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首页> 外文期刊>Journal of Power and Energy Engineering >Further Stabilization and Power Density Improvement of Stack-Type Thermoelectric Power Generating Module with Biphasic Medium by Using Various Flexible Metals as Electrodes
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Further Stabilization and Power Density Improvement of Stack-Type Thermoelectric Power Generating Module with Biphasic Medium by Using Various Flexible Metals as Electrodes

机译:以各种柔性金属为电极的双相介质堆叠式热电发电模块的进一步稳定和功率密度提高

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In order to realize further stability of a stack-type thermoelectric power generating module ( i.e. no electrical connections inside), flexible materials of metal springs and/or rods having restoring forces were installed between lower-temperature-sides of thermoelectric elements. These flexible materials were expected to play three important roles of interpolating different thermal expansions of the module components, enlarging heat removal area and penetration of any media through themselves. Then, a low-boiling-point medium ( i.e. NOVEC manufactured by 3M Japan Ltd.) was also applied for a high-speed direct heat removal via its phase change from the lower-temperature-sides of the thermoelectric elements in the proposing stack-type thermoelectric power generating module. No electrical disconnections inside the module were confirmed for more than 9 years of use, indicating further module stability. The power generating density was improved to about 120 mW·m~(-2) with SUS304 springs having 0.7 mm diameter. Increasing power generating density can be expected in terms of suitable selection of flexible metal with high Vickers hardness , cavities control on the spring surface, more vigorous multiphase flow with adding powders to the medium and optimization of the module configurations according to numerical simulations.
机译:为了实现堆叠式热电发电模块的进一步的稳定性(即内部没有电连接),在热电元件的低温侧之间安装金属弹簧的柔性材料和/或具有恢复力的杆。预计这些柔性材料将起到以下三个重要作用:内插模块组件的不同热膨胀,扩大散热面积和任何介质通过其自身的渗透。然后,还将低沸点介质(即3M Japan Ltd.生产的NOVEC)从相叠的热电元件的低温侧通过其相变应用于高速直接除热,型热电发电模块。使用超过9年未确认模块内部发生电气断开,这表明模块具有进一步的稳定性。用直径为0.7mm的SUS304弹簧将发电密度提高到约120mW·m·(-2)。增大发电密度可以在柔性金属的合适的选择具有较高的维氏硬度方面所预期的,腔中的弹簧表面上控制,更有力的多相流与根据数值模拟粉末添加到模块配置的介质和优化。

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