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    • 21. 发明申请
    • AUTOMATED MASS MANAGEMENT CONTROL
    • 自动化质量管理控制
    • US20150000281A1
    • 2015-01-01
    • US14469711
    • 2014-08-27
    • Katherine HartTimothy James Held
    • Katherine HartTimothy James Held
    • F01K13/02G05D7/06F01K11/00
    • F01K13/02F01K3/185F01K11/00F01K25/103G05D7/0617
    • Embodiments of the invention generally provide a heat engine system, a mass management system (MMS), and a method for regulating pressure in the heat engine system while generating electricity. In one embodiment, the MMS contains a tank fluidly coupled to a pump, a turbine, a heat exchanger, an offload terminal, and a working fluid contained in the tank at a storage pressure. The working fluid may be at a system pressure proximal an outlet of the heat exchanger, at a low-side pressure proximal a pump inlet, and at a high-side pressure proximal a pump outlet. The MMS contains a controller communicably coupled to a valve between the tank and the heat exchanger outlet, a valve between the tank and the pump inlet, a valve between the tank and the pump outlet, and a valve between the tank and the offload terminal.
    • 本发明的实施例通常提供热发动机系统,质量管理系统(MMS)以及用于在发电时调节热机系统中的压力的​​方法。 在一个实施例中,MMS包含在储存压力下流体耦合到泵,涡轮机,热交换器,卸载端子和容纳在罐中的工作流体的罐。 工作流体可以处于靠近热交换器的出口处的系统压力,在泵入口附近的低侧压力处,以及在泵出口附近的高侧压力。 MMS包含可控制地耦合到罐和热交换器出口之间的阀,罐和泵入口之间的阀,罐和泵出口之间的阀以及罐和卸载端之间的阀的控制器。
    • 22. 发明申请
    • HOT DAY CYCLE
    • 热日循环
    • US20130113221A1
    • 2013-05-09
    • US13290735
    • 2011-11-07
    • Timothy James Held
    • Timothy James Held
    • F01K13/00H02K7/18F01K25/10
    • F01K25/10
    • A thermodynamic cycle is disclosed and has a working fluid circuit that converts thermal energy into mechanical energy on hot days. A pump circulates a working fluid to a heat exchanger that heats the working fluid. The heated working fluid is then expanded in a power turbine. The expanded working fluid is then cooled and condensed using one or more compressors interposing at least two intercooling components. The intercooling components cool and condense the working fluid with a cooling medium derived at ambient temperature, where the ambient temperature is above the critical temperature of the working fluid.
    • 公开了一种热力学循环,并且具有将热能转换成热天的机械能的工作流体回路。 泵将工作流体循环到加热工作流体的热交换器。 然后,加热的工作流体在动力涡轮机中膨胀。 然后使用插入至少两个中间冷却部件的一个或多个压缩机来冷却和冷凝膨胀的工作流体。 中间冷却部件使用在环境温度下导出的冷却介质来冷却和冷凝工作流体,其中环境温度高于工作流体的临界温度。
    • 26. 发明授权
    • Mixer having multiple swirlers
    • 搅拌机有多个旋流器
    • US06363726B1
    • 2002-04-02
    • US09675666
    • 2000-09-29
    • Mark David DurbinTimothy James HeldHukam Chand Mongia
    • Mark David DurbinTimothy James HeldHukam Chand Mongia
    • F23R360
    • F23R3/343F23D2900/00015F23R3/14F23R3/286
    • A mixer assembly for use in a combustion chamber of a gas turbine engine. The assembly includes a pilot mixer and a main mixer. The pilot mixer includes an annular pilot housing having a hollow interior, a pilot fuel nozzle mounted in the housing and adapted for dispensing droplets of fuel to the hollow interior of the pilot housing, and one or more axial swirlers positioned upstream from the pilot fuel nozzle. The main mixer includes a main housing surrounding the pilot housing and defining an annular cavity, an annular fuel injector having a plurality of fuel injection ports arranged in a circular pattern surrounding the pilot housing and mounted inside the annular cavity of the main mixer for releasing droplets of fuel into swirling air downstream from the fuel injector, and one or more axial swirlers positioned upstream from the plurality of fuel injection ports.
