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    • 5. 发明授权
    • Dual injection type internal combustion engine
    • 双注射式内燃机
    • US07844389B2
    • 2010-11-30
    • US12149078
    • 2008-04-25
    • Shigeki Miyashita
    • Shigeki Miyashita
    • G06F19/00F02B1/00
    • F02D35/027F02D41/3094F02D41/401G01L23/225Y02T10/44
    • A dual injection type internal combustion engine including an injector for in-cylinder injection and an injector for intake manifold injection includes a learning device for learning a background noise level based on an output signal of a knock sensor, and a knocking suppression control device for performing, while learning the background noise level, knocking suppression control by controlling fuel injection of the injector for in-cylinder injection or the injector for intake manifold injection. Alternatively, the engine includes a fixing device for fixing, while learning the background noise level, a start timing or end timing of fuel injection by the injector for in-cylinder injection at a basic timing determined by an operating state of the engine.
    • 一种包括用于缸内喷射的喷射器和用于进气歧管喷射的喷射器的双喷射型内燃机包括:用于基于爆震传感器的输出信号学习背景噪声电平的学习装置,以及用于执行的敲击抑制控制装置 在学习背景噪声水平时,通过控制用于缸内喷射的喷射器的燃料喷射或用于进气歧管喷射的喷射器来进行爆震抑制控制。 或者,发动机包括固定装置,用于在由发动机的运行状态确定的基本时刻的同时学习背景噪声水平来固定用于缸内喷射的喷射器的燃料喷射的开始正时或结束定时。
    • 7. 发明授权
    • Heat differential power system
    • 热差动力系统
    • US07013639B2
    • 2006-03-21
    • US11017024
    • 2004-12-20
    • Brian A Hamman
    • Brian A Hamman
    • F02B1/00F28F1/00
    • F25B9/14G06F1/20G06F1/206G06F1/26G06F2200/201
    • Heat differential power systems and apparatus for powering liquid cooling systems and/or generating electrical power in a data processing system or a telecommunication system are presented. A number of embodiments are presented. In each embodiment a heat differential power system is implemented which utilizes the heat created a heat-generating component such as a microprocessor within the data processing or telecommunications system and the resulting heat differential created with other parts of the system as power to operate the heat differential power system and convert thermal energy into mechanical and/or electrical energy for powering a liquid cooling system, fans, other electrical components, and/or extending the battery life in a portable data processing or telecommunications system.
    • 提出了用于为液体冷却系统供电和/或在数据处理系统或电信系统中产生电力的热差动力系统和装置。 呈现了许多实施例。 在每个实施例中,实现了一种热差动力系统,其利用产生热量产生部件(例如数据处理或电信系统中的微处理器)的热量,以及由该系统的其他部分产生的所得到的热差异作为操作热差的功率 电力系统,并且将热能转换成用于为液体冷却系统,风扇,其他电气部件供电和/或延长便携式数据处理或电信系统中的电池寿命的机械和/或电能。
    • 8. 发明申请
    • Process and device for utilizing waste heat
    • 利用废热的工艺和装置
    • US20060037320A1
    • 2006-02-23
    • US11206877
    • 2005-08-18
    • Ralf Richard Hildebrandt
    • Ralf Richard Hildebrandt
    • F01K9/00F01K17/00F02B1/00
    • F01K21/00F01K21/005Y02P80/152Y02T10/16
    • A process, device and system are provided for utilizing waste heat from a waste heat source, especially from an internal combustion engine, by a coolant being heated and by this heat being used to drive a turbine. The device utilizes waste heat with a waste heat source (10, 20) cooled by a coolant, with a turbine (11) and with an evaporating device (16) for the coolant. To increase the efficiency of such a process and such a device and system, and to reduce the design effort and the maintenance effort, the coolant is evaporated after it leaves the waste heat source (10, 20) and the evaporating means is provided after the waste heat source (10, 20) when viewed in the direction of flow of the coolant.
    • 提供了一种过程,装置和系统,用于利用来自废热源,特别是内燃机的废热,通过被加热的冷却剂和用于驱动涡轮的这种热量。 该设备利用具有涡轮机(11)和用于冷却剂的蒸发装置(16))由冷却剂冷却的废热源(10,20)利用废热。 为了提高这种方法和这种装置和系统的效率,并且为了减少设计努力和维护工作,在离开废热源(10,20)之后,冷却剂被蒸发,并且蒸发装置在 当从冷却剂的流动方向观察时,废热源(10,20)。