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Review of performance improvement of energy recovery turbines in the reverse osmosis desalination

机译:反渗透海水淡化中能量回收涡轮机性能改进的综述

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In reverse osmosis desalination industry, the reduction of energy consumption is always one of the hottest topics. In some cases the energy recovery technology can reduce the energy consumption of the reverse osmosis desalination system by 40%-50% [1]. There are mainly four kinds of energy recovery devices: Pelton wheel, reverse running pump, hydraulic turbo charger and pressure exchanger. Hydraulic turbo chargers, one main kind of energy recovery devices, have good applications in reverse osmosis desalination projects because of low initial cost, easy installation and maintenance, availability for a wide range of heads and flows, small footprint, low noise and acceptable efficiency. Moreover, it can be used as a pressure booster for the treatment process of the inter-stage pressurized wastewater reverse osmosis. Its best transfer efficiency reported is 82% [2]. With the popularizing of hydraulic turbo chargers, how to increase the efficiency of turbo chargers causes more and more attention. This paper reviewed kinds of methods to improve the efficiency and performance of hydraulic turbines in desalination industries. Based on computational fluid dynamics simulation and analysis, optimizing the design of the impeller and blade geometry to reduce the impact loss is one of the useful ways to increase the efficiency. Coating the wet surface of turbine plays an important role in improving the wear resistance in surfaces and extending the life of components. To improve the efficiency of turbine at part load, adjustable inlet guide vanes were studied and its inlet angle and outlet angle were optimized. Based on the previous research results and its limitation, future study for improvement and implementation of hydraulic turbine were also discussed.
机译:在反渗透淡化行业中,降低能耗始终是最热门的话题之一。在某些情况下,能量回收技术可以将反渗透淡化系统的能耗降低40%-50%[1]。能量回收装置主要有四种:佩尔顿轮,反向运转泵,液压涡轮增压器和压力交换器。液压涡轮增压器是一种主要的能量回收装置,因为其初始成本低,易于安装和维护,可用于各种扬程和流量,占地面积小,噪音低且效率可接受,因此在反渗透海水淡化项目中具有良好的应用。而且,它可用作阶段间加压废水反渗透处理过程的增压器。报告的最佳传输效率为82%[2]。随着液压涡轮增压器的普及,如何提高涡轮增压器的效率引起越来越多的关注。本文综述了提高海水淡化行业中水轮机效率和性能的各种方法。基于计算流体动力学仿真和分析,优化叶轮和叶片几何形状的设计以减少冲击损失是提高效率的有效途径之一。涡轮机的湿表面涂层在提高表面的耐磨性和延长部件寿命方面起着重要作用。为了提高涡轮机在部分负荷下的效率,研究了可调节的进口导流叶片,并对进口角和出口角进行了优化。基于以往的研究成果及其局限性,对水轮机的改进和实施进行了展望。

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