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    • 12. 发明授权
    • Underwater vehicle
    • 水下车
    • US08065972B2
    • 2011-11-29
    • US12399944
    • 2009-03-07
    • Robert James HowardJohn W. Rapp
    • Robert James HowardJohn W. Rapp
    • B63G8/08
    • H01L35/00B60L2240/36B63G8/08B63H21/17
    • An underwater vehicle comprising an electrical power generation system that converts thermal energy from a body of water into electrical energy is disclosed. The vehicle comprises the electrical power generation system and a thermal mass whose temperature is based on the temperature of water at a first depth of a body of water. The vehicle is moved to a second depth of the body of water, wherein water at the second depth is a different temperature that the water at the first depth. The electrical power generation system generates electrical energy based on the difference between the temperature of the water at the second depth and the temperature of the thermal mass. The electrical power generation system is able to generate electrical energy when the temperature difference is negative as well as when the temperature difference is positive.
    • 公开了一种水下航行器,其包括将来自水体的热能转换成电能的发电系统。 车辆包括发电系统和温度基于水体第一深度处的水的温度的热质量。 车辆移动到水体的第二深度,其中第二深度处的水是与第一深度处的水不同的温度。 发电系统基于第二深度的水的温度与热质量的温度之间的差异产生电能。 当温差为负时,当温差为正时,发电系统能够产生电能。
    • 13. 发明授权
    • Computing machine using software objects for transferring data that includes no destination information
    • 计算机使用软件对象传输不包含目的地信息的数据
    • US07987341B2
    • 2011-07-26
    • US10684053
    • 2003-10-09
    • Chandan MathurScott HellenbachJohn W. Rapp
    • Chandan MathurScott HellenbachJohn W. Rapp
    • G06F9/00G06F15/76G06F3/00
    • G06F15/7867G06Q40/08
    • A computing machine includes a first buffer and a processor coupled to the buffer. The processor executes an application, a first data-transfer object, and a second data-transfer object, publishes data under the control of the application, loads the published data into the buffer under the control of the first data-transfer object, and retrieves the published data from the buffer under the control of the second data-transfer object. Alternatively, the processor retrieves data and loads the retrieved data into the buffer under the control of the first data-transfer object, unloads the data from the buffer under the control of the second data-transfer object, and processes the unloaded data under the control of the application. Where the computing machine is a peer-vector machine that includes a hardwired pipeline accelerator coupled to the processor, the buffer and data-transfer objects facilitate the transfer of data between the application and the accelerator.
    • 计算机包括第一缓冲器和耦合到缓冲器的处理器。 处理器执行应用程序,第一数据传输对象和第二数据传输对象,在应用程序的控制下发布数据,在第一数据传输对象的控制下将发布的数据加载到缓冲器中,并检索 来自缓冲区的已发布数据在第二个数据传输对象的控制下。 或者,处理器在第一数据传输对象的控制下检索数据并将检索到的数据加载到缓冲器中,在第二数据传输对象的控制下从缓冲器中卸载数据,并在控制下处理卸载的数据 的应用程序。 在计算机是包括耦合到处理器的硬连线管道加速器的对等矢量机的情况下,缓冲器和数据传输对象便于在应用和加速器之间的数据传送。
    • 17. 发明授权
    • Combined Brayton-Rankine cycle
    • 联合布雷顿 - 兰金循环
    • US08250847B2
    • 2012-08-28
    • US12343954
    • 2008-12-24
    • John W. RappNicholas J. Nagurny
    • John W. RappNicholas J. Nagurny
    • F02C6/00
    • F02C6/18F01K23/10F01K25/106F02C3/22F02C6/14Y02E10/34
    • A power generation system that comprises a first power generator; a first turbine operable to drive the first power generator; a vaporizer operable to vaporize a working fluid, wherein the vaporized working fluid turns the first turbine; and a condenser operable to condense the vaporized working fluid exiting the first turbine, wherein the condenser is coupled to the vaporizer such that the condensed working fluid is vaporized in the vaporizer. The power generation system also comprises a second power generator; a second turbine operable to burn a fuel to drive the second power generator; a switch to selectively operate the second turbine independently of the first turbine; and a heat exchanger coupled to the second turbine to receive flue gas from the second turbine when operated, wherein heat is transferred in the heat exchanger from the flue gas to the vaporized working fluid after the vaporized working fluid exits the vaporizer and prior to the vaporized working fluid entering the first turbine.
