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Large-scale desalination based on parabolic trough collectors and double-effect absorption heat pumps

机译:基于抛物槽收集器和双效吸收热泵的大型脱盐

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This paper focuses on an analysis of the current situation of distillation and reverse osmosis technologies and their relationship with renewable energies, to the extent that there is a strong trend in the use of distillation and reverse osmosis technologies. Large-scale seawater desalination using renewable energy is not developed, so a detailed study of the combination of renewable energy facilities, reverse osmosis, and distillation systems are needed to be effective and competitive compared to the use nonrenewable energy. Solar multiple is a very important parameter in the solar thermal industry. This is in the range of 1.5 – 3 and depends on the relationship between storage and plant power. This parameter is important because it reflects a balance between the cost of the parabolic trough collectors and the total of the solar thermal plant. If the same criterion is followed, with a thermal gap of 100?°C, chosen for the parabolic trough collectors sizing, the solar multiple in the system object of this article, has a value higher than 3. The proposed system employs renewable energies for reducing the downtime of the desalination plants, doing possible that the desalination plants being competitive in sites with poor quality solar radiation.
机译:本文侧重于分析蒸馏和反渗透技术现状及其与可再生能源的关系,在多大程度上存在蒸馏和反渗透技术的强大趋势。不开发使用可再生能源的大型海水淡化,因此,与使用不可再生能量相比,需要对可再生能源设施,反渗透和蒸馏系统的组合进行有效和竞争力的详细研究。太阳倍数是太阳能热产业中的一个非常重要的参数。这在1.5 - 3的范围内,取决于储存和工厂电力之间的关系。此参数非常重要,因为它反映了抛物面收集器的成本与太阳能热厂的总量之间的平衡。如果遵循相同的标准,则具有100Ω°C的热差距,选择用于抛物线槽收集器的尺寸,本文系统对象中的太阳能倍数高于3.所提出的系统采用可再生能源减少脱盐植物的停机时间,脱盐植物可能在具有劣质太阳辐射的地方竞争。

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