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    • 21. 发明申请
    • Rankine cycle system
    • 兰金循环系统
    • US20060242961A1
    • 2006-11-02
    • US11373254
    • 2006-03-13
    • Akihisa SatoKoji FukutomiKensaku Yamamoto
    • Akihisa SatoKoji FukutomiKensaku Yamamoto
    • F01K13/00
    • F01K13/02
    • A Rankine cycle system includes an evaporator for heating water with thermal energy of exhaust gas of an engine so as to generate steam; a displacement type expander for converting the thermal energy of the steam generated by the evaporator into mechanical energy; a temperature controller for manipulating the amount of water supplied to the evaporator so that the temperature of the steam supplied from the evaporator to the expander coincides with a target temperature; and a pressure controller for manipulating the rotational speed of the expander by changing a load of the expander so that the pressure of the steam supplied from the evaporator to the expander coincides with a target pressure. The temperature controller and the pressure controller control the amount of water supplied to the evaporator and/or the rotational speed of the expander according to at least an internal density of the evaporator.
    • 兰金循环系统包括用于对发动机的废气的热能加热水以便产生蒸汽的蒸发器; 用于将由蒸发器产生的蒸汽的热能转换成机械能的位移式膨胀器; 温度控制器,用于操纵供应到蒸发器的水量,使得从蒸发器供应到膨胀器的蒸汽的温度与目标温度一致; 以及压力控制器,用于通过改变膨胀器的负载来操纵膨胀机的转速,使得从蒸发器供给到膨胀器的蒸汽的压力与目标压力一致。 温度控制器和压力控制器至少根据蒸发器的内部密度控制供应给蒸发器的水量和/或膨胀器的转速。
    • 25. 发明授权
    • Internal combustion engine variable compression ratio system
    • 内燃机可变压缩比系统
    • US07527025B2
    • 2009-05-05
    • US11822744
    • 2007-07-09
    • Mitsuo KadotaKensaku Yamamoto
    • Mitsuo KadotaKensaku Yamamoto
    • F02B75/04
    • F02B75/044F02D15/02
    • In an internal combustion engine variable compression ratio system, a compression ratio of an internal combustion engine is changed over between a high compression ratio and a low compression ratio with a changeover threshold value corresponding to a predetermined operational condition of the internal combustion engine being a boundary. When the internal combustion engine enters a slow acceleration state or a slow deceleration state, a changeover is performed first and then the state is maintained for a predetermined period by prohibiting re-changeover. Therefore, changeover hunting can be prevented in the system while maintaining an appropriate compression ratio in conformity with traveling characteristics demanded by a driver, when the internal combustion engine in a state of slow acceleration or slow deceleration.
    • 在内燃机可变压缩比系统中,内燃机的压缩比在高压缩比和低压缩比之间切换,其中转换阈值对应于作为边界的内燃机的预定操作条件 。 当内燃机进入缓慢加速状态或缓慢减速状态时,首先进行切换,然后通过禁止重新切换将状态维持一段预定时间。 因此,当内燃机处于缓慢加速或缓慢减速的状态时,可以在系统中防止切换狩猎,同时保持与驾驶员要求的行驶特性一致的适当的压缩比。
    • 27. 发明申请
    • Rankine cycle system
    • 兰金循环系统
    • US20060254276A1
    • 2006-11-16
    • US11373134
    • 2006-03-13
    • Akihisa SatoKoji FukutomiKensaku Yamamoto
    • Akihisa SatoKoji FukutomiKensaku Yamamoto
    • F01K13/00
    • F01K23/101
    • A Rankine cycle system includes an evaporator for heating water with thermal energy of exhaust gas of an engine for generating steam with a displacement type expander for converting thermal energy into mechanical energy. A temperature controller manipulates the amount of water supplied to the evaporator so that the temperature of the steam supplied from the evaporator to the expander coincides with a target temperature. A pressure controller manipulates the rotational speed of the expander by changing a load of the expander so that the pressure of the steam supplied from the evaporator to the expander coincides with a target pressure. The temperature controller and/or the pressure controller continue to control the amount of water supplied to the evaporator and/or the rotational speed of the expander in set ranges at least in a state in which the engine has stopped and the thermal energy of the exhaust gas has disappeared.
