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Performance of a Mesoscale Liquid Fuel-film Combustion-driven TPV Power System

机译:中尺度液体燃料膜燃烧驱动的TPV电源系统的性能

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Combustion-driven thermophotovoltaic (TPV) systems have obtained increasing attention in recent decades, but most studies have focused on developing narrowband photovoltaic cells and selective emitters. In terms of the heat source, conventional combustion configurations and light gaseous fuels are extensively utilized in macro- or meso-scale TPV power systems to simplify thermal management and mechanical fabrication. As far as miniaturization is concerned, however, fuelling these systems with liquid hydrocarbons would provide inherent advantages of high energy density and low volatility. Liquid fuels also promise easy and safe fuel recharging for small-scale power systems. In this paper, a central porous-medium combustor was employed in a small scale TPV power system. The combustor incorporated an emitting chamber wall and a heat recuperator. The radiant efficiency and overall efficiency were compared using different liquid hydrocarbon fuels in the system. The electric output characteristics of the combustion driven TPV system have been investigated to demonstrate the feasibility of a GaSb cell-based TPV power system and to provide design guidance for mesoscale liquid-burning TPV systems.
机译:燃烧驱动的热光伏(TPV)系统在最近几十年中受到越来越多的关注,但是大多数研究都集中在开发窄带光伏电池和选择性发射器上。在热源方面,常规燃烧配置和轻质气态燃料广泛用于宏观或中观规模的TPV电力系统中,以简化热管理和机械制造。然而,就小型化而言,用液态烃为这些系统加燃料将提供固有的优点,即高能量密度和低挥发性。液体燃料还有望为小型电力系统提供简便,安全的燃料补给。本文在小型TPV电力系统中采用了中央多孔介质燃烧器。燃烧器装有发射室壁和换热器。在系统中使用不同的液态烃燃料比较了辐射效率和总体效率。已经研究了燃烧驱动的TPV系统的电输出特性,以证明基于GaSb电池的TPV电力系统的可行性,并为中规模的液体燃烧TPV系统提供设计指导。

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