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Performance investigation of a salt gradient solar pond coupled with desalination facility near the Dead Sea

机译:死海附近的盐梯度太阳能池塘与海水淡化设施的性能研究

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摘要

Solar ponds provide the most convenient and least expensive option for heat storage for daily and seasonal cycles. This is particularly important for a desalination facility, if steady and constant water production is required. If, in addition to high storage capacity, other favorable conditions exist, the salt gradient solar ponds (SGSPs) are expected to be able to carry the entire load of a large-scale flash desalination plants without dependence upon supplementary sources. This paper presents a performance investigation of a SGSP coupled with desalination plant under Jordanian climatic conditions. This is particularly convenient in the Dead Sea region characterized by high solar radiation intensities, high ambient temperature most of the year, and by the availability of high concentration brine. It was found that a 3000 m~2 solar pond installed near the Dead Sea is able to provide an annual average production rate of 4.3 L min~(-1) distilled water compared with 3.3 L min~(-1) that would be produced by El Paso solar pond, which has the same surface area. Based on this study, solar ponds appear to be a feasible and an appropriate technology for water desalination near the Dead Sea in Jordan.
机译:太阳池为日常和季节性循环提供最方便,最便宜的蓄热方式。如果需要稳定恒定的产水量,这对于海水淡化设施尤为重要。如果除了高存储容量外,还存在其他有利条件,则盐梯度太阳能池(SGSP)有望能够承担大型闪蒸淡化厂的全部负荷,而无需依赖补充资源。本文介绍了约旦气候条件下SGSP与海水淡化厂的性能研究。这在死海地区特别方便,因为死海地区一年中的大部分时间都具有较高的太阳辐射强度,较高的环境温度,并且具有高浓度盐水。结果发现,在死海附近安装了3000 m〜2的太阳能水池,年平均蒸馏水产量为4.3 L min〜(-1),而蒸馏水的年平均产量为3.3 L min〜(-1)。由埃尔帕索(El Paso)太阳池建造,具有相同的表面积。根据这项研究,太阳能池似乎是约旦死海附近海水淡化的可行技术。

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