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A Novel System Of Combined Power Generation And Water Desalination Using A Renewable Energy Source

机译:使用可再生能源的新型发电和水海水淡化新型系统

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Using a novel thermodynamic system, utilizing the renewable energy source, electrical power generation and water desalination can be achieved simultaneously, which properly addresses the twin challenges of energy and fresh water shortage. This novel system features a reaction turbine with a pair of convergent - divergent nozzles, which converts the salt water, heated by solar energy, into a mixture of vapour and brine by taking advantage of the trilateral flash cycle. The flashing process occurs in a vacuum chamber which is maintained at a low temperature by an internal coil condenser cooled by water. The reactive force due to the flow exiting the nozzles creates a torque on the rotor arms, which in turn rotates an electric generator and thus generates electrical power. A series of test results such as power generation, fresh water production and system efficiency are presented, which are analysed and also compared with those obtained from the previous experiments. Moreover, a prototype of an improved system is described, which involves a novel disk-shape reaction turbine with a curved flow path for the nozzle, and a new external condensing system that contains four plate heat exchangers. This new system is expected to produce more power, up to 2 kW, in comparison to the current system's maximum power generation of 450 W. In the final part of this paper, the performance of a salinity gradient solar pond and evacuated tube solar water heater as possible renewable energy sources for this kind of system are discussed.
机译:利用新型热力学系统,利用可再生能源,电力发电和水海水淡化可以同时实现,这适当地解决了能量和淡水短缺的双胞胎挑战。该新颖系统具有反应涡轮机,其具有一对会聚 - 发散喷嘴,其通过利用三边闪蒸循环将通过太阳能加热的盐水转化为蒸汽和盐水的混合物。闪光过程发生在真空室中,通过水冷却的内部线圈冷凝器保持在低温。由于离开喷嘴的流动引起的反作用力在转子臂上产生扭矩,转子臂又旋转发电机,从而产生电力。提出了一系列测试结果,如发电,淡水生产和系统效率,分析,也与从先前实验中获得的那些进行了比较。此外,描述了一种改进系统的原型,其涉及具有用于喷嘴的弯曲流动路径的新型盘形反应涡轮机,以及包含四个板式热交换器的新型外部冷凝系统。与目前的系统的最大发电量为450 W相比,这一新系统预计将产生更多的功率,高达2千瓦。在本文的最后一部分,盐度梯度太阳能池和抽空管太阳能热水器的性能讨论了这种系统可能的可再生能源。

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