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DEMONSTRATOR OF A COMBUSTION DRIVEN THERMOACOUSTIC ELECTRICITY GENERATOR FOR REMOTE AND RURAL AREAS OF DEVELOPING COUNTRIES

机译:发展中国家远程和农村地区燃烧驱动热声电力发电机的示威者

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This paper reports the design, construction and testing of a demonstrator combustion driven thermoacoustic electricity generator for rural communities in developing countries, based on the thermoacoustic energy conversion technology. It employs a looped-tube travelling-wave thermoacoustic engine to convert thermal energy to high intensity acoustic power and uses air at atmospheric pressure as working gas. It utilizes a commercially available audio loudspeaker as a model linear alternator. The alternator is installed within the feedback pipe of the thermoacoustic engine. The operating frequency is around 70 Hz. At present, to simulate the flue gases from the biomass driven stove, a propane gas burner is utilized. A shell-and-tube type heat exchanger was built to take the heat from the high temperature flue gas from the burner. The minimal temperature differences between two ends of the regenerator, required to excite the engine, are around 107°C and 134°C for the engine with and without the installation of the alternator, respectively. So far, around 8 Watts electricity has been extracted. Detailed comparisons between the design simulations (DELTAEC) and experimental results are provided.
机译:本文报告了发展中国家农村社区的演示燃烧驱动热声电发电机的设计,建设和测试,基于热声能转换技术。它采用环管行驶波热声发动机,将热能转换为高强度声学功率,并在大气压下使用空气作为工作气体。它利用市售的音频扬声器作为模型线性交流发电机。交流发电机安装在热声发动机的反馈管内。工作频率约为70 Hz。目前,为了模拟生物质驱动炉的烟道气,利用丙烷燃气燃烧器。壳牌型热交换器采用燃烧器从高温烟气中取出热量。再生器的两端之间的最小温度差异,以激发发动机,分别为发动机的107°C和134°C,分别在不安装交流发电机的情况下。到目前为止,已经提取了大约8瓦的电力。提供了设计模拟(Deltaec)与实验结果之间的详细比较。

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