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    • 21. 发明申请
    • HEAT ENGINE AND HEAT TO ELECTRICITY SYSTEMS AND METHODS
    • 热发动机和热电系统和方法
    • US20100156112A1
    • 2010-06-24
    • US12631379
    • 2009-12-04
    • Timothy J. HeldStephen HostlerJason D. MillerBrian F. Hume
    • Timothy J. HeldStephen HostlerJason D. MillerBrian F. Hume
    • H02K7/18F01K27/00F04B17/03
    • F01K25/103F01K3/185F01K3/186F01K7/165F24H2240/12Y02T10/16
    • A waste heat recovery system, method and device executes a thermodynamic cycle using a working fluid in a working fluid circuit which has a high pressure side and a low pressure side. Components of the system in the working fluid circuit include a waste heat exchanger in thermal communication with a waste heat source also connected to the working fluid circuit, whereby thermal energy is transferred from the waste heat source to the working fluid in the working fluid circuit, an expander located between the high pressure side and the low pressure side of the working fluid circuit, the expander operative to convert a pressure/enthalpy drop in the working fluid to mechanical energy, a recuperator in the working fluid circuit operative to transfer thermal energy between the high pressure side and the low pressure side of the working fluid circuit, a cooler in thermal communication with the low pressure side of the working fluid circuit operative to control temperature of the working fluid in the low side of the working fluid circuit, a pump in the working fluid circuit and connected to the low pressure side and to the high pressure side of the working fluid circuit and operative to move the working fluid through the working fluid circuit, and a mass management system connected to the working fluid circuit, the mass management system, method and device having a working fluid vessel connected to the low pressure side of the working fluid circuit and configured to passively control an amount of working fluid mass in the working fluid circuit.
    • 废热回收系统,方法和装置在具有高压侧和低压侧的工作流体回路中使用工作流体执行热力循环。 工作流体回路中的系统的部件包括与也连接到工作流体回路的废热源热连通的废热交换器,由此热能从废热源传递到工作流体回路中的工作流体, 膨胀器,其位于工作流体回路的高压侧和低压侧之间,膨胀器可操作以将工作流体中的压力/焓降转换为机械能;工作流体回路中的换热器,可操作以在 工作流体回路的高压侧和低压侧,与工作流体回路的低压侧热连通的冷却器,用于控制工作流体回路的低侧的工作流体的温度,泵 在工作流体回路中并连接到工作流体回路的低压侧和高压侧 可操作地将工作流体移动通过工作流体回路,以及连接到工作流体回路的质量管理系统,质量管理系统,方法和装置,其具有连接到工作流体回路的低压侧的工作流体容器, 被动地控制工作流体回路中的工作流体质量。
    • 25. 发明授权
    • Thermal energy conversion device
    • 热能转换装置
    • US09115605B2
    • 2015-08-25
    • US12631412
    • 2009-12-04
    • Timothy J. HeldStephen HostlerJason D. MillerBrian F. Hume
    • Timothy J. HeldStephen HostlerJason D. MillerBrian F. Hume
    • F01K13/00F01K13/02F01B29/10F02G1/04F01K25/10F01K3/18F01K7/16
    • F01K25/103F01K3/185F01K3/186F01K7/165F24H2240/12Y02T10/16
    • Embodiments provide a power generation device that utilizes a working fluid containing carbon dioxide within a working fluid circuit having high and low pressure sides. Components of the device may include a heat exchanger configured to be in thermal communication with a heat source whereby thermal energy is transferred from the heat source to the working fluid, an expander located between the high and low pressure sides of the working fluid circuit and operative to convert a pressure drop in the working fluid to mechanical energy, a recuperator operative to transfer thermal energy between the high and low pressure sides, a cooler operative to control temperature of the working fluid in the low pressure side, a pump operative to circulate the working fluid through the working fluid circuit, and a mass management system configured to control an amount of working fluid mass in the working fluid circuit.
