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Techno-economic analysis of thermoelectrics for waste heat recovery

机译:废热回收热电子的技术经济分析

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This article analyses the technical and economic aspects relating to the application of thermoelectric generators in waste heat recovery. It is explained why material cost reductions are unlikely to result in significant reductions in overall device cost. The difficulties associated with manufacturing modules that can withstand high temperatures are shown to result in high cost to power ratios, despite the favorable thermodynamic conditions. This study also compares the performance of thermoelectric generators to Rankine and Stirling cycles and finds that Rankine cycles are able to achieve superior thermal efficiencies at power outputs above 100 kW. Between the ranges of 10 and 100 kW, the thermal efficiency of thermoelectric generators are comparable to that of Rankine cycles. Below 10 kW, thermoelectric generators have greater efficiency than Rankine cycles, but lower efficiency than Stirling cycles. Future expansion of their use in large-scale waste heat recovery will require commercialization of materials with significantly higher thermal efficiency than presently available.
机译:本文分析了与热电发电机在废热回收中的应用有关的技术和经济方面。解释了为什么材料成本降低不太可能导致整体设备成本显着降低。尽管热力学条件有利,但是可以承受高温可以承受高温的制造模块与能够承受高温的困难。本研究还比较了热电发电机对朗克和斯特林循环的性能,并发现朗肯循环能够在100kW以上的功率输出处实现优异的热效。在10和100 kW的范围之间,热电发电机的热效率与朗肯循环的热效率相当。低于10 kW,热电发电机的效率高于兰峰循环,但效率低于斯特林循环。他们在大型废物热量回收中使用的未来扩展将需要具有明显更高的热效率的材料的商业化,而不是目前可用的材料。

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