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    • 1. 发明申请
    • CENTRALIZED HEAT AND HOT WATER SUPPLY SYSTEM
    • 集中热和热水供应系统
    • WO2011105881A3
    • 2013-06-20
    • PCT/LT2011000003
    • 2011-02-18
    • PAVLOVSKIJ GENADIJMARATKANOVAS DMITRIJUSJUCHNEVICIUS ARTURASGLUMBAKAS TOMAS
    • PAVLOVSKIJ GENADIJMARATKANOVAS DMITRIJUSJUCHNEVICIUS ARTURASGLUMBAKAS TOMAS
    • F24D3/08F24D1/00F24D10/00F24D11/02F24D19/10
    • F24D10/006F24D1/005F24D3/08F24D11/0207F24D11/0214F24D19/1072F24D2200/12F24D2200/13Y02B30/126Y02B30/16
    • The invention relates to the heating technology field and can be applied as a supplemental heat and hot water supply system for buildings connected to centralized heat supply. The proposed technical solution envisages employing a heat pump or another autonomous heat generator in a centralized heat and hot water supply system. Conjunction of heat pump or autonomous heat generator equipment with the existing centralized indoor heat supply scheme ensures an overall increase of the system heat energy generation due to alternate supply of heat to the building from an operating centralized heat supply system and from a heat pump or another autonomous heat generator. According to the proposed invention, the novelty of a centralized hot water and heat supply system, comprising the main circuit heat supply network, the set of pipes and equipment of a heat node, as well as the indoor hot water and heat supply system, consists in that a heat pump and (or) another autonomous heat generator comprise(s) an independent module that is connected to the main circuit pipeline supplying heat to the building and through a heat exchanger to hot water supply system of the building.
    • 本发明涉及加热技术领域,可作为与集中供热连接的建筑物的补热供热系统。 所提出的技术方案设想在集中的热和热水供应系统中使用热泵或另一个自主发电机。 热泵或自主发热设备与现有的集中式室内供热方案的结合确保了由于运行的集中供热系统和热泵或其他热交换器向建筑物交替供热而导致的系统热能产生的总体增加 自主发热机。 根据提出的发明,集中式热水供热系统的新颖性,包括主回路供热网络,热节点的管道和设备,以及室内热水供热系统,包括 因为热泵和(或)另一个自主发热器包括连接到主回路管道的独立模块,该主回路管道向建筑物供热,并通过热交换器连接到建筑物的热水供应系统。
    • 3. 发明申请
    • DEVICE FOR FAST SECTIONING
    • 快速分割设备
    • WO1994002775A1
    • 1994-02-03
    • PCT/SE1993000634
    • 1993-07-20
    • FLUDEX AB
    • FLUDEX ABGUSTAVSSON, Bror, Arne
    • F17D01/20
    • F24D10/006F17D1/20Y02E20/14
    • Arrangement for quick sectioning of a liquid or gas carrying pipe system having a forward pipe and a return pipe (F, R) respectively, which permits quick sectioning, i.e. arbitrary quick sectioning, to occur without water hammering arising in the forward pipe (F) or in the return pipe (R). The device consists of a regulating device (4, 5) in the pipe system's forward or return pipe and of fast closing sectioning valves (3) in the pipe system's forward and return pipes. The regulating device (1) continuously maintains the differential pressure at the sectioning location at substantially zero. In addition, a connecting conduit (2) arranged between the forward and return pipes in the pipe system is always open at the sectioning location. The flow in the connecting conduit is substantially zero during normal operating conditions.