    • 实施例提供一种利用在具有高低压侧的工作流体回路内含有二氧化碳的工作流体的发电装置。 装置的部件可以包括被配置为与热源热连通的热交换器,由此热能从热源传递到工作流体,位于工作流体回路的高压侧和低压侧之间的膨胀器 将工作流体中的压降转换为机械能,一个可在高压侧和低压侧之间传递热能的换热器,一个用于控制低压侧工作流体温度的冷却器, 工作流体通过工作流体回路,以及质量管理系统,其构造成控制工作流体回路中的工作流体质量的量。
    • 26. 发明授权
    • Water recirculation and drum rotation control in a laundry washer
    • 洗衣机中的水再循环和滚筒旋转控制
    • US08490439B2
    • 2013-07-23
    • US13449450
    • 2012-04-18
    • Chris H. HillJason D. Miller
    • Chris H. HillJason D. Miller
    • D06F33/02D06F39/08
    • D06F39/083D06F35/006D06F39/088
    • In a laundry washer, relatively short bursts of operation of a recirculation pump are coordinated with corresponding brief intervals of tub rotation during the initial fill periods. The aim is to thoroughly wet the clothes early in each wash/rinse phase to thus improve the wash/rinse effectiveness, while also avoiding excessive suds formation. Following the initial fill periods and during regular wash/rinse agitations, the recirculation system may also be employed to “recharge” the laundry load with detergent that has settled in the bottom of the tub. In a further aspect of the invention, some or all of the conventional intermediate spin extractions are omitted. In this manner, more water is carried over in the clothes from one wash/rinse cycle to the next. An intermediate spin of reduced speed (RPM) and duration as compared to typical normal intermediate spins may be employed between the wash phase and first rinse.
    • 在洗衣机中,在初始填充期间,循环泵的相对较短的操作次数与相应的桶的旋转间隔协调。 目的是在每个洗涤/漂洗阶段中将衣物彻底湿透,从而提高洗涤/冲洗效果,同时也避免过度的泡沫形成。 在初始填充周期之后和在常规洗涤/冲洗搅拌期间,再循环系统也可以用于使用已经沉降在洗涤桶底部的洗涤剂“再充电”衣物负载。 在本发明的另一方面,省略了一些或所有常规中间体旋转提取。 以这种方式,更多的水在衣物中从一个洗涤/漂洗循环传递到下一个。 可以在洗涤阶段和第一冲洗之间采用与典型的正常中间旋转相比降低速度(RPM)和持续时间的中间旋转。
    • 27. 发明授权
    • Heat engine and heat to electricity systems and methods
    • 热机和热电系统和方法
    • US08096128B2
    • 2012-01-17
    • US12631379
    • 2009-12-04
    • Timothy J. HeldStephen HostlerJason D. MillerBrian F. Hume
    • Timothy J. HeldStephen HostlerJason D. MillerBrian F. Hume
    • F01K25/02
    • F01K25/103F01K3/185F01K3/186F01K7/165F24H2240/12Y02T10/16
    • A waste heat recovery system, method and device executes a thermodynamic cycle using a working fluid in a working fluid circuit which has a high pressure side and a low pressure side. Components of the system in the working fluid circuit include a waste heat exchanger in thermal communication with a waste heat source also connected to the working fluid circuit, whereby thermal energy is transferred from the waste heat source to the working fluid in the working fluid circuit, an expander located between the high pressure side and the low pressure side of the working fluid circuit, the expander operative to convert a pressure/enthalpy drop in the working fluid to mechanical energy, a recuperator in the working fluid circuit operative to transfer thermal energy between the high pressure side and the low pressure side of the working fluid circuit, a cooler in thermal communication with the low pressure side of the working fluid circuit operative to control temperature of the working fluid in the low side of the working fluid circuit, a pump in the working fluid circuit and connected to the low pressure side and to the high pressure side of the working fluid circuit and operative to move the working fluid through the working fluid circuit, and a mass management system connected to the working fluid circuit, the mass management system, method and device having a working fluid vessel connected to the low pressure side of the working fluid circuit and configured to passively control an amount of working fluid mass in the working fluid circuit.
