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    • 11. 发明申请
    • HYDRONIC INTERFACE SYSTEM, METHOD AND APPARATUS
    • HYDRONIC接口系统,方法和设备
    • WO1996009577A1
    • 1996-03-28
    • PCT/US1994010669
    • 1994-09-20
    • KRIST, Gene, D.
    • G05D23/00
    • F24D10/006F25D17/02G05D23/13G05D23/1919
    • A method and apparatus for coupling a primary loop (20) with a secondary loop (40) for circulating processing fluids therebetween comprising in combination: a first connection for the feed line of the primary loop and a second connection for the return line of the primary loop (20); a third connection for the feed line of the secondary loop and a fourth connection for the return line of the secondary loop (40); a crossover line (190) coupling the four connections; first valve means (146) for controlling the flow through the secondary loop; first sensor means responsive to the temperature associated with the secondary loop to control the first valve means (146); second valve means (144) in the path of flow through the crossover line; and second sensor means (194) responsive to the flow of the process fluid across the crossover line (190) to control the second valve means (144).
    • 一种用于将主回路(20)与用于在其间循环处理流体的次级回路(40)耦合的方法和装置,其包括组合的:用于主回路的进料管线的第一连接和用于主回路的回流管线的第二连接件 循环(20); 用于所述次级回路的馈电线的第三连接和用于所述次级回路(40)的返回线的第四连接。 耦合所述四个连接的交叉线(190); 用于控制通过次级回路的流量的第一阀装置(146) 第一传感器装置响应于与次级回路相关联的温度来控制第一阀装置(146); 第二阀装置(144)在通过交叉线的流动路径中; 和第二传感器装置(194),其响应于过程流体跨越交叉管线(190)的流动,以控制第二阀装置(144)。
    • 12. 发明申请
    • JET PUMP, PARTICULARLY FOR HOT WATER HEATING OR HOT WATER PREPARATION INSTALLATIONS COMPRISING THE MIXTURE WITH THE WATER RETURN
    • 喷水机,特别用于热水加热或热水制备装置,包括与水返回的混合物
    • WO1983000196A1
    • 1983-01-20
    • PCT/DE1982000125
    • 1982-06-12
    • BÄLZ, HelmutEHRHARDT, Gerd
    • BÄLZ, Helmut
    • F04F05/10
    • F04F5/461F04F5/10F24D10/006
    • The jet pump comprises an injection head connected to a casing provided in the collector nozzle and a mixer tube adjacent to the nozzle and coaxial to the propulsion nozzle. The mixer tube is connected to a second line, optionally by means of a diffuser. The mixer tube extends through a chamber into which at least a third line opens, said third line being directed transversally to the mixer tube. In order to decrease the noise and to obtain a higher efficiency, the mouth piece (20, 21) of the third line and optionally of a fourth line (18, 19) is laterally spaced from the propulsion nozzle (10). An elongated annular channel (22), surrounding the mixer tube (14), is part of the casing and is arranged between the mouth pieces (20, 21) and the propulsion nozzle (10).
    • 喷射泵包括连接到设置在收集器喷嘴中的壳体的喷射头和与喷嘴相邻并与推进喷嘴同轴的混合器管。 混合器管可选地通过扩散器连接到第二条线。 混合器管延伸穿过其中至少第三条线打开的室,所述第三条线横向地指向混合器管。 为了降低噪音并获得更高的效率,第三线的口部件(20,21)和任选的第四线(18,19)与推进喷嘴(10)横向间隔开。 围绕混合管(14)的细长环形通道(22)是壳体的一部分,并且布置在口件(20,21)和推进喷嘴(10)之间。
    • 15. 发明申请
    • UNIT FOR DISTRIBUTING FLUIDS
    • 分配流体单位
    • WO2014167505A1
    • 2014-10-16
    • PCT/IB2014/060549
    • 2014-04-09
    • FERRERO, Riccardo
    • FERRERO, Riccardo
    • F24H9/02F24H9/14F24D3/10F24D3/08F24D10/00
    • F24H9/02F24D3/087F24D3/1058F24D3/1066F24D10/006F24H9/142F24H9/2007
    • Unit for distributing fluids (10, 10a, 10b), comprising a main housing (12) which encloses within itself a supply pipe (14) comprising an inflow segment (20) arranged to be connected, at its inlet, to a pressurized sanitary water source and a first distribution segment (22) intended to deliver cold sanitary water; a sanitary heated water supply pipe (11) comprising a second inflow segment (27) arranged to be connected, at its inlet, with a source of heated sanitary water under pressure and a second distribution segment (24) intended to deliver heated sanitary water; a heating circuit (16) comprising a delivery segment (28) arranged for being hydraulically connected, at its inlet, to a pressurized heat carrier fluid source, and a return segment (30) arranged for being hydraulically connected, at its outlet, to the heat carrier fluid source; an inner housing (26) made of thermally insulating material and enclosed within said main housing (12); said inner housing (26) enclosing within itself said sanitary heated water supply pipe (11) and said heating circuit (16), while leaving outside said first distribution segment (22) and at least the portion of said inflow segment (20) which is located upstream of said first distribution segment (22); said unit (10, 10a, 10b) further comprising a recirculation circuit (71) with a regulator valve (72) connected, at its inlet, to the second inflow segment (27) and hydraulically connected, at its outlet, to the pressurized heat carrier fluid source.