    • 具有分别具有前管和回流管(F,R)的液体或气体输送管系统的快速分段的布置,其允许快速切片即即任意快速切片,在前管(F)中不产生水击, 或在回流管(R)中。 该设备由管道系统前进或回流管道中的调节装置(4,5)和管道系统前进和后退管道中的快速关闭分段阀(3)组成。 调节装置(1)将分段位置处的压差连续地维持在基本为零。 此外,布置在管道系统中的正向和返回管之间的连接管道(2)在分段位置处始终是敞开的。 在正常操作条件下,连接导管中的流量基本为零。
    • 4. 发明申请
    • HEATING SYSTEM
    • 加热系统
    • WO1996020375A1
    • 1996-07-04
    • PCT/GB1995002941
    • 1995-12-15
    • BRITISH GAS PLCGATAORA, Santokh, Singh
    • BRITISH GAS PLC
    • F24D10/00
    • F24D10/006F24D3/08F24D11/001
    • A water heating system for a number of apartments or offices (10 ) each having a water store (15) for receiving hot water from a common boiler (12). The system includes a temperature sensor (S2) for sensing the temperature of incoming water from the boiler, a valve (V1) between the temperature sensor (S2) and the water store (15). A further temperature sensor (S1) senses the temperature of water within the store (15) and an electronic controller (30) controls the flow of water via the valves (V1, V2) dependent on the temperature detected by both the first and second sensors to prevent water being received by the store when the temperature differential is too small. This avoids the risk of reduction of the water temperature within the store and meter (21) will not register utilisation under these circumstances as valve (V2) allows the return of the water other than via store (15).
    • 一种用于多个公寓或办公室(10)的供热系统,每个公寓或办公室(10)具有用于从普通锅炉(12)接收热水的储水箱(15)。 该系统包括用于感测来自锅炉的进入水的温度的温度传感器(S2),温度传感器(S2)和水存储器(15)之间的阀(V1)。 另一温度传感器(S1)感测储存器(15)内的水的温度,电子控制器(30)根据由第一和第二传感器检测到的温度经由阀(V1,V2)控制水流 以防止当温度差太小时商店接收水。 这避免了在商店内降低水温的风险,因为阀门(V2)允许除了经由储存器(15)之外的水返回,所以在这种情况下,仪表(21)将不会注册利用。
    • 5. 发明申请
    • CENTRAL HEATING SYSTEM AND WATER SYSTEM AND METHOD FOR CONTROLLING THE TIGHTNESS THEREOF
    • 中央加热系统和水系统及其控制方法
    • WO1987004520A1
    • 1987-07-30
    • PCT/DK1987000002
    • 1987-01-12
    • I.K. TRADING APSNIELSEN, Inge
    • I.K. TRADING APS
    • G01M03/26
    • F17D5/02F24D10/006G01M3/2807Y02E20/14Y10T137/7725
    • In order to control the tightness of a central heating system (10, 11), the system is provided with a flow meter (8, 9) and a valve (6, 7) in the flow (3) and return pipes (4), respectively. Hereby it becomes possible to monitor the liquid flow through the flow meters (8, 9) and in a control unit (15) to compare the signals from the flow meters (8, 9). When a certain limit value is exceeded, an electric motor on the inflow flow (6) is ordered to shut off the flow of water into the system (10, 11) and a signalling device (16), if any is activated. In order to be able to control the water flow and the tightness of a water system (Fig. 3), the branch pipe (3) is connected to a motor valve (6) and a flow meter (8), before the water is led the water pipe (10) of the building. The flow meter (8) gives electrical signals to an electronic control unit (15, 18) which compares the electric signals being proportional to the water flow with the pre-determined limits, and when the flow is in excess of the upper limit and/or below the lower limit, a signal is immediately given to the motor valve (6), which will shut off the water flow in the system.
