼓风机组成。在本研究中介绍了具有在吸收板上具有棱镜鳍片的V形瓦楞板太阳能空气收集器的传热和流体流动特性的数值研究。使用Fluent 6.3.26和SST-KΩ湍流模型进行三维模拟。为不同的翅片尺寸执行计算,具有不同的厚度和翅片的间隔。用于在每个厚度变化的障碍物之间找到3mm,4mm和5mm翅片的3mm,4mm和5mm翅片的最佳厚度。获得翅片尺寸和间距对压降和压力差的影响。结果,在板吸收器上使用翅片增强了传热。与太阳能空气收集器没有翅片相比,在3mm / 37.0672中发现了热能参数的最大值。棱镜翅片的存在在流动中产生湍流,显然增加了传热,但它也对沿着管道通道的压降产生影响。

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