    • 废热回收系统,方法和装置在具有高压侧和低压侧的工作流体回路中使用工作流体执行热力循环。 工作流体回路中的系统的部件包括与也连接到工作流体回路的废热源热连通的废热交换器,由此热能从废热源传递到工作流体回路中的工作流体, 位于工作流体回路的高压侧和低压侧之间的膨胀器,膨胀器可操作以将工作流体中的压力/焓降转换为机械能;工作流体回路中的换热器,其可操作以在 工作流体回路的高压侧和低压侧,与工作流体回路的低压侧热连通的冷却器,用于控制工作流体回路的低侧的工作流体的温度,泵 在工作流体回路中并连接到工作流体回路的低压侧和高压侧 可操作地将工作流体移动通过工作流体回路,以及连接到工作流体回路的质量管理系统,质量管理系统,方法和装置,其具有连接到工作流体回路的低压侧的工作流体容器, 被动地控制工作流体回路中的工作流体质量。
    • 28. 发明申请
    • THERMAL ENERGY CONVERSION METHOD
    • 热能转换方法
    • US20110061387A1
    • 2011-03-17
    • US12631400
    • 2009-12-04
    • Timothy J. HeldStephen HostlerJason D. MillerBrian F. Hume
    • Timothy J. HeldStephen HostlerJason D. MillerBrian F. Hume
    • F01K25/08F01K13/00F01K19/00
    • F01K25/103F01K3/185F01K3/186F01K7/165F24H2240/12Y02T10/16
    • A waste heat recovery system, method and device executes a thermodynamic cycle using a working fluid in a working fluid circuit which has a high pressure side and a low pressure side. Components of the system in the working fluid circuit include a waste heat exchanger in thermal communication with a waste heat source also connected to the working fluid circuit, whereby thermal energy is transferred from the waste heat source to the working fluid in the working fluid circuit, an expander located between the high pressure side and the low pressure side of the working fluid circuit, the expander operative to convert a pressure/enthalpy drop in the working fluid to mechanical energy, a recuperator in the working fluid circuit operative to transfer thermal energy between the high pressure side and the low pressure side of the working fluid circuit, a cooler in thermal communication with the low pressure side of the working fluid circuit operative to control temperature of the working fluid in the low side of the working fluid circuit, a pump in the working fluid circuit and connected to the low pressure side and to the high pressure side of the working fluid circuit and operative to move the working fluid through the working fluid circuit, and a mass management system connected to the working fluid circuit, the mass management system, method and device having a working fluid vessel connected to the low pressure side of the working fluid circuit and configured to passively control an amount of working fluid mass in the working fluid circuit.
    • 废热回收系统,方法和装置在具有高压侧和低压侧的工作流体回路中使用工作流体执行热力循环。 工作流体回路中的系统的部件包括与也连接到工作流体回路的废热源热连通的废热交换器,由此热能从废热源传递到工作流体回路中的工作流体, 位于工作流体回路的高压侧和低压侧之间的膨胀器,膨胀器可操作以将工作流体中的压力/焓降转换为机械能;工作流体回路中的换热器,其可操作以在 工作流体回路的高压侧和低压侧,与工作流体回路的低压侧热连通的冷却器,用于控制工作流体回路的低侧的工作流体的温度,泵 在工作流体回路中并连接到工作流体回路的低压侧和高压侧 可操作地将工作流体移动通过工作流体回路,以及连接到工作流体回路的质量管理系统,质量管理系统,方法和装置,其具有连接到工作流体回路的低压侧的工作流体容器, 被动地控制工作流体回路中的工作流体质量。