    • 一种发电系统,包括第一发电机; 可操作以驱动第一发电机的第一涡轮机; 蒸发器,可操作以蒸发工作流体,其中蒸发的工作流体转动第一涡轮; 以及冷凝器,其可操作以冷凝离开所述第一涡轮机的蒸发的工作流体,其中所述冷凝器联接到所述蒸发器,使得所述冷凝的工作流体在所述蒸发器中蒸发。 发电系统还包括第二发电机; 第二涡轮,其可操作以燃烧燃料以驱动所述第二发电机; 独立于第一涡轮机选择性地操作第二涡轮机的开关; 以及耦合到所述第二涡轮机的热交换器,以在操作时接收来自所述第二涡轮机的烟道气,其中在所述蒸发的工作流体离开所述蒸发器之后并且在所述汽化之前,热量在所述热交换器中从所述烟道气传递到所述蒸发的工作流体 工作流体进入第一台涡轮。
    • 19. 发明申请
    • Underwater Vehicle
    • 水下车
    • US20110179988A1
    • 2011-07-28
    • US12399944
    • 2009-03-07
    • Robert James HowardJohn W. Rapp
    • Robert James HowardJohn W. Rapp
    • B63G8/08B63H21/17B60L11/00H01L35/30
    • H01L35/00B60L2240/36B63G8/08B63H21/17
    • An underwater vehicle comprising an electrical power generation system that converts thermal energy from a body of water into electrical energy is disclosed. The vehicle comprises the electrical power generation system and a thermal mass whose temperature is based on the temperature of water at a first depth of a body of water. The vehicle is moved to a second depth of the body of water, wherein water at the second depth is a different temperature that the water at the first depth. The electrical power generation system generates electrical energy based on the difference between the temperature of the water at the second depth and the temperature of the thermal mass. The electrical power generation system is able to generate electrical energy when the temperature difference is negative as well as when the temperature difference is positive.
    • 公开了一种水下航行器,其包括将来自水体的热能转换成电能的发电系统。 车辆包括发电系统和温度基于水体第一深度处的水的温度的热质量。 车辆移动到水体的第二深度,其中第二深度处的水是与第一深度处的水不同的温度。 发电系统基于第二深度的水的温度与热质量的温度之间的差异产生电能。 当温差为负时,当温差为正时,发电系统能够产生电能。
    • 20. 发明授权
    • Projectile accelerator and related vehicle and method
    • 弹丸加速器及相关车辆及方法
    • US07984581B2
    • 2011-07-26
    • US12008487
    • 2008-01-11
    • John W. RappRobert J. Howard
    • John W. RappRobert J. Howard
    • F41A19/58F41A1/08F41C9/06
    • F41A19/65F41A1/08F41A1/10F41A25/02F41F3/10F42B5/035
    • An unguided projectile-accelerator system includes an enclosure, first and second charges, first and second projectiles, and a recoil-absorbing mechanism. The enclosure has an open first end and a closed second end, and the first and second charges are disposed within the enclosure. The first projectile is disposed within the enclosure between the first charge and the first end and is operable to exit the enclosure via the first end and to generate a first recoil in response to detonation of the first charge. The second projectile is disposed within the enclosure between the first charge and the second charge and is operable to exit the enclosure via the first end and to generate a second recoil in response to detonation of the second charge. The recoil-absorbing mechanism is disposed adjacent to the enclosure and is operable to absorb at least a respective portion of each of the first and second recoil.
    • 无引导的射弹加速器系统包括外壳,第一和第二电荷,第一和第二射弹以及反冲吸收机构。 外壳具有敞开的第一端和闭合的第二端,并且第一和第二电荷设置在外壳内。 第一弹丸设置在第一充电和第一端之间的外壳内,并且可操作以经由第一端离开外壳,并且响应于第一充电的爆震而产生第一反冲。 第二射弹在第一充电和第二充电之间设置在外壳内,并且可操作以经由第一端离开外壳,并且响应于第二充电的爆震而产生第二反冲。 反冲吸收机构设置成与外壳相邻,并且可操作以吸收第一和第二反冲中的每一个的至少相应部分。