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Experimental analysis of a flat plate receiver for measurement of low thermal power of a central tower solar system

机译:平板接收器测量中央塔太阳能系统低热功率的实验分析

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In the city of Hermosillo, in the northwestern state of Sonora, Mexico, the University of Sonora in agreement with the National Autonomous University of Mexico is developing solar tower technology. A thermal receiver was designed to measure the thermal power of a small number of heliostats and experimental results were obtained to measure the thermal power of a small number of heliostats. The flat plate thermal receiver is a parallelepiped enclosure 1.20 m high, 1.23 m wide and 0.1 m deep with a receiving area of 1.476 m~2 and a ε = 0.95, It also has 1228 cylindrical fins evenly distributed in the interior, each fin has a diameter of 0.0095 m and a length of 0.09 m, which increases the area of the receiving wall by up to 329%. Three experiments (with 1, 4 and 7 heliostats respectively) were carried out using the effect of the radiative flux provided on: the estimated thermal power, thermal efficiency, temperature distribution of the internal surface of the receiving wall (plate), the temperature distribution in the fins and in the fluid; all of this during steady state conditions. The experiments were performed for a Re number of 2.90 × 10~4; it was found that the thermal efficiency of the system decreases as the radiative flux increases. The maximum efficiency was 84.9% and the minimum was 58.4% for experiment 1 and 3 respectively. We also observe that the temperature gradients of the fins increase as the radiative flux increases and that the fluid increases its temperature as it passes through the receiver and the center of the plate has the higher temperatures.
机译:在赫索奈市,在墨西哥索诺拉州西北州,索诺拉大学与墨西哥国家自治大学同意正在开发太阳能塔技术。旨在测量少量定向器的热功率,并获得实验结果来测量少量定向镜的热力。平板热接收器是一个平行六面板的外壳1.20米高,1.23米宽,0.1米,接收面积为1.476 m〜2,ε= 0.95,它还具有1228个圆柱形翅片,在内部均匀分布,每鳍直径为0.0095米,长度为0.09米,其增加接收壁的面积高达329%。采用辐射磁通量的效果进行三个实验(分别为1,4和7和7 Heliostats):估计的热功率,热效率,温度,温度分布,温度分布在翅片和液体中;所有这一切都在稳态条件下。进行实验,进行2.90×10〜4的重量;发现系统的热效率随着辐射磁通而增加而降低。最高效率为84.9%,实验1和3分别为58.4%。我们还观察到翅片的温度梯度随着辐射磁通而增加而增加,并且流体通过接收器的温度提高其温度,并且板的中心具有较高的温度。

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