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CFD modeling and analysis of brine spray evaporation system integrated with solar collector

机译:集成太阳能集热器的盐水喷雾蒸发系统的CFD建模与分析

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A spraying evaporation system integrated with a set of parabolic trough solar collector device is applied to brine disposal, which is mainly designed to dispose brine with the concentration more than 100,000 mg/L. Computational fluid dynamics (CFD) numerical modeling is applied to simulating the evaporation and diffusion process of brine droplet in high temperature airflow by using a Fluent software. A discrete phase model in spraying evaporation system is developed and a simulation experiment based on the gas liquid phrase and hydromechanics theory is conducted. This model is verified by comparing simulation temperature with the experimental temperature under the condition of feed rate at 11, 13, and 15 L/h, respectively, hot air flux at 66 m(3)/h, temperature at 280 degrees C, and compressed air pressure at 0.2 MPa. It should be pointed out that the simulation results showed a great agreement with the measured ones and the relative errors are within 5%. Through CFD simulation of the heat and mass transfer in brine evaporation, the optimum operating condition is determined, namely air pressure at 0.3 MPa, hot air temperature at 330 degrees C, and brine feed rate at 14 L/h. (C) 2015 Elsevier B.V. All rights reserved.
机译:一套与抛物槽式集热器装置集成的喷雾蒸发系统用于盐水处理,其主要设计用于处理浓度超过100,000 mg / L的盐水。使用Fluent软件,将计算流体动力学(CFD)数值模型用于模拟高温气流中盐水液滴的蒸发和扩散过程。建立了喷雾蒸发系统中的离散相模型,并基于气液相和流体力学理论进行了仿真实验。通过在进料速度分别为11、13和15 L / h,热风流量为66 m(3)/ h,温度为280℃,压缩空气压力为0.2 MPa。需要指出的是,仿真结果与实测值吻合较好,相对误差在5%以内。通过对盐水蒸发中的传热和传质进行CFD模拟,确定了最佳操作条件,即0.3 MPa的气压,330摄氏度的热风温度和14 L / h的盐水进料速度。 (C)2015 Elsevier B.V.保留所有权利。

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