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Heat transfer and antiscaling performance of a Na2SO4 circulating fluidized bed evaporator

机译:Na2SO4循环流化床蒸发器的传热和防敏性能

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An circulating fluidized bed evaporator of Na2SO4 solution is designed and built to investigate heat transfer and antiscaling performance by varying the amount of added particles (0.5%-2.0%), heat flux (6.47-13.65 kW.m(-2)) and circulation flow velocity (0.38 m.s(-1)-2.07 m.s(-1)).SiC particles are used as inert solid particles. The experiments are operated under normal pressure, and the operating temperatures of fluid is about 101-103 degrees C within the experimental range. The research results show the addition of SiC particles can not only effectively enhance the heat transfer performance in Na2SO4 solution, but also remove and prevent scaling. The effect of heat transfer performance is strongly dependent on the particle size. The maximum enhancing factor of 1 mm SiC particles is 17.1% at epsilon = 2%, u = 0.38 m.s(-1) and a heat flux of 8.97 kW.m(-2). With an appropriate amount of added particles, 1 mm SiC particles can effectively prevent scaling in the evaporation of Na2SO4 solution. The research findings may be beneficial to the application of fluidized bed heat transfer and antiscaling technology to industry.
机译:设计并构建了Na 2 SO 4溶液的循环流化床蒸发器,以通过改变加入的颗粒(0.5%-2.0%),热通量(6.47-13.65kW.m(-2))和循环来研究热传递和防敏性能。流速(0.38ms(-1)-2.07ms(-1))。SiC颗粒用作惰性固体颗粒。实验在正常压力下操作,在实验范围内,流体的工作温度约为101-103℃。研究结果表明,添加SiC颗粒不能有效地提高Na2SO4溶液中的传热性能,而且还可以取出并防止缩放。传热性能的效果强烈依赖于粒度。 ε= 2%的1mm SiC颗粒的最大增强因子为17.1%,U = 0.38mm(-1)和8.97kW.m(-2)的热通量。通过适量的添加颗粒,1mM SiC颗粒可以有效地防止蒸发Na 2 SO 4溶液的缩放。研究结果可能有利于将流化床传热和防敏技术应用于工业的利益。

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