    • 用于分配流体(10,10a,10b)的单元包括主壳体(12),该主壳体在其内部包围供应管道(14),该供应管道(14)包括在其入口处被布置成连接到加压卫生水 来源和第一个分配段(22),用于提供冷水卫生水; 卫生加热水供应管道(11),包括第二流入段(27),其被布置成在其入口处与压力下的加热卫生水源连接,以及用于输送加热的卫生水的第二分配段(24); 一个加热回路(16),包括一个输送部分(28),该输送部分(28)被布置成在其入口处液压连接到一个加压的热载体流体源,以及一个返回部分(30),其被布置成在其出口处液压连接到 热载体流体源; 由绝热材料制成并封闭在所述主壳体内的内壳体; 所述内壳体(26)在其内部包围卫生加热供水管道(11)和所述加热回路(16),同时离开所述第一分配段(22)的外部,并且至少所述流入段(20)的部分是 位于所述第一分配段(22)的上游; 所述单元(10,10a,10b)还包括具有调节阀(72)的再循环回路(71),调节阀(72)在其入口处连接到第二流入段(27),并在其出口处液压连接到加压热 载体流体源。
    • 16. 发明申请
    • СИСТЕМА ОТОПЛЕНИЯ МНОГОЭТАЖНОГО ЗДАНИЯ
    • 多层建筑加热系统
    • WO2006091125A1
    • 2006-08-31
    • PCT/RU2006/000076
    • 2006-02-16
    • БРЕУС Валентин Сергеевич
    • БРЕУС Валентин Сергеевич
    • F24D3/02
    • F24D10/006F24D3/02
    • Изобретение относится к использованию тепловой энергии для отопления зданий, в частности, к однотрубным системам с принудительной циркуляцией теплоносителя. Система отопления многоэтажного здания включает подающую (1) и обратную (2) магистрали, сообщенные с ними соответственно подающие (3) и обратные (4) стояки, а также размещенные в помещениях (5) многоэтажного здания нагревательные элементы (6); часть нагревательных элементов (6) соединена только с подающими стояками (3), а остальные - только с обратными стояками (4), причем подающие (3) и обратные (4) стояки, к которым подключены нагревательные элементы (6), чередуются как по длине, так и по ширине здания. Технический результат - снижение энергозатрат на отопление и создание более комфортных условий в помещениях здания, благодаря выравниванию температуры воздуха по этажам в многоэтажном здании.
    • 本发明涉及使用热能来加热建筑物,特别是涉及具有强制热载体循环的单个主要系统。 用于加热多层建筑物的本发明的系统分别包括供应和返回管道,分别连接到其上的供应和返回立管以及位于多层建筑房间中的加热元件,其中所述加热元件的一部分连接到供应立管 ,剩余的加热元件仅连接到回流立管,并且加热元件连接到的供应和返回立管沿建筑物的长度和宽度交替布置。 所述发明可以减少加热的能量消耗,并且由于通过多层建筑的楼层进行空气温度均衡,从而在建筑房间中提供更舒适的条件。
    • 17. 发明申请
    • HEAT DISSIPATION UNIT
    • 散热装置
    • WO1998026225A1
    • 1998-06-18
    • PCT/US1996019558
    • 1996-12-13
    • SWEITZER, Bruce, K., Jr.
