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    • 3. 发明申请
    • Heating or Cooling System Featuring a Split Buffer Tank
    • 加热或冷却系统具有分流缓冲罐
    • US20120067300A1
    • 2012-03-22
    • US12887141
    • 2010-09-21
    • Denering Berrio
    • Denering Berrio
    • F24H9/20F24H9/02
    • F24D11/004F24D11/0228F24D2200/11F24D2200/12F24H9/124F28D20/0039F28D2020/0095Y02B10/40Y02B10/70Y02B30/125Y02E60/142
    • This invention relates to a heating/cooling system operating on the basis of a novel SPLIT BUFFER TANK; representing an efficiency improvement alternative to HVAC systems functioning with existing commercial buffer tanks. Currently, commercial buffers have the heat source provider (HSP)-return and system-return discharging to a common buffer/vessel. Novel SPLIT BUFFER is provided with a SEPARATION DISK placed inside the tank as mechanical way of separating the hot water inflow from the HSP from the warmer water inflow from system return. The disk moves up and down along the tank driven by demanded water supply and return. Pump-1 circulates hot water from the hot section of the buffer to the secondary system claiming for heat. Pump-2 circulates warmer water from the warmer section of the buffer through the HSP where it is reheated, and subsequently stored in the hot section of the buffer to reinitiate this cycle again.
    • 本发明涉及一种以新型SPLIT BUFFER TANK为基础运行的加热/冷却系统; 代表了与现有商业缓冲罐运行的HVAC系统的效率提升方案。 目前,商业缓冲器具有热源提供者(HSP) - 向公共缓冲器/容器返回和系统返回放电。 新型分体式缓冲器配有一个分隔盘,作为将热泵入口与热泵的热水从系统返回的较热水分离出来的机械方式。 磁盘沿着由需求供水和返回驱动的水箱上下移动。 泵1将热水从缓冲器的热部循环到要求加热的二次系统。 泵2将较热的水从缓冲器的较暖部分循环通过HSP再次加热,随后储存在缓冲器的热部分中以再次重新开始循环。
    • 5. 发明授权
    • Central heating method and plant
    • 中央供暖方式和厂房
    • US4542850A
    • 1985-09-24
    • US474575
    • 1983-02-22
    • Chevalier Gilbert
    • Chevalier Gilbert
    • F24D11/02F23N1/08F25B27/02
    • F24D11/0228Y02B10/70Y02B30/126
    • The invention relates to a method and a plant for the central heating of a building provided with at least one thermodynamic machine such as a heat pump or a refrigerating machine. The method is characterized in that, without affecting the normal operation of the thermodynamic machine, during the heating period:when the temperature of the heat transfer fluid in the exchanger-accumulator tank reaches a certain threshold, the conduits via which the auxiliary boiler is connected to the circuit supplying the exchanger network are isolated and the return of this circuit to the tank is released while, on the other hand, when the temperature of the heat transfer fluid in the exchanger-accumulator tank drops below a certain threshold, the return to the exchanger-accumulator tank of the circuit supplying the exchangers is cut off and the auxiliary boiler whose discharge and return conduits are connected to the circuit is actuated.
    • PCT No.PCT / FR82 / 00100 Sec。 371日期1983年2月22日 102(e)日期1983年2月22日PCT Filed 1982年6月17日PCT公布。 公开号WO83 / 00063 日期1983年1月6日。本发明涉及一种用于建筑物的中央加热的方法和设备,该建筑物设置有至少一个热力学机器,例如热泵或制冷机。 该方法的特征在于,在加热期间不影响热力机的正常运行:当交换器 - 蓄液箱中的传热流体的温度达到一定阈值时,辅助锅炉连接的管道 向供应交换器网络的电路被隔离,并且释放该电路到罐的返回,而另一方面,当交换器 - 蓄电池中的传热流体的温度下降到某一阈值以下时,返回 切断供给交换器的回路的交换器 - 蓄液箱,并且启动排放和返回管道连接到回路的辅助锅炉。