    • 为了控制中央加热系统(10,11)的紧密度,系统在流(3)和回流管(4)中设置有流量计(8,9)和阀(6,7) , 分别。 由此,可以监视通过流量计(8,9)和控制单元(15)的液体流量,以比较来自流量计(8,9)的信号。 当超过一定的极限值时,排出流入流(6)上的电动马达,以便切断进入系统(10,11)的水流和一个信号装置(16)(如果有的话)。 为了能够控制水流量和水系统的紧密度(图3),分支管道(3)连接到电动阀(6)和流量计(8),在水是 带领建筑物的水管(10)。 流量计(8)向电子控制单元(15,18)提供电信号,电子控制单元(15,18)将与水流成比例的电信号与预定限度进行比较,并且当流量超过上限和/ 或低于下限,立即给予电动阀(6)的信号,这将关闭系统中的水流。
    • 6. 发明申请
    • METHOD AND DEVICE FOR CONTROLLED HEAT TRANSMISSION FROM A PRIMARY STEAM CIRCUIT TO A HEAT CONSUMER
    • 用于从主蒸汽回路到热消耗器的控制传热的方法和装置
    • WO1981003680A1
    • 1981-12-24
    • PCT/DE1981000093
    • 1981-06-19
    • BAELZ H
    • F01K17/02
    • F01K17/02F24D10/006
    • According to the method for the controlled transmission of heat from a primary steam circuit (010), the supply (04) of the consumer (2) is effected at a certain pressure whereas the return (02) is at a lower pressure. In order to allow the steam pressure of the steam circuit to be used and thus to obtain the driving power for the supply (04) of the consumer during the heat transmission from the primary steam circuit (010) to the heat consumer, the steam taken from the steam circuit (010) is cooled to condensation according to the heat consumption of the consumer (2), by drawing off heat by means of a secondary medium and by maintaining a certain overpressure with respect to the supply pressure of the consumer. Then, the overpressure is reduced in a jet pump (8) to the supply pressure by producing the driving power for the supply (04), and the secondary medium heated by the cooling of the steam is mixed with the supply.
    • 根据用于从主蒸汽回路(010)控制传热的方法,消费者(2)的供应(04)在一定压力下进行,而回流(02)处于较低的压力。 为了允许蒸汽回路的蒸汽压力被使用,并且因此获得用于在从主蒸汽回路(010)到热消耗器的热传递期间消耗者的供给(04)的驱动力,所采用的蒸汽 蒸汽回路(010)根据消费者(2)的热量消耗冷却至冷凝,通过借助于二次介质抽出热量,并相对于消费者的供给压力保持一定的过压。 然后,通过产生用于供给(04)的驱动力将喷射泵(8)中的过压减少到供给压力,并且通过蒸汽的冷却加热的二次介质与供给混合。
    • 8. 发明申请
    • THERMAL ENERGY NETWORK
    • 热能网络
    • WO2015104392A2
    • 2015-07-16
    • PCT/EP2015/050361
    • 2015-01-09
    • GREENFIELD MASTER IPCO LTD
    • ZAYNULIN, DmitriyARDIS, MichaelSTICKNEY, KevinDAVIS, GregoryLEIPER, AlbanHAYES, John
    • F24D10/00
    • F24D10/003E03B7/02E03B7/07F24D10/006F24D19/1015F24D2200/11Y02B10/40Y02E20/14
    • A district energy network interconnecting a plurality of thermal loads and for redistributing thermal energy therebetween, the network comprising: a primary circuit loop for working fluid, at least two thermal loads thermally connected to the primary circuit loop, at least one of the thermal loads being capable of taking heat from the primary circuit loop and at least one of the thermal loads being capable of rejecting heat into the primary circuit loop, an energy centre connected to the loop and capable of acting as a heat source or a heat sink, and a control system adapted to provide to the primary circuit loop a positive or negative thermal input from the energy centre as a balancing thermal input to compensate for net thermal energy lost to or gained from the at least two thermal loads by the primary circuit loop.