    • 一种用于燃气涡轮发动机的燃烧室的混合器组件。 该组件包括一个先导式混合器和一个主混合器。 先导式混合器包括具有中空内部的环形导向壳体,安装在壳体中的适于将燃料液滴分配到导向壳体的中空内部的引燃燃料喷嘴以及位于导向燃料喷嘴上游的一个或多个轴向旋流器 。 主混合器包括围绕引导壳体并限定环形空腔的主壳体,环形燃料喷射器,其具有围绕引燃壳体布置成圆形图案的多个燃料喷射端口,并且安装在主混合器的环形空腔内部以释放液滴 的燃料喷射到燃料喷射器下游的旋转空气中,以及位于多个燃料喷射口的上游的一个或多个轴向旋流器。
    • 28. 发明授权
    • System and method for managing thermal issues in one or more industrial processes
    • 用于管理一个或多个工业过程中的热问题的系统和方法
    • US09441504B2
    • 2016-09-13
    • US13380110
    • 2010-06-22
    • Timothy James Held
    • Timothy James Held
    • F01K25/10F01K23/10
    • F01K25/10F01K23/10F01K25/103Y02E20/16Y02T10/16
    • The present invention generally relates to a system that enables one to both: (i) address various thermal management issues (e.g., inlet air cooling) in gas turbines, gas turbine engines, industrial process equipment and/or internal combustion engines; and (ii) yield a supercritical fluid-based heat engine. In one embodiment, the present invention utilizes at least one working fluid selected from ammonia, carbon dioxide, nitrogen, or other suitable working fluid medium. In another embodiment, the present invention utilizes carbon dioxide or ammonia as a working fluid to achieve a system that enables one to address inlet cooling issues in a gas turbine, internal combustion engine or other industrial application while also yielding a supercritical fluid based heat engine as a second cycle using the waste heat from the gas turbine and/or internal combustion engine to create a combined power cycle.
    • 本发明总体上涉及一种能够实现以下两者之一的系统:(i)解决燃气轮机,燃气涡轮发动机,工业过程设备和/或内燃机中的各种热管理问题(例如入口空气冷却) 和(ii)产生超临界流体型热机。 在一个实施方案中,本发明利用至少一种选自氨,二氧化碳,氮气或其它合适的工作流体介质的工作流体。 在另一个实施方案中,本发明利用二氧​​化碳或氨作为工作流体来实现能够解决燃气轮机,内燃机或其他工业应用中的入口冷却问题的系统,同时还产生基于超临界流体的热机, 使用来自燃气轮机和/或内燃机的废热的第二循环来产生组合的动力循环。
    • 29. 发明授权
    • Heat engine cycles for high ambient conditions
    • 热环境条件高的发动机循环
    • US08857186B2
    • 2014-10-14
    • US13291086
    • 2011-11-07
    • Timothy James Held
    • Timothy James Held
    • F01K23/04F01K25/02F01K25/08
    • F01K25/08
    • A system for converting thermal energy to work. The system includes a working fluid circuit, and a precooler configured to receive the working fluid. The system also includes a compression stages and intercoolers. At least one of the precooler and the intercoolers is configured to receive a heat transfer medium from a high temperature ambient environment. The system also includes heat exchangers coupled to a source of heat and being configured to receive the working fluid. The system also includes turbines coupled to one or more of the heat exchangers and configured to receive heated working fluid therefrom. The system further includes recuperators fluidly coupled to the turbines, the precooler, the compressor, and at least one of the heat exchangers. The recuperators transfer heat from the working fluid downstream from the turbines, to the working fluid upstream from at least one of the heat exchangers.
    • 将热能转换为工作的系统。 该系统包括工作流体回路和构造成接收工作流体的预冷器。 该系统还包括压缩级和中间冷却器。 预冷却器和中间冷却器中的至少一个被配置为从高温环境环境接收传热介质。 该系统还包括耦合到热源的热交换器并且被配置为接收工作流体。 该系统还包括联接到一个或多个热交换器并被配置为从其接收加热的工作流体的涡轮机。 该系统还包括流体耦合到涡轮机,预冷器,压缩机和至少一个热交换器的换热器。 换热器将热量从涡轮下游的工作流体传递到来自至少一个热交换器的上游的工作流体。
    • 30. 发明授权
    • Hot day cycle
    • 热日循环
    • US08783034B2
    • 2014-07-22
    • US13290735
    • 2011-11-07
    • Timothy James Held
    • Timothy James Held
    • F01K25/08F01K9/02
    • F01K25/10
    • A thermodynamic cycle is disclosed and has a working fluid circuit that converts thermal energy into mechanical energy on hot days. A pump circulates a working fluid to a heat exchanger that heats the working fluid. The heated working fluid is then expanded in a power turbine. The expanded working fluid is then cooled and condensed using one or more compressors interposing at least two intercooling components. The intercooling components cool and condense the working fluid with a cooling medium derived at ambient temperature, where the ambient temperature is above the critical temperature of the working fluid.
    • 公开了一种热力学循环,并且具有将热能转换成热天的机械能的工作流体回路。 泵将工作流体循环到加热工作流体的热交换器。 然后,加热的工作流体在动力涡轮机中膨胀。 然后使用插入至少两个中间冷却部件的一个或多个压缩机来冷却和冷凝膨胀的工作流体。 中间冷却部件使用在环境温度下导出的冷却介质来冷却和冷凝工作流体,其中环境温度高于工作流体的临界温度。