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    • 3. 发明授权
    • Heating unit
    • 加热单元
    • US4412651A
    • 1983-11-01
    • US371824
    • 1982-04-26
    • John E. Webster, Jr.
    • John E. Webster, Jr.
    • F24H7/02F24C9/00
    • F24H7/02
    • A space heating unit comprises a pump forcing a working fluid such as a heavy synthetic oil through a shearing means to effect working and consequent heating thereof. The thus heated working fluid is passed through a heat exchanger to warm air circulating therethrough. The space heater is designed to operate cyclically with the heat exchanger and thus the working fluid being maintained at a minimum operating temperature by means of a heat store in heat exchange contract with at least a portion of the heat exchanger. The heat store contains for example a eutectic mixture of salts which undergo a phase change at about the minimum operating temperature desired for the working fluid. The heat store removes and stores heat energy from the unit when it is operating and returns its heat energy to the unit when the unit is in its at-rest mode, thereby maintaining the temperature of the unit and of the working fluid for the next cycle.
    • 空间加热单元包括泵,其通过剪切装置迫使诸如重合成油的工作流体进行加工和随后的加热。 如此加热的工作流体通过热交换器以加热从其中循环的空气。 空间加热器设计成与热交换器循环操作,因此通过与至少一部分热交换器的热交换收缩的热存储将工作流体保持在最低工作温度。 热存储器包含例如在约工作流体所需的最小工作温度下经历相变的盐的共晶混合物。 热存储器在运行时从设备中移除和存储热能,并在单元处于静止模式时将其热能返回到单元,从而在下一个循环中保持单元和工作流体的温度 。
    • 4. 发明授权
    • Apparatus for production of hot water
    • 热水生产设备
    • US4347972A
    • 1982-09-07
    • US120911
    • 1980-02-12
    • Bjorn HillerstromLennarth FranssonArne Thuvander
    • Bjorn HillerstromLennarth FranssonArne Thuvander
    • F24H1/00F24D17/00F24H1/22F24H7/02F24H9/20F28F27/00F24D3/08
    • F24H7/02F24D17/00F24H9/2007
    • An apparatus for producing hot water. A heat exchanger has a primary circuit which receives water from a hot water source and delivers the spent water back to the source. A secondary circuit through the heat exchanger receives unheated water and delivers it as hot tap water. A pump is connected in the line between the hot water source and the primary circuit of the heat exchanger, and a shunt bypass is connected in parallel with the series comprising the pump and the primary circuit of the heat exchanger. A sensing means such as a temperature sensing means senses the commencement of water flow through the secondary circuit and in response thereto operates the pump. Another temperature sensing means measures the temperature downstream from the primary circuit and in response thereto controls the distribution of fluid downstream from the primary circuit of the heat exchanger as between the shunt and the return line to the hot water source.
    • 一种生产热水的设备。 热交换器具有从热水源接收水并将废水返回到源的初级回路。 通过热交换器的二次回路接收未加热的水并将其作为热自来水输送。 泵在热水源和热交换器的主回路之间的管路中连接,并且分流旁路与包括泵和热交换器的主回路的系列并联连接。 诸如温度检测装置的感测装置检测通过次级回路的水流的开始,并响应于此操作泵。 另一个温度感测装置测量主回路下游的温度,并且响应于此控制在热交换器的主回路下游的流体分布,如在分流器和返回管线之间的热水源。
    • 5. 发明公开
    • ENERGY STORAGE ARRANGEMENT AND INSTALLATIONS
    • US20240102696A1
    • 2024-03-28
    • US18275981
    • 2022-02-07
    • OCTOPUS ENERGY HEATING LIMITED
    • Peter Konowalczyk
    • F24H15/414F24D19/10F24H7/02F24H15/152F24H15/164F24H15/262
    • F24H15/414F24D19/1066F24H7/02F24H15/152F24H15/164F24H15/262F24D2200/12F24D2200/14F24D2220/042
    • There is provided a hot water supply system including: a controllable hot water supply outlet having when fully opened a given flowrate; a thermal energy store, containing an energy storage medium comprising a phase change material to store energy as latent heat, that is configured to receive energy from a source of renewable energy; a renewable energy source; the hot water supply system being operable, under the control of the processor, to heat water that is to be supplied to the hot water outlet to a target system supply temperature using a selection of one or more of the renewable energy source, energy from the thermal energy store, and optionally an auxiliary water heater intermediate the thermal energy store and the hot water supply outlet; wherein the thermal energy store has an energy storage capacity, when fully charged, that is sufficient to provide hot water to the hot water outlet, at the given flowrate, and at the target system supply temperature for a period of at least 8 minutes, and preferably at least 10 minutes; wherein the renewable energy source is also configured to provide building heating under control of the processor; the processor being configured to: monitor actual demand for hot water from the hot water supply system; predict future demand for hot water from the hot water supply system based on the monitored actual demand; pre-charge the thermal energy store so that sufficient energy will be stored in the thermal energy store to satisfy the predicted demand; and to temporarily divert heat from the renewable energy source to charge the phase change material rather than to provide building heating. A corresponding method is also provided.