首页> 外文会议>ASME Fluids Engineering Division summer meeting >MIXING CONTROL IN AN ISOBARIC ENERGY RECOVERY DEVICE OF A SEAWATER REVERSE OSMOSIS DESALINATION SYSTEM
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MIXING CONTROL IN AN ISOBARIC ENERGY RECOVERY DEVICE OF A SEAWATER REVERSE OSMOSIS DESALINATION SYSTEM

机译:海水反渗透海水淡化系统等压能量回收装置中的混合控制

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Mixing phenomena in an isobaric energy recovery device (ERD) of a seawater reverse osmosis (SWRO) desalination system are investigated experimentally and numerically using Particle Image Velocimetry (PIV) and Computational Fluid Dynamics (CFD). The ERD, which recovers energy from high-pressure brine discharged from RO membranes, is one of the most important mechanical devices in a SWRO desalination system. In this ERD, seawater is introduced into a vertical chamber from the top, and then high-pressure brine is introduced into the chamber from the bottom. The high-pressure brine pressurizes the seawater through direct liquid-to-liquid contact, transferring high-pressure energy of the brine to the seawater. This enables a sharp reduction in the electric energy consumption, typically 50%, of high-pressure pumps used to elevate seawater pressure for RO membranes. The energy recovery efficiency of the present ERD is over 98%, which is extremely high compared to a conventional turbine-type energy recovery device, such as a Pelton turbine, which has a system energy recovery efficiency of 60 to 80%. The possible weakness of the present ERD is the amount of mixing between brine and seawater around the direct contact surface, because mixing phenomena increase the salinity of seawater supplied to RO membranes. A higher pressure is required to keep the same amount of permeate from the membrane, which results in an energy loss in the system. To minimize mixing, a set of unique flow distributors was invented and placed at both ends of the pressure exchange chamber, which stabilizes the contact surfaces and suppresses excessive mixing. Mixing phenomena in the pressure-exchange chamber are investigated experimentally in detail with PIV and numerically with CFD, and the effectiveness of the flow distributors is clarified.
机译:使用粒子图像测速(PIV)和计算流体动力学(CFD),通过实验和数值研究了海水反渗透(SWRO)海水淡化系统的等压能量回收装置(ERD)中的混合现象。 ERD是从RO膜排出的高压盐水中回收能量的设备,是SWRO脱盐系统中最重要的机械设备之一。在此ERD中,将海水从顶部引入到垂直腔室中,然后将高压盐水从底部引入到垂直腔室中。高压盐水通过直接液-液接触对海水加压,从而将盐水的高压能传递给海水。这可以大大降低用于提高反渗透膜海水压力的高压泵的电能消耗,通常为50%。本ERD的能量回收效率超过98%,与传统的涡轮式能量回收装置,例如Pelton涡轮机相比,其具有60至80%的系统能量回收效率,这是非常高的。当前的ERD的可能缺点是直接接触表面周围的盐水和海水之间的混合量,因为混合现象会增加供应给RO膜的海水的盐度。需要较高的压力以保持来自膜的相同量的渗透物,这导致系统中的能量损失。为了最大程度地减少混合,发明了一套独特的流量分配器并将其放置在压力交换腔室的两端,这可以稳定接触表面并抑制过度混合。用PIV和CFD对压力交换室内的混合现象进行了详细的实验研究,并阐明了流量分配器的有效性。

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