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Experiment and optimization of mixed medium effect on small-scale salt gradient solar pond

机译:小型盐梯度太阳塘混合介质效应试验与优化

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Salt gradient solar pond is one of the methods for absorbing and storing solar energy. This study investigates experimentally the performance of mixed medium at the lower convection zone of laboratory scale solar pond. The experiment was carried out in Dezful, Iran. This specific geographical location mainly has a high-level of solar radiation and intense dusty climate. The climatic condition criterion and mixed medium distinguishes the novelty of this research. Data was obtained in 90 days period for the temperature distribution and salinity gradient. For comparison, two similar solar ponds of circular cross section with surface area of 0.51 m(2) and height of 63 cm were designed and built. Two layers of pebble and ball bearing as porous medium were used for one of the solar ponds in the lower convection zone (LCZ). At the end of test period, the temperatures of mixed medium and conventional in the lower convection were obtained at 75 degrees C and 71 degrees C, respectively. Therefore, the mixed medium solar pond indicated an increase of 5.6% in temperature. In addition, variation of maximum temperature of the mixed medium pond was less than the conventional LCZ solar pond. Using the mixed medium in the LCZ resulted in more thermal stability and lower temperature drop. However, mixed medium indicated higher thermal resistance and more storage capacity for the pond. Non-dimensional numbers have been introduced for the optimization of this mixed medium condition. A criterion parameter has been obtained for the optimization of the mixed medium in the solar pond. (C) 2017 Elsevier Ltd. All rights reserved.
机译:盐梯度太阳能池是吸收和储存太阳能的方法之一。本研究通过实验研究了实验室规模的日光池较低对流区混合介质的性能。实验在伊朗的德兹富进行。这个特定的地理位置主要是高水平的太阳辐射和强烈的多尘气候。气候条件准则和混合介质使这项研究具有新颖性。在90天内获得了温度分布和盐度梯度的数据。为了进行比较,设计并建造了两个类似的圆形横截面的太阳能池,它们的表面积为0.51 m(2),高度为63 cm。下对流区(LCZ)的其中一个太阳池使用了两层卵石和滚珠轴承作为多孔介质。在测试期结束时,较低对流温度下的混合介质温度和常规温度分别为75摄氏度和71摄氏度。因此,混合介质太阳池温度升高了5.6%。另外,混合培养基池的最高温度变化小于传统的LCZ太阳能池。在LCZ中使用混合介质可提高热稳定性并降低温度下降。但是,混合介质显示出较高的耐热性和池塘的更多存储容量。已引入无量纲数以优化此混合介质条件。已经获得了用于优化太阳池中混合介质的标准参数。 (C)2017 Elsevier Ltd.保留所有权利。

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