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公开(公告)号:US20030024685A1
公开(公告)日:2003-02-06
申请号:US10208823
申请日:2002-08-01
发明人: Ronald S. Ace
IPC分类号: F28D001/00 , F25D023/12
CPC分类号: F24F5/0046 , F24D3/08 , F24D11/0214 , F24D2200/115 , F24D2200/12 , F24D2200/14 , F24D2200/20 , F24D2220/08 , F24F2005/006 , F24H2240/10 , F24T10/10 , F25B30/06 , Y02B10/20 , Y02B10/40 , Y02B10/70 , Y02B30/125 , Y02B30/52 , Y02E10/12 , Y10T137/85954
摘要: An excavationless geothermal system for heating and cooling applications includes a potable water storage container that receives water from a water supply through a supply line and a reversible water meter. The water in the storage container is circulated through a heat pump, and when the temperature of the water in the container is increased or decreased by the heat pump, the water is returned to the supply through the reversible meter.
摘要翻译: 用于加热和冷却应用的无挖掘地热系统包括通过供应管线和可逆水表从水源接收水的饮用水储存容器。 储存容器中的水通过热泵循环,并且当通过热泵使容器中的水的温度升高或降低时,通过可逆计量器将水返回供给。
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公开(公告)号:US20100204837A1
公开(公告)日:2010-08-12
申请号:US12666792
申请日:2008-06-18
申请人: Jan Rybon
发明人: Jan Rybon
CPC分类号: F24F5/0096 , F24F5/0017 , F24F5/0089 , F24F5/0092 , F24F2005/006 , Y02E60/147
摘要: Climate control system for the rooms of buildings, where the air is treated by cooling, wherein a cooling tank (2) is in the upper part of the room to be cooled and is connected to water consumers (6).
摘要翻译: 用于通过冷却处理空气的建筑物的房间的气候控制系统,其中冷却箱(2)位于要冷却的房间的上部,并与水消耗器(6)连接。
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公开(公告)号:US06688129B2
公开(公告)日:2004-02-10
申请号:US10208823
申请日:2002-08-01
申请人: Ronald S Ace
发明人: Ronald S Ace
IPC分类号: F25D2312
CPC分类号: F24F5/0046 , F24D3/08 , F24D11/0214 , F24D2200/115 , F24D2200/12 , F24D2200/14 , F24D2200/20 , F24D2220/08 , F24F2005/006 , F24H2240/10 , F24T10/10 , F25B30/06 , Y02B10/20 , Y02B10/40 , Y02B10/70 , Y02B30/125 , Y02B30/52 , Y02E10/12 , Y10T137/85954
摘要: An excavationless geothermal system for heating and cooling applications includes a potable water storage container that receives water from a water supply through a supply line and a reversible water meter. The water in the storage container is circulated through a heat pump, and when the temperature of the water in the container is increased or decreased by the heat pump, the water is returned to the supply through the reversible meter.
摘要翻译: 用于加热和冷却应用的无挖掘地热系统包括通过供应管线和可逆水表从水源接收水的饮用水储存容器。 储存容器中的水通过热泵循环,并且当通过热泵使容器中的水的温度升高或降低时,通过可逆计量器将水返回供给。
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公开(公告)号:US09631826B2
公开(公告)日:2017-04-25
申请号:US14647510
申请日:2012-12-11
CPC分类号: F24F5/001 , F24D11/0214 , F24D19/1039 , F24F5/0096 , F24F2005/006 , F25B13/00 , F25B49/02 , F25B2313/003 , F25B2313/006 , F25B2313/0231 , F25B2313/0232 , F25B2313/0233 , F25B2313/0272 , F25B2313/02741 , F25B2400/13 , F25B2400/23 , F25B2600/2501 , Y02B30/125
摘要: The controller controls a bypass solenoid valve and hot-water supply expansion unit in a defrosting operation based on a refrigerant temperature detected by a first temperature sensor and a heat medium temperature detected by a second temperature sensor.
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公开(公告)号:US5692247A
公开(公告)日:1997-12-02
申请号:US736488
申请日:1996-10-24
申请人: Peter John Ward
发明人: Peter John Ward
CPC分类号: F04D25/04 , E03D9/04 , F01D1/32 , F03B13/00 , F24F2005/006
摘要: The disclosure herein describes an apparatus for recovering kinetic energy in a free flowing water stream and converting it into useful energy; it comprises a body (22) immerged in a stream, the body defining a duct having an intake side (26) and a discharge side (27). The discharge side is equipped with a deflector (30) which flares outwardly for obstructing the flow of water around the duct to thereby create a negative pressure drag on water being impelled as it is being discharged from the duct. The deflectors flare outwardly at an angle varying from 75.degree. to 160.degree. as measured from the longitudinal axis of the duct.
