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    • 7. 发明授权
    • Miniaturized waste heat engine
    • 小型化余热发动机
    • US09097205B2
    • 2015-08-04
    • US13192240
    • 2011-07-27
    • Claudio Filippone
    • Claudio Filippone
    • F01K23/10F01N3/02F28D7/10F02G5/04F02B41/00
    • F02G5/04F02B41/00Y02T10/166
    • Various embodiments of a converter for use in a combustion engine having a discharge conduit for discharging exhaust combustion gases are disclosed. In one exemplary embodiment, the converter may include a heating chamber being in thermal contact with the discharge conduit and defining a hydraulic channel through which a fluid passes. The converter may also include an inlet port disposed in the heating chamber for receiving the fluid into the heating chamber, and an outlet port disposed in the heating chamber for discharging the fluid from the heating chamber. The heat energy from the exhaust combustion gases is transferred to the fluid while the fluid passes through the hydraulic channel.
    • 公开了用于具有用于排放废气燃烧气体的排放管道的内燃机中的转炉的各种实施例。 在一个示例性实施例中,转换器可以包括与排放管道热接触并限定流体通过的液压通道的加热室。 转换器还可以包括设置在加热室中的入口,用于将流体接收到加热室中,以及设置在加热室中的用于从加热室排出流体的出口。 当流体通过液压通道时,来自废气燃烧气体的热能被传递到流体。
    • 8. 发明授权
    • Small scale hybrid engine
    • 小型混合动力发动机
    • US07299616B2
    • 2007-11-27
    • US11319079
    • 2005-12-28
    • Claudio Filippone
    • Claudio Filippone
    • F02C6/00F02G1/00F02G3/00
    • F02G1/04F02B3/06
    • This invention describes a miniaturized hybrid diesel-electric engine formed by a closed-loop system powered by plasma-aided combustion of JP-8 fuel (or other hydrocarbon fuels) working in tandem with a vapor cycle utilizing miniaturized expanders and condensers. The output of this engine is electric power and mechanical work. Water, or organic fluids, heated by the combustion product developed inside a special burner, undergoes an explosive, quasi-supersonic conversion to steam. This steam drives a high-speed turbine connected together with a gas turbine outputting shaft work. This work output is utilized to power internal subsystems, cool down the miniaturized condensers, and to produce torque and electric power. The dimensions of this miniaturized hybrid-engine are so compact that it can fit inside the battery compartment of most applications requiring high-density miniaturized power sources.
    • 本发明描述了一种通过利用小型化的膨胀器和冷凝器与蒸汽循环串联工作的JP-8燃料(或其它烃燃料)等离子体辅助燃烧的闭环系统来形成的小型化混合柴油发动机。 该发动机的输出是电力和机械作业。 通过在专用燃烧器内开发的燃烧产物加热的水或有机流体经受爆炸性的准超声速转化为蒸汽。 该蒸汽驱动与输出轴工作的燃气轮机连接在一起的高速涡轮机。 该工作输出用于为内部子系统供电,冷却小型化冷凝器,并产生扭矩和电力。 这种小型化混合动力发动机的尺寸非常小巧,可以适应需要高密度小型化电源的大多数应用的电池舱内。
    • 9. 发明授权
    • Miniaturized waste heat engine
    • 小型化余热发动机
    • US06729137B2
    • 2004-05-04
    • US10066574
    • 2002-02-06
    • Claudio Filippone
    • Claudio Filippone
    • F01K1100
    • F02B75/34F01K23/065F01N5/02F01N2240/02F02G5/00Y02T10/16Y02T10/166
    • A closed loop vapor cycle generated by a special device formed by heat transfer and a vapor expander means it is utilized to convert waste heat from conventional power systems into additional thermodynamic work, thereby improving the overall power system efficiency. Superheated vapor (i.e. steam) is instantaneously produced inside special energy transfer means where waste heat is converted into fluid energy with desired thermodynamic properties. The superheated vapor is then converted into mechanical energy through special work-producing units (expanders), thereby returning a significant fraction of the energy contained in the waste heat to the power system.
    • 由通过热传递形成的特殊装置产生的闭环蒸汽循环和蒸汽膨胀器意味着其被用于将来自常规动力系统的废热转换成额外的热力学工作,从而提高总体动力系统效率。 过热蒸气(即蒸汽)在特殊的能量转移装置内立即产生,其中废热被转化成具有期望热力学性质的流体能量。 然后通过特殊的工作生产单元(膨胀器)将过热蒸汽转化成机械能,从而将废热中所含能量的很大一部分返回给电力系统。
    • 10. 发明授权
    • Miniaturized waste heat engine
    • 小型化余热发动机
    • US06374613B1
    • 2002-04-23
    • US09582233
    • 2000-09-07
    • Claudio Filippone
    • Claudio Filippone
    • F01K2310
    • F02G5/00F01K23/065F01N5/02F01N2240/02F02B75/34Y02T10/16Y02T10/166
    • A closed loop vapor cycle generated by a special device formed by heat transfer and a vapor expander means it is utilized to convert waste heat from conventional power systems into additional thermodynamic work, thereby improving the overall power system efficiency. Superheated vapor (i.e. steam) is instantaneously produced inside special energy transfer means where waste heat is converted into fluid energy with desired thermodynamic properties. The superheated vapor is then converted into mechanical energy through special work-producing units (expanders), thereby returning a significant fraction of the energy contained in the waste heat to the power system.
    • 由通过热传递形成的特殊装置产生的闭环蒸汽循环和蒸汽膨胀器意味着其被用于将来自常规动力系统的废热转换成额外的热力学工作,从而提高总体动力系统效率。 过热蒸气(即蒸汽)在特殊的能量转移装置内立即产生,其中废热被转化成具有期望热力学性质的流体能量。 然后通过特殊的工作生产单元(膨胀器)将过热蒸汽转化成机械能,从而将废热中所含能量的很大一部分返回给电力系统。