    • 兰金循环系统包括用于用发动机排气的热能加热水的蒸发器,用于利用用于将热能转换成机械能的位移式膨胀器产生蒸汽。 温度控制器控制供应到蒸发器的水量,使得从蒸发器供应到膨胀器的蒸汽的温度与目标温度一致。 压力控制器通过改变膨胀器的负载来操纵膨胀机的转速,使得从蒸发器供给到膨胀器的蒸汽的压力与目标压力一致。 温度控制器和/或压力控制器至少在发动机停止的状态和排气的热能下继续控制供给蒸发器的水量和/或膨胀机的转速在设定范围内 气体消失了。
    • 28. 发明申请
    • Rankine cycle system
    • 兰金循环系统
    • US20060201154A1
    • 2006-09-14
    • US11373126
    • 2006-03-13
    • Masashi KatoAkihisa SatoMitsuo KadotaKensaku Yamamoto
    • Masashi KatoAkihisa SatoMitsuo KadotaKensaku Yamamoto
    • F01K13/00
    • F01K23/101
    • A Rankine cycle system includes: an evaporator for heating water with thermal energy of exhaust gas of an engine so as to generate steam; an expander for converting the thermal energy of the steam generated by the evaporator into mechanical energy; and a distribution device for manipulating the amount of water supplied to the evaporator in order to make the temperature of the steam supplied from the evaporator to the expander coincide with a target temperature. The distribution device controls a distribution ratio between the amount of water supplied to the entrance of the evaporator and the amount of water supplied to a portion partway along the evaporator, thereby suppressing an overshoot in the temperature of the gas-phase working medium due to a sudden increase in the thermal energy of the exhaust gas.
    • 兰金循环系统包括:蒸发器,用于对发动机的废气的热能加热水以产生蒸汽; 用于将由蒸发器产生的蒸汽的热能转换成机械能的膨胀器; 以及分配装置,用于操纵供给到蒸发器的水量,以使从蒸发器供给到膨胀器的蒸汽的温度与目标温度一致。 分配装置控制供给到蒸发器的入口的水量与供给到沿着蒸发器的中途的一部分的供水量之间的分配比,从而抑制气相工作介质的温度由于 废气热能突然增加。
    • 29. 发明申请
    • III-V Group compound semiconductor light emitting device and manufacturing method thereof
    • III-V族化合物半导体发光器件及其制造方法
    • US20060102933A1
    • 2006-05-18
    • US11264159
    • 2005-11-02
    • Kensaku Yamamoto
    • Kensaku Yamamoto
    • H01L31/109
    • H01L33/0079H01L2924/0002H01L2924/00
    • A light emitting device including a III-V group compound semiconductor includes a first stacked body and a second stacked body. The first stacked body includes a III-V group compound semiconductor stacked body, and a reflection layer, a first diffusion suppressing layer and a first metal layer formed on one main surface of the III-V group compound semiconductor stacked body. The second stacked body includes a semiconductor substrate and a second metal layer. The first stacked body and the second stacked body are joined by the first metal layer and the second metal layer, and by the first diffusion suppressing layer, diffusion of atoms between the reflection layer and the first metal layer is suppressed. Therefore, a III-V group compound semiconductor device having high efficiency of light emission to the outside per chip and manufacturing method thereof can be provided.
    • 包括III-V族化合物半导体的发光器件包括第一层叠体和第二层叠体。 第一层叠体包括III-V族化合物半导体层叠体,以及形成在III-V族化合物半导体层叠体的一个主表面上的反射层,第一扩散抑制层和第一金属层。 第二层叠体包括半导体衬底和第二金属层。 第一层叠体和第二层叠体通过第一金属层和第二金属层接合,并且通过第一扩散抑制层,抑制了反射层与第一金属层之间的原子的扩散。 因此,可以提供具有高效率的发光效率的芯片的外部的III-V族化合物半导体器件及其制造方法。
    • 30. 发明申请
    • Light emitting device of III-V group compound semiconductor and fabrication method therefor
    • III-V族化合物半导体发光元件及其制造方法
    • US20050199904A1
    • 2005-09-15
    • US11076610
    • 2005-03-09
    • Kensaku Yamamoto
    • Kensaku Yamamoto
    • H01L29/06H01L33/06H01L33/32H01L33/42H01L33/50
    • H01L33/0079H01L33/405H01L33/42
    • A light emitting device of III-V group compound semiconductor includes a first stack and a second stack. The first stack includes a semiconductor stack including a light emitting layer. A multilayered reflective structure for reflecting light from the light emitting layer and a first metal bonding-layer are successively formed on the semiconductor stack. The second stack includes a second metal bonding-layer. The first and second stacks are bonded together by bonding the first and second metal bonding-layers to each other. The multilayered reflective structure includes a transparent conductive oxide layer and a reflective metal layer adjacent thereto in this order from the side of the semiconductor stack. The thickness of the transparent conductive oxide layer is adjusted to control the light emission characteristics.
    • III-V族化合物半导体的发光器件包括第一叠层和第二叠层。 第一堆叠包括包括发光层的半导体堆叠。 在半导体堆叠上依次形成用于反射来自发光层的光的多层反射结构和第一金属接合层。 第二堆叠包括第二金属结合层。 第一和第二堆叠通过将第一和第二金属结合层彼此接合而结合在一起。 多层反射结构从半导体叠层的一侧依次包括透明导电氧化物层和与其相邻的反射金属层。 调整透明导电氧化物层的厚度以控制发光特性。