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Conversion of a Homogeneous Charge Air-Cooled Engine for Operation on Heavy Fuels

机译:转换均匀的电荷空气冷却发动机,用于在重型燃料上运行

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As part of its single-fuel initiative, the US Armed Forces has a desire to operate all of their equipment on JP-8 fuel. Larger applications using diesel engines have been easy to convert, but small gasoline engine conversions have proven more difficult. This paper chronicles problems encountered, successful solutions, and lessons learned during the conversion of a carbureted 2kW Honda generator for use with JP-8 fuel. Cold-start, fuel delivery, load control, and auxiliary systems required significant adaptation. A catalytic plasma torch was used as the ignition source and similar technology was developed to support cold-starting at temperatures down to -40°C. Combustion chamber design and low octane number fuel made it necessary for multiple ignition sources. Load control and auxiliary systems were handled by a custom micro-controller that used RPM, generator output current, head temperature, and a knock sensor as inputs. A fleet of a five engines was assembled as a proof of concept to show repeatability of the conversion concept. One of these engines successfully passed 300 hours of MIL-STD endurance testing, demonstrating robustness of the conversion. Many of the challenges associated with this conversion are analogous to issues that confound engine conversion to a broad spectrum of alternative fuels. Therefore, fundamental and applied research needs for homogeneous charge, catalytically assisted compression ignition are derived from this case study.
机译:作为其单一燃料倡议的一部分,美国武装部队希望在JP-8燃料上运营所有设备。使用柴油发动机的较大应用易于转换,但小的汽油发动机转换已经证明更加困难。本文编年例遇到问题,成功的解决方案和经验教训,在碳钢的2KW本田发电机转换以进行JP-8燃料。冷启动,燃油输送,负载控制和辅助系统需要显着的适应。用作催化等离子体炬作为点火源,并开发了类似的技术,以支持低于-40℃的温度冷启动。燃烧室设计和低辛烷值燃料使多个点火源成为必要。负载控制和辅助系统由定制的微控制器处理,该微控制器使用RPM,发电机输出电流,头部温度和爆震传感器作为输入。作为一个概念证明,组装了五个发动机的车队,以表明转换概念的可重复性。其中一个发动机成功通过了300小时的MIL-STD耐久性测试,展示了转换的鲁棒性。与这种转换相关的许多挑战类似于困惑发动机转换为广泛的替代燃料的问题。因此,均匀充电的基本和应用研究需求,催化辅助压缩点火源自该案例研究。

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