    • F24F07/00
    • F24D19/1033F24D10/006G05D23/1934Y02B30/762
    • A heating system that allows independent control of the temperatures within different rooms in a building by independently controlling the flow of heating fluid to each room in response to a thermostat provided in each individual room. The output of the thermostat controls the operation of a three-way valve upstream of a radiator or convector in each room. When the room temperature is at or above the setpoint for that room, the valve operates to divert all heating fluid flow through a bypass pipe or shunt extending from the valve to the outlet of the radiator or convector. When the temperature drops below the setpoint, the valve operates to resume heating fluid flow through the radiator or convector while shutting off heating fluid flow through the bypass pipe. In another embodiment, independent control of room temperature in heated air distribution systems, is effected by thermostatically controlled louvers provided at the heated air register in each room. When the room temperature is at or above the setpoint for the particular room, the louvers shut off heated air flow to the room thereby preventing further heating of the room.
    • 一种加热系统,其能够通过独立地控制每个房间中加热流体的流量来响应于每个单独房间中提供的恒温器来独立地控制建筑物内不同房间内的温度。 恒温器的输出控制每个房间中散热器或对流器上游的三通阀的操作。 当室温处于或高于该房间的设定点时,阀门操作以将所有加热流体流经旁路管或从阀延伸到散热器或对流器的出口的分流器。 当温度下降到设定点以下时,阀门将通过散热器或对流器来恢复加热流体流动,同时关闭加热流经旁路管道的流体。 在另一个实施例中,通过在每个房间中的加热空气寄存器处提供的恒温控制百叶窗来实现对受热空气分配系统中的室温的独立控制。 当房间温度等于或高于特定房间的设定点时,百叶窗将加热的空气流通到房间,从而防止房间进一步加热。
    • 18. 发明申请
    • METHOD OF REGULATING A CENTRAL OR DISTRICT HEATING PLANT BY MEANS OF A DIFFERENTIAL PRESSURE VALVE, AND UNIT FOR WORKING METHOD
    • 通过差压阀调节中央或区域加热装置的方法,以及用于工作方法的装置
    • WO1990001657A1
    • 1990-02-22
    • PCT/DK1989000185
    • 1989-08-02
    • FRESE ARMATUR A/SMOESBY, Peter
    • FRESE ARMATUR A/S
    • F24D19/10
    • F24D10/006G05D7/0106G05D23/023Y02E20/14Y10T137/7722
    • The invention relates to a method for regulating a central heating plant for several rooms having a radiator (5) provided with a thermostat valve (6). The plant has a differential pressure valve (11, 111) placed downstream as compared to the radiators, with a closing device controlled by a membrane (23) for regulating the flow of heat carrying fluid in a passage (19) between an inlet (17) and an outlet (18). If the windows in several rooms are opened the thermostat valves (6) will open, whereupon the differential pressure valve should regulate the combined flow, which it cannot do since the pressure difference across the two surfaces of the membrane (23) is small even by full flow. This drawback is avoided by means of a differential pressure valve (11, 111) with an adjustable throttle (15) between the inlet (17) and the closing device (24, 25), and by adjusting the throttle, regardless of the pressure distribution, to allow the maximum amount of fluid to pass. The invention also relates to a single pipe and a double pipe central heating plant with the differential pressure valve (11, 111).
    • 本发明涉及一种用于调节具有设置有恒温阀(6)的散热器(5)的若干房间的中央加热设备的方法。 该设备具有与散热器相比放置在下游的差压阀(11,111),其中闭合装置由膜(23)控制,用于调节入口(17)内的通道(19)中的承载流体的流动 )和出口(18)。 如果几个房间中的窗户打开,恒温阀(6)将打开,因此差压阀应调节组合流量,由于膜(23)的两个表面之间的压力差甚至通过 全流。 通过在入口(17)和关闭装置(24,25)之间具有可调节节流阀(15)的差压阀(11,111)以及通过调节节气门而不管压力分布如何来避免这个缺点 ,以允许最大量的流体通过。 本发明还涉及具有差压阀(11,111)的单管和双管中央加热设备。