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Hybrid Solid Oxide Fuel Cell and Thermoelectric Generator for Maximum Power Output in Micro-CHP Systems

机译:混合固体氧化物燃料电池和热电发电机,可在微型热电联产系统中实现最大功率输出

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摘要

One of the most obvious early market applications for thermoelectric generators (TEG) is decentralized micro combined heat and power (CHP) installations of 0.5 kWe to 5 kWe based on fuel cell technology. Through the use of TEG technology for waste heat recovery it is possible to increase the electricity production in micro-CHP systems by more than 15%, corresponding to system electrical efficiency increases of some 4 to 5 percentage points. This will make fuel cell-based micro-CHP systems very competitive and profitable and will also open opportunities in a number of other potential business and market segments which are not yet quantified. This paper quantifies a micro-CHP system based on a solid oxide fuel cell (SOFC) and a high-performance TE generator. Based on a 3 kW fuel input, the hybrid SOFC implementation boosts electrical output from 945 W to 1085 W, with 1794 W available for heating purposes.
机译:热电发电机(TEG)的最早期市场应用之一是基于燃料电池技术的0.5 kWe至5 kWe的分散式微型热电联产(CHP)装置。通过将TEG技术用于废热回收,可以将微型热电联产系统的发电量提高15%以上,相当于系统电效率提高约4至5个百分点。这将使基于燃料电池的微型热电联产系统具有很高的竞争力和利润,并且还将为许多其他尚未量化的潜在业务和市场领域提供机会。本文对基于固体氧化物燃料电池(SOFC)和高性能TE发生器的微型CHP系统进行了量化。基于3 kW的燃料输入,混合SOFC实施将电输出从945 W提升至1085 W,其中1794 W可用于加热。

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