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    • 1. 发明申请
    • THERMAL SUPERCONDUCTOR REFRIGERATION SYSTEM
    • 热超导体制冷系统
    • US20070209380A1
    • 2007-09-13
    • US11619493
    • 2007-01-03
    • Lynn MuellerJohn Graham
    • Lynn MuellerJohn Graham
    • F25D23/12F25B13/00
    • F25B47/025F25B25/005F25B2700/11F25D21/06F28F13/00F28F2013/001F28F2013/008
    • A superconductor refrigeration system incorporates thermal superconducting heat transfer. The system includes an intensifying heat exchanger, a refrigerating heat exchange coil formed from thermal superconductor material, and a dissipating heat exchange coil formed from thermal superconductor material. The system can also include a switch connected to condenser and evaporator heat exchange segments, a refrigeration switch segment and a dissipating switch segment such that in a first switch position a refrigerating mode is provided and in a second switch position a defrost mode is provided. Additional embodiments include thermostat controllers and blowers for enhanced control. Heat exchange and reuse is described for multiple heat exchangers coupled by thermal superconductors. A defrosting element is described for refrigeration heat exchangers.
    • 超导体制冷系统包含热超导热传递。 该系统包括增压热交换器,由热超导体材料形成的制冷热交换盘管,以及由热超导体材料形成的耗散热交换盘管。 该系统还可以包括连接到冷凝器和蒸发器热交换段的开关,制冷开关段和耗散开关段,使得在第一开关位置提供制冷模式,并且在第二开关位置提供除霜模式。 另外的实施例包括用于增强控制的恒温器控制器和鼓风机。 热交换和再利用被描述为由热超导体耦合的多个热交换器。 描述了用于制冷热交换器的除霜元件。
    • 2. 发明授权
    • Geothermal exchange system incorporating a thermally superconducting medium
    • 包含热超导介质的地热交换系统
    • US07451612B2
    • 2008-11-18
    • US11532023
    • 2006-09-14
    • Lynn MuellerMark McCooeyJohn GrahamDavid Todd
    • Lynn MuellerMark McCooeyJohn GrahamDavid Todd
    • F25D23/12
    • F24D15/04F24T10/10F25B13/00F25B30/06F25B2313/002Y02B30/12Y02E10/12
    • A geothermal heating and cooling system is thermally coupleable to a ground coil formed from a thermal superconductor material. The system includes a heat intensification circuit, a thermal superconductor heat exchange coil and a thermal switch coupling the intensifying heat exchanger to the superconductor heat exchanger, and a thermostat controller connected to the thermal switch and intensifying heat exchanger. The system employs a high thermal transfer superconductor to efficiently move heat to and from the earth source for the purpose of heating and cooling. The system operates in cooling and heating modes by controlling the thermal switches and activating the heat intensification circuit in response to the difference between a set point and a measured temperature. Heat can be transferred to and from the superconductor heat exchange coil through various air and liquid exchange subsystems including fans, direct and indirect liquid heat exchange.
    • 地热加热和冷却系统可热耦合到由热超导体材料形成的接地线圈。 该系统包括热集中电路,热超导体热交换线圈和将增压热交换器耦合到超导体热交换器的热开关,以及连接到热开关和增压热交换器的恒温器控制器。 该系统采用高热传递超导体,以有效地将热量从地源移动到加热和冷却的目的。 该系统通过控制热开关并响应于设定点和测量温度之间的差异来激活热集中电路,以冷却和加热模式运行。 热量可以通过各种空气和液体交换子系统传递到超导体热交换线圈,包括风扇,直接和间接液体热交换。
    • 5. 发明申请
    • Geothermal Exchange System Incorporating A Thermally Superconducting Medium
    • 包含热超导介质的地热交换系统
    • US20070068184A1
    • 2007-03-29
    • US11532023
    • 2006-09-14
    • Lynn MuellerMark McCooeyJohn GrahamDavid Todd
    • Lynn MuellerMark McCooeyJohn GrahamDavid Todd
    • F25D23/12F24J3/08F25B13/00F25B29/00
    • F24D15/04F24T10/10F25B13/00F25B30/06F25B2313/002Y02B30/12Y02E10/12
    • A geothermal heating and cooling system is thermally coupleable to a ground coil formed from a thermal superconductor material. The system includes a heat intensification circuit, a thermal superconductor heat exchange coil and a thermal switch coupling the intensifying heat exchanger to the superconductor heat exchanger, and a thermostat controller connected to the thermal switch and intensifying heat exchanger. The system employs a high thermal transfer superconductor to efficiently move heat to and from the earth source for the purpose of heating and cooling. The system operates in cooling and heating modes by controlling the thermal switches and activating the heat intensification circuit in response to the difference between a set point and a measured temperature. Heat can be transferred to and from the superconductor heat exchange coil through various air and liquid exchange subsystems including fans, direct and indirect liquid heat exchange.
    • 地热加热和冷却系统可热耦合到由热超导体材料形成的接地线圈。 该系统包括热集中电路,热超导体热交换线圈和将增压热交换器耦合到超导体热交换器的热开关,以及连接到热开关和增压热交换器的恒温器控制器。 该系统采用高热传递超导体,以有效地将热量从地源移动到加热和冷却的目的。 该系统通过控制热开关并响应于设定点和测量温度之间的差异来激活热集中电路,以冷却和加热模式运行。 热量可以通过各种空气和液体交换子系统传递到超导体热交换线圈,包括风扇,直接和间接液体热交换。