摘要翻译: 本文的公开内容描述了一种用于在自由流动的水流中回收动能并将其转化为有用能量的装置; 它包括浸入流中的本体(22),该主体限定具有进气侧(26)和排出侧(27)的管道。 排放侧配备有向外张开的偏转器(30),用于阻塞管道周围的水流,从而在水被从管道排出时产生负压阻力。 从导管的纵向轴线测量,偏转器以从75°至160°的角度向外张开。
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公开(公告)号:US20150376031A1
公开(公告)日:2015-12-31
申请号:US14318576
申请日:2014-06-27
发明人: Sean James
CPC分类号: C02F1/16 , C02F1/02 , C02F2101/30 , C02F2103/023 , C02F2209/02 , C02F2303/04 , F24F5/0035 , F24F5/0046 , F24F2005/006
摘要: Waste heat generated by devices as a byproduct of their operation is utilized to increase and maintain the temperature of non-potable water to neutralize biological contaminants, thereby rendering such water potable. The potable water can then be utilized for evaporative cooling of the devices. A temperature sensor monitors the temperature of the non-potable water and a controller controls the pump to provide sufficient time for the water to remain in the heat exchanger above a predetermined temperature to neutralize biological contaminants and render such water potable. To the extent that different devices generate different quantities and intensities of waste heat, multiple heat exchangers are utilized, with lower intensity waste heat serving to preheat the water and, thereby, reduce the amount of time needed to reach the target temperature in a primary heat exchanger. Waste heat not utilized to generate potable water can be utilized for other heat-driven processes.
摘要翻译: 由作为其操作的副产物的装置产生的废热用于增加和保持非饮用水的温度以中和生物污染物,从而使这种饮用水。 然后可以将饮用水用于装置的蒸发冷却。 温度传感器监测非饮用水的温度,并且控制器控制泵以提供足够的时间以使水保持在热交换器中高于预定温度以中和生物污染物并使这种饮用水。 在不同装置产生不同数量和废热强度的情况下,使用多个热交换器,具有较低强度的废热用于预热水,从而减少在一次热中达到目标温度所需的时间 交换机。 不用于产生饮用水的废热可用于其他热驱动过程。
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公开(公告)号:US20150308700A1
公开(公告)日:2015-10-29
申请号:US14647510
申请日:2012-12-11
IPC分类号: F24F5/00
CPC分类号: F24F5/001 , F24D11/0214 , F24D19/1039 , F24F5/0096 , F24F2005/006 , F25B13/00 , F25B49/02 , F25B2313/003 , F25B2313/006 , F25B2313/0231 , F25B2313/0232 , F25B2313/0233 , F25B2313/0272 , F25B2313/02741 , F25B2400/13 , F25B2400/23 , F25B2600/2501 , Y02B30/125
摘要: The controller controls a bypass solenoid valve and hot-water supply expansion unit in a defrosting operation based on a refrigerant temperature detected by a first temperature sensor and a heat medium temperature detected by a second temperature sensor.
摘要翻译: 控制器基于由第一温度传感器检测到的制冷剂温度和由第二温度传感器检测到的热介质温度进行除霜操作,控制旁路电磁阀和热水供给膨胀单元。
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公开(公告)号:US20230235908A1
公开(公告)日:2023-07-27
申请号:US17581567
申请日:2022-01-21
发明人: Jack Lakunishok
IPC分类号: F24F11/46 , F24F5/00 , F24F11/875 , F24F11/63
CPC分类号: F24F11/46 , F24F5/0046 , F24F11/875 , F24F11/63 , F24F2005/006 , F24F2110/12
摘要: A thermal energy exchange and ventilated hollow core slab system and method within a building where the slab has an air passage with an inlet and outlet, an air handler unit having adjustable heating/cooling structure and, and ventilation structure connected to the hollow core concrete slab, and a building control connected to the hollow core concrete slab and air handler system for relative thermal exchange between the air and hollow core concrete slab to control user comfort; where the building is grid enabled.
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公开(公告)号:US09869476B1
公开(公告)日:2018-01-16
申请号:US15014420
申请日:2016-02-03
CPC分类号: F24H3/08 , F24F5/0046 , F24F2005/006 , F24H3/06
摘要: A temporary or emergency heating and cooling apparatus and method for use in households without electrical power, but still supplied with water pressure and hot water, and with water discharge to a suitable open-loop discharge location such as a sewer or drain field. The apparatus in a preferred form comprises a water-powered fan adapted to be temporarily connected to a household cold water tap, a radiator thermally coupled to the fan flow path for heat transfer and supplied with either hot or cold water from a household tap, and a water discharge connection from the water-powered fan and the radiator to a household discharge or drain.
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公开(公告)号:US20170248333A1
公开(公告)日:2017-08-31
申请号:US15183297
申请日:2016-06-15
IPC分类号: F24F5/00 , F24F13/30 , F24F1/00 , F24J3/08 , F28D15/00 , F28F27/02 , F28D21/00 , F28D9/00 , F24F11/00 , F25B30/00
CPC分类号: F24F5/0046 , F24F11/30 , F24F11/52 , F24F13/30 , F24F2005/0057 , F24F2005/006 , F24T10/00 , F25B30/06 , F25B2400/06 , F28D9/005 , F28D9/0075 , F28D15/00 , F28D21/0012 , F28F1/003 , F28F27/02 , F28F2230/00 , F28F2265/16 , F28F2265/20 , Y02B10/40 , Y02B30/566 , Y02E10/10
摘要: A geothermal heating and cooling system that uses a water source to provide a heat transfer medium is provided. Elements of the system may include a water source, one or more circulation loops coupled to the water source, a heat exchanger and/or heat pump, and/or a monitoring component configured to monitor for conditions within the system, including leak integrity and water quality.
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