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    • 2. 发明申请
    • HEAT SUPPLY SYSTEM AND HEAT SUPPLY METHOD
    • 供热系统,供热方法
    • WO2013091892A3
    • 2013-10-24
    • PCT/EP2012005338
    • 2012-12-21
    • AZ POKORNY TRADE S R O
    • CHYTIL LUBOR
    • F24D19/10F24D11/00
    • F24D11/003F24D3/18F24D11/005F24D11/0221F24D19/1045F24D19/1048F24D2200/08F24D2200/14F24D2200/18F24D2200/26F24D2200/32F24D2220/08Y02B10/20Y02B10/70Y02B30/126Y02B30/52
    • The invention relates to a heat supply system comprising a first conduit loop in which a heat generator and at least one heat consumer are arranged, a second conduit loop which can be connected to the first conduit loop and which includes at least one storage element and a pump arrangement for charging and discharging the storage element, and a third conduit loop that includes in particular a heat sink, by means of which low-inertia heat quantities can be transferred from external heat sources to the medium circulating in the conduit loops. According to the invention, the heat sink is a highly effective heat exchanger that has no or merely a small storage volume. The heat supply method is devised such that the available heat quantities are extracted mainly from the heat sink, any excess heat quantity is stored in the storage element, and the heat generator in the first conduit loop is off whenever possible.
    • 本发明涉及一种具有一个第一管电路,其中热发生器和至少一个热消耗布置,第二,连接到第一管电路,其包含至少一个存储器元件和用于充电和放电的存储元件和一个第三线回路中的泵组件的热供应系统 特别是,包括一散热器,可以接管的热惯性量从外部热源在线路循环圆平台。 散热器是不具有一个非常有效的热交换器或仅少量的存储卷。 该热供给方法被配置成使得热量可用量被去除主要的散热器,其中,剩余的存储在存储元件中被执行并且设置在所述第一管电路发热如果可能不能投入运行的。
    • 3. 发明申请
    • HEAT SUPPLY SYSTEM AND HEAT SUPPLY METHOD
    • 供热系统,供热方法
    • WO2013091892A4
    • 2014-01-23
    • PCT/EP2012005338
    • 2012-12-21
    • AZ POKORNY TRADE S R O
    • CHYTIL LUBOR
    • F24D19/10F24D11/00
    • F24D11/003F24D3/18F24D11/005F24D11/0221F24D19/1045F24D19/1048F24D2200/08F24D2200/14F24D2200/18F24D2200/26F24D2200/32F24D2220/08Y02B10/20Y02B10/70Y02B30/126Y02B30/52
    • The invention relates to a heat supply system comprising a first conduit loop in which a heat generator and at least one heat consumer are arranged, a second conduit loop which can be connected to the first conduit loop and which includes at least one storage element and a pump arrangement for charging and discharging the storage element, and a third conduit loop that includes in particular a heat sink, by means of which low-inertia heat quantities can be transferred from external heat sources to the medium circulating in the conduit loops. According to the invention, the heat sink is a highly effective heat exchanger that has no or merely a small storage volume. The heat supply method is devised such that the available heat quantities are extracted mainly from the heat sink, any excess heat quantity is stored in the storage element, and the heat generator in the first conduit loop is off whenever possible.
    • 本发明涉及一种具有一个第一管电路,其中热发生器和至少一个热消耗布置,第二,连接到第一管电路,其包含至少一个存储器元件和用于充电和放电的存储元件和一个第三线回路中的泵组件的热供应系统 特别是,包括一散热器,可以接管的热惯性量从外部热源在线路循环圆平台。 散热器是不具有一个非常有效的热交换器或仅少量的存储卷。 该热供给方法被配置成使得热量可用量被去除主要的散热器,其中,剩余的存储在存储元件中被执行并且设置在所述第一管电路发热如果可能不能投入运行的。