    • 一种区域能量网络,其互连多个热负荷并且在其间重新分配热能,所述网络包括:用于工作流体的主回路回路,热连接到所述主回路回路的至少两个热负荷,所述热负荷中的至少一个为 能够从主回路回路获得热量,并且热负荷中的至少一个能够将热量排斥到主回路回路中,连接到回路并能够用作热源或散热器的能量中心,以及 控制系统适于向主回路提供来自能量中心的正或负热输入作为平衡热输入,以补偿由主回路回路从至少两个热负荷损失或从其获得的净热能。
    • 9. 发明申请
    • CENTRALIZED HEAT AND HOT WATER SUPPLY SYSTEM
    • 集中热和热水供应系统
    • WO2011105881A2
    • 2011-09-01
    • PCT/LT2011/000003
    • 2011-02-18
    • PAVLOVSKIJ, GenadijMARATKANOVAS, DmitrijusJUCHNEVIČIUS, ArtūrasGLUMBAKAS, Tomas
    • PAVLOVSKIJ, GenadijMARATKANOVAS, DmitrijusJUCHNEVIČIUS, ArtūrasGLUMBAKAS, Tomas
    • F24D10/00
    • F24D10/006F24D1/005F24D3/08F24D11/0207F24D11/0214F24D19/1072F24D2200/12F24D2200/13Y02B30/125Y02B30/16
    • The invention relates to the heating technology field and can be applied as a supplemental heat and hot water supply system for buildings connected to centralized heat supply. The proposed technical solution envisages employing a heat pump or another autonomous heat generator in a centralized heat and hot water supply system. Conjunction of heat pump or autonomous heat generator equipment with the existing centralized indoor heat supply scheme ensures an overall increase of the system heat energy generation due to alternate supply of heat to the building from an operating centralized heat supply system and from a heat pump or another autonomous heat generator. According to the proposed invention, the novelty of a centralized hot water and heat supply system, comprising the main circuit heat supply network, the set of pipes and equipment of a heat node, as well as the indoor hot water and heat supply system, consists in that a heat pump and (or) another autonomous heat generator comprise(s) an independent module that is connected to the main circuit pipeline supplying heat to the building and through a heat exchanger to hot water supply system of the building.
    • 本发明涉及加热技术领域,可作为与集中供热连接的建筑物的补热供热系统。 所提出的技术方案设想在集中式热水供热系统中采用热泵或其他自主发电机。 热泵或自主发热设备与现有的集中式室内供热方案的结合确保了由于运行的集中供热系统和热泵或其他热交换器向建筑物交替供热而导致的系统热能产生的总体增加 自主发电机。 根据所提出的发明,集中式热水供热系统的新颖性,包括主回路供热网络,热节点的一套管道和设备,以及室内热水供热系统,包括 因为热泵和(或)另一个自主发电机包括连接到主回路管道的独立模块,该主回路管道向建筑物供热,并通过热交换器连接到建筑物的热水供应系统。
    • 10. 发明申请
    • FLUSHING BYPASS SYSTEM
    • 冲刷旁路系统
    • WO2018037216A1
    • 2018-03-01
    • PCT/GB2017/052465
    • 2017-08-21
    • CALLAWAY, Gordon
    • CALLAWAY, Gordon
    • F24D10/00F24D19/00B01D46/00B08B9/032E03B7/07F16L55/24
    • F24D10/006B01D35/28B01D46/0017E03B7/07F16L41/00F24D10/00F24D19/0092F24D19/082Y02B30/17
    • A flushing bypass system, particularly for use in a district or communal heating system, has a primary circuit (2) capable of supplying heat to a secondary circuit (10), the secondary circuit normally supplying heating through radiators (11) and/or hot water from tank (14) for occupants. The primary circuit has a furcated strainer (3) upstream from at least one heat exchanger and a limb of the furcated strainer is connected to a heat exchanger bypass assembly. The bypass assembly comprises a valve (21), which may be a timer valve, a manual valve or a smart valve, having an input (20) connected to the furcated strainer and an output (24) connected back into the primary circuit downstream of the heat exchanger. When the valve (21) is closed fluid passes through the furcated strainer to the heat exchanger and when the valve is open, fluid bypasses the heat exchanger and flushes contaminants from the furcated strainer back to the primary circuit downstream of the heat exchanger.
    • 特别用于区域或公用供暖系统的冲洗旁路系统具有能够向次级回路(10)供热的初级回路(2),次级回路通常将加热通过 散热器(11)和/或来自水箱(14)的用于居住者的热水。 主回路在至少一个热交换器的上游具有分叉过滤器(3),并且分叉过滤器的分支连接到热交换器旁路组件。 旁路组件包括阀门(21),该阀门可以是定时阀,手动阀或智能阀,具有连接到分叉滤网的输入端(20)和连接到主回路下游的输出端(24) 换热器。 当阀21关闭时,流体通过分叉过滤器到达热交换器,并且当阀打开时,流体绕过热交换器并将污染物从分叉过滤器冲回到热交换器下游的主回路。 p>