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Transient heat extraction modeling method for a rectangular type salt gradient solar pond

机译:矩形盐梯度太阳池的瞬态吸热建模方法

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摘要

In this article, a transient modeling method for the heat extraction process in the rectangular solar ponds is presented by using a finite difference technique. Firstly, the thermal behavior of the pond, during the heat extraction operation is modeled. Then the model is verified using experimental data, and the maximum observed percentage error of this method is 2.03%. This method is used to model the heat extraction from a hypothetical pond in Tehran for three months of August, September, and November. The results present the temperature profiles, the extracted heat and the rate of heat extraction. All of these parameters have the highest value in August, and the lowest values are allocated to November. Moreover, the percentages of the extracted heat during the operation are studied. For all the three months, this parameter has a high value in the first 40% of the time needed to full heat extraction. Between the 40% and 70% of the total time, the heat extraction rate reduces drastically, and after the 70% of the total time, it is almost constant at a low value. Also, the modeling results are used in a low temperature organic Rankine cycle, and it is found that for the designed pond, the pond can be used as the heat source of the cycle only in August and for 7.31 h of operation. (C) 2016 Elsevier Ltd. All rights reserved.
机译:本文提出了一种利用有限差分技术的矩形太阳池热提取过程的瞬态建模方法。首先,对排热过程中池塘的热行为进行了建模。然后使用实验数据对模型进行验证,该方法的最大观测百分比误差为2.03%。该方法用于模拟德黑兰假设池塘8月,9月和11月三个月的热量提取。结果显示了温度曲线,提取的热量和提取热量的速率。所有这些参数在8月具有最高值,而最低值分配给11月。此外,还研究了运行期间提取的热量的百分比。在过去的三个月中,此参数在完全排热所需的前40%时间内具有很高的值。在总时间的40%到70%之间,吸热率急剧降低,在总时间的70%之后,吸热率几乎恒定在一个低值。同样,将模拟结果用于低温有机朗肯循环中,发现对于设计的池塘,该池塘仅在八月和运行7.31小时时可用作循环的热源。 (C)2016 Elsevier Ltd.保留所有权利。

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