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Design, modeling and experimental characterization of a free liquid-piston engine compressor with separated combustion chamber.

机译:具有独立燃烧室的自由液体活塞发动机压缩机的设计,建模和实验特性。

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摘要

This dissertation presents the design, modeling, simulation, fabrication, and experimental characterization and model validation of a free liquid-piston engine compressor (FLPC). The FLPC is a proposed device that utilizes combustion of a hydrocarbon fuel to compress air into a high-pressure supply tank, thus potentially serving as a portable power supply candidate for untethered pneumatic systems of human-scale power output (100 Watts). The combined factors of high energy density of hydrocarbon fuels, high energy conversion efficiency (relative to comparable small-scale internal combustion engines and air compressors), compactness and low weight of the device, and its intended ability to drive power-dense pneumatic actuators (relative to DC motors), are projected to provide at least a twofold increase in systems-level energy and power densities over state-of-the art electromechanical human-scale untethered robotic systems. The free liquid-piston is powered by a custom-built separated combustion chamber, which dynamically channels high-pressure combustion products through a high-flow passive valve in order to produce power strokes. A dynamic model and simulation are presented, and experimental results are provided which validate the model and demonstrate the energetic potential of the device. Finally, the experimentally validated model is used as a diagnostic tool as well as a basis for future design suggestions.
机译:本文介绍了自由液体活塞发动机压缩机(FLPC)的设计,建模,仿真,制造,实验表征和模型验证。 FLPC是一种建议的设备,它利用碳氢化合物燃料的燃烧将空气压缩到高压供油罐中,因此有可能作为便携式的供人用的功率输出(100瓦)气动系统的候选电源。碳氢化合物燃料的高能量密度,高能量转换效率(相对于可比较的小型内燃机和空气压缩机),设备的紧凑性和低重量以及其预期的驱动功率密集型气动执行器的能力等综合因素(相对于DC电机),预计将提供比现有水平的机电式人类规模不受限制的机器人系统高至少两倍的系统级能量和功率密度。自由液体活塞由定制的分离式燃烧室提供动力,该燃烧室动态地将高压燃烧产物通过高流量被动阀引导,以产生动力冲程。提出了一个动态模型和仿真,并提供了实验结果,这些结果验证了该模型并证明了该设备的能量潜力。最后,将经过实验验证的模型用作诊断工具,并作为未来设计建议的基础。

著录项

  • 作者

    Riofrio, Jose A.;

  • 作者单位

    Vanderbilt University.;

  • 授予单位 Vanderbilt University.;
  • 学科 Engineering Mechanical.
  • 学位 Ph.D.
  • 年度 2008
  • 页码 182 p.
  • 总页数 182
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 机械、仪表工业;
  • 关键词

  • 入库时间 2022-08-17 11:39:27

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