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SWRO core hydraulic module - the right concept decides in terms of energy consumption and reliability Part II.Advanced pressure exchanger design

机译:SWRO核心液压模块-正确的概念决定能耗和可靠性第二部分先进的压力交换器设计

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By defining the combination of high pressure seawater feed pump and energy recovery system as the core hydraulic module of SWRO plants it becomes obvious that this subsystem mainly contributes to the specific water costs by its operational costs and has to be optimized by a complete approach.In the previous paper published at the IDA Conference 2003 [1],different energy recovery systems were analyzed with respect to theire overall life cycle costs.Identifying the core hydraulic module using pressure exchangers as the advantageous ERS-concept the question of appropriate component optimization was discussed for the high pressure pump design.In the current paper,this approach is extended to the pressure exchanger itself,contributing to an overall optimized core hydraulic module.Therefore,inadequacies and limits of conventional pressure exchanger operation are explored and discussed with respect to their impact on reliability.Based on these results,a new pressure exchanger design is presented.This design was realized in a laboratory prototype and tested on a special test rig.The arrangements of the test rig as well as the results of first prototype tests are described.
机译:通过将高压海水给水泵和能量回收系统的组合定义为SWRO工厂的核心液压模块,很明显,该子系统主要通过其运营成本来贡献特定的水成本,必须通过一种完整的方法对其进行优化。之前在IDA Conference 2003上发表的论文[1],针对整个生命周期成本分析了不同的能量回收系统。使用压力交换器作为ERS来识别核心液压模块-讨论了适当组件优化的问题在当前的论文中,这种方法扩展到了压力交换器本身,为整体优化的核心液压模块做出了贡献。因此,就常规压力交换器的影响探讨了不足之处和局限性,并进行了讨论。基于这些结果,提出了一种新的压力交换器设计该设计是在实验室原型中实现的,并在特殊的测试台上进行了测试。测试台的布置以及首次原型测试的结果均已描述。

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