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Hydrodynamic design and performance testing of Pelton-type energy recovery turbine for pressure-retarded osmosis systems

机译:压力滞后渗透系统的佩尔顿式能量回收透平的水动力设计和性能测试

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摘要

In this paper, we present the hydrodynamic design and performance tests of a Pelton-type energy recovery turbine (ERT) for pressure-retarded osmosis (PRO) systems. We describe the process of selecting the appropriate type of ERT for operating conditions of the PRO system (i.e., 400 ton/day, 30 bar) as well as the design methods for the Pelton-type ERT. Furthermore, we analyse the performance characteristics at design and off-design points and the change in performance with respect to the diameter of the Pelton runner, based on the performance tests of the manufactured Pelton-type ERT. At the design point, the efficiency of the Pelton-type ERT was approximately 85%, and the overall efficiency with the electric generator was approximately 77.2%. The efficiency of the turbine and overall plant was highest when the diameter of the Pelton runner is of the size selected during design. We thus validate the design result through such a performance test. It is expected that this study will be of great assistance to future works involving the selection of ERTs for PRO systems, as well as the design and performance tests of ERTs.
机译:在本文中,我们介绍了用于压力延迟渗透(PRO)系统的Pelton型能量回收涡轮(ERT)的流体力学设计和性能测试。我们描述了根据PRO系统的运行条件(即400吨/天,30巴)选择合适的ERT类型的过程以及Pelton型ERT的设计方法。此外,我们基于制造的Pelton型ERT的性能测试,分析了设计和非设计点的性能特征以及相对于Pelton流道直径的性能变化。在设计时,Pelton型ERT的效率约为85%,而发电机的总效率约为77.2%。当Pelton转轮的直径为设计期间选择的尺寸时,涡轮机和整个设备的效率最高。因此,我们通过这种性能测试来验证设计结果。预期该研究将对涉及PRO系统的ERT选择以及ERT的设计和性能测试的未来工作提供极大的帮助。

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