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Theoretical and Experimental Studies on Fluid Energy Recovery System

机译:流体能量回收系统的理论与实验研究

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摘要

This paper firstly compares different types of energy recovery devices and their technological details. The studies in this paper are emphasized on the positive displacement approach which has higher energy transfer efficiency. And then a rotary hydraulic energy recovery unit with data acquisition system is set up. Experimental results are obtained on the fluctuations of pressure and flux to and from energy recovery unit. Energy transmission efficiency are also evaluated. Secondly, dynamic studies on rotor starting-up and stable running stage have been done. CFD method is used to optimize flow channel through which rotor get maximum angular momentum from fluid to start running. Although experimental background is associated with reverse osmosis desalination process the principles and theories presented in this paper are applicable to all devices that based on the positive displacement and circumstances in which pressure difference between two fluids exists.
机译:本文首先比较了不同类型的能量回收装置及其技术细节。本文的研究重点是具有较高能量传递效率的正位移方法。然后建立了带有数据采集系统的旋转液压能量回收装置。获得了往返于能量回收装置的压力和通量的波动的实验结果。还评估了能量传输效率。其次,对转子的启动和稳定运行阶段进行了动态研究。 CFD方法用于优化流道,转子从该流道获得最大的角动量,从而开始运行。尽管实验背景与反渗透脱盐过程有关,但本文提出的原理和理论适用于所有基于正排量和两种流体之间存在压差的设备。

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