首页> 外文会议>ASME international mechanical engineering congress and exposition;IMECE2008 >EXPERIMENTAL TESTING OF A THERMOELECTRIC-BASED HYDRONIC COOLING AND HEATING DEVICE WITH TRANSIENT CHARGING OF SENSIBLE THERMAL ENERGY STORAGE WATER TANK
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EXPERIMENTAL TESTING OF A THERMOELECTRIC-BASED HYDRONIC COOLING AND HEATING DEVICE WITH TRANSIENT CHARGING OF SENSIBLE THERMAL ENERGY STORAGE WATER TANK

机译:储热罐瞬态充电的基于热电的冷却和供热装置的实验测试

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Experiments were performed to eharge either cold or hot water thermal energy storage tanks using a heat exchanger equipped with multiple thermoelectric (TE) modules. The primary objective was to design a simple, but effective, modular Peltier heat pump system component to provide chilled or hot water for domestic use at the appliance level, and when arranged in multiple unit combinations, a system that can potentially satisfy small home cooling and heating requirements. Moreover, when the TEs are directly energized using solar PV panels, the system provides a renewable, pollution free and off-the-grid solution to supplement home energy needs.The present work focuses on the design and testing of a thermoelectric heat exchanger component that consists of two water channels machined from two aluminum plates with an array of three or five thermoelectric modules placed in between to transiently cool and/or heat the water in the thermal energy storage tank. The water passing over either the cold or hot side of the TE modules is recirculated to charge the cold or hot thermal storage tank, respectively. The temperatures in the prototype Peltier heat exchanger test component and thermal energy water storage tank were measured during both cold tank charging and hot tank charging operation. The thermal efficiencies of TE heat pump cooling/heating system are reported. The effects of TE power input, number of TE units and rate of fluid flow are studied.
机译:使用配备有多个热电(TE)模块的热交换器进行了实验,以提高冷或热水储热罐的容量。主要目标是设计一个简单但有效的模块化Peltier热泵系统组件,以提供用于家用电器级别的家用的冷冻或热水,并且当以多单元组合的形式布置时,该系统可以潜在地满足小型家用制冷和制冷需求。加热要求。此外,当使用太阳能光伏板直接为TE供电时,该系统将提供可再生,无污染且离网的解决方案,以补充家庭能源需求。 本工作着重于热电热交换器组件的设计和测试,该组件由两个水槽组成,两个水槽由两个铝板加工而成,两个或三个或五个热电模块位于两个铝板之间,以瞬时冷却和/或加热热水中的水。储能罐。通过TE模块冷侧或热侧的水分别进行再循环,以填充冷或热储热罐。在冷水箱装料和热水箱装料操作期间均测量了原型Peltier换热器测试组件和热能储水箱中的温度。报告了TE热泵冷却/加热系统的热效率。研究了TE功率输入,TE单元数量和流体流速的影响。

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