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DEVELOPMENT OF A CLOSED-LOOP HEAT-PIPE FOR HEAT RECOVERY WITH MINICHANNELS ENHANCING EVAPORATION

机译:开发闭环热管,用于热回收热量回收,增强蒸发

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A vast number of industrial processes require the addition and removal of heat at different stages of the same process. To accomplish heat recovery there are several technological options with specific characteristics. Thermal integration has been the focus of recent industrial developments to reduce variable costs through new investments when using fossil fuels for thermal energy generation. The conventional equipment for heat recovery uses conduction and convection heat transfer mechanisms and high surface area of a metal wall (normally subjected to corrosion and fouling) for the contact of the cold and hot fluids. Heat pipes are an option for heat recovery with less metal surface area (and therefore lower tendency to corrosion and fouling) because of their higher thermal conductivity, but have been used mostly for heat removal in electronic equipment. This study develops a closed-loop heat pipe configuration for heat recovery in industrial operations starting with a configuration for desalination. The variables of the heat pipe operation that were considered include the mini-channels structures associated to the evaporator section, the effect of the inclination of condenser to evaporator, the working fluids (ethanol-water mixtures, acetone, methanol, and isopropanol), and the internal pressure of the heat pipe (atmospheric and vacuum). The highest heat flux values (3.2 W/cm{sup}2) were obtained with a single layer mini-channels structure, 90° of inclination between the condenser and the evaporator, and a mixture of 16% ethanol in water as working fluid in the loop-heat-pipe because this mixture had the highest heat transfer parameter (that describes the capacity of the fluid to perform in a heat pipe) among the fluids tested and corresponded to the highest heat transfer rate measured.
机译:工业过程的大量需要在相同的工艺的不同阶段的添加和去除的热量。为了实现热回收有具有特定特征的几种技术方案。热集成一直是近年来工业发展的重点使用化石燃料的热能生成时减少通过新投资的可变成本。用于热回收的常规设备使用传导和对流的热传递机制和金属壁(通常经受腐蚀和结垢)用于冷流体和热流体的接触的高的表面积。热管是用于与因为它们具有更高的热导率的金属较少的表面积(并因此降低倾向腐蚀和结垢)热回收一种选择,但已经被主要用于除热的电子设备。本研究开发,用来在启动用用于脱盐的结构的工业操作热回收闭环热管的配置。被认为的是,热管操作的变量包括相关联的蒸发器部分的微通道结构,冷凝器的倾斜度蒸发器,工作流体(乙醇 - 水混合物,丙酮,甲醇和异丙醇)的效果,并热管(常压和真空)的内部压力。具有最高的热通量值(3.2瓦/厘米{SUP} 2)用的单层微通道结构而得到,90°的冷凝器和蒸发器,以及16%的乙醇在水作为工作流体的混合物之间的倾斜环路热管,因为该混合物具有最高的热传递参数(描述流体在热管来执行容量)测试和对应于测得的最高传热速率的流体中。

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