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    • 32. 发明申请
    • VORRICHTUNG ZUM VERTEILEN UND REGELN EINES VON EINER HEIZ- UND/ODER KÜHLQUELLE STAMMENDEN WÄRMETRÄGERS
    • 设备分发和规则与加热和/或冷却源产生热载体
    • WO2007101592A1
    • 2007-09-13
    • PCT/EP2007/001721
    • 2007-02-28
    • WILO AGSTRELOW, Günter
    • STRELOW, Günter
    • F24D3/10
    • F24D3/1066F24D3/1091F24D19/1024
    • Die Erfindung betrifft einen Vorrichtung zum Verteilen und Regeln eines von einer Heiz- und/oder Kühlquelle stammenden Wärmeträgers insbesondere Heiz- und/oder Kühlwasser, das Heiz- und/oder Kühlkörpern und/oder -flächen in Räumen eines Gebäudes zugeführt wird, wobei der Vorlauf der Heiz- und/oder Kühlquelle in einen Vorlaufraum mündet von dem die Vorläufe der Heiz- und/oder Kühlkörper und/oder - flächen abzweigen, dass die Rückläufe der Heiz- und/oder Kühlkörper und/oder - flächen in einen Rücklaufraum der Vorrichtung münden, von dem der Rücklauf der Heiz- und/oder Kühlquelle ausgeht, und dass in den Vor- und/oder Rückläufen der Heiz- und/oder Kühlkörper und/oder -flächen insbesondere jeweils eine geregelte dezentrale Pumpe angeordnet ist.
    • 本发明涉及一种设备,用于从加热分配和控制的始发和/或冷却源的热传递介质,尤其是加热和/或冷却水,加热和/或冷却被供给到建筑物的房间体和/或表面,其中,所述流 在进气腔室中的加热和/或冷却源通向所述加热的加热和/或冷却体和/或 - 岔开的表面,所述加热和/或冷却体和/或回流 - 面通到装置的返回室 从该加热和/或冷却源的返回熄灭,并且在每种情况下的加热和/或冷却体和/或特别是前向和/或返回管线一个分散控制的泵布置的区域。
    • 35. 发明申请
    • HEATING INSTALLATION AND METHOD RELATED THERETO
    • 加热安装和方法相关
    • WO2014060232A1
    • 2014-04-24
    • PCT/EP2013/070802
    • 2013-10-07
    • ALFA LAVAL CORPORATE ABALFA LAVAL HES
    • PERRIN, MatthieuJÖNSSON, RolfHELIN, PerOla
    • F24D12/02F24D19/10F24D11/00
    • F24D11/004F24D12/02F24D19/1024F24D19/1051Y02B30/14
    • A heating installation comprising: • a main thermal power generation source comprising a first heat exchanger (2) connected to two fluid circuits and wherein a first fluid of a primary circuit (3) is capable of transmitting thermal power to a second fluid of a secondary circuit (4); • at least one storage vessel (5) allowing a temporary storage of the second fluid, the storage vessel (5) and said first heat exchanger (2) being hydraulically arranged in parallel; • at least one secondary heat generation source (6) enabling to transmit thermal power to the second fluid stored in the storage vessel (5); • distribution means (7) enabling to direct all or part of the flow of the second fluid into the storage vessel (5) and/or into said first heat exchanger (2); said installation being characterized in that it comprises: • a second heat exchanger (12) hydraulically connected in series with the first heat exchanger (2), said second heat exchanger (12) being arranged down¬ stream of the first heat exchanger (2) along the direction of circulation of the second fluid; • a return pipe (13) allowing the flow of the second fluid coming from the storage vessel (5) to pass through the said second heat exchanger (12).
    • 一种加热装置,包括:•主火力发电源,包括连接到两个流体回路的第一热交换器(2),并且其中主回路(3)的第一流体能够将火力传递到次级的第二流体 电路(4); •至少一个储存容器(5),允许临时存储第二流体,储存容器(5)和所述第一热交换器(2)平行液压地布置; •至少一个二次发热源(6),其能够将热功率传送到存储在所述储存容器(5)中的所述第二流体; •分配装置(7),其能够将全部或部分第二流体的流动引导到储存容器(5)和/或进入所述第一热交换器(2)中; 所述安装的特征在于它包括:•与第一热交换器(2)串联地液压连接的第二热交换器(12),所述第二热交换器(12)设置在第一热交换器(2)的下游, 沿着第二流体的循环方向; •允许来自储存容器(5)的第二流体的流动通过所述第二热交换器(12)的回流管(13)。
    • 37. 发明申请
    • METHOD FOR CONTROLLING OR REGULATING A HEATING SYSTEM, AND HEATING SYSTEM
    • 方法用于控制或调节加热系统和加热系统
    • WO2009074145A3
    • 2012-03-22
    • PCT/DE2008002055
    • 2008-12-09
    • HG BAUNACH GMBH & CO KGBAUNACH HANS GEORG
    • BAUNACH HANS GEORG
    • F24D3/08F24D3/12F24D11/00F24D12/02F24D19/10
    • F24D11/003F24D3/085F24D3/12F24D11/004F24D12/02F24D19/1024F24D19/1042F24D2200/04F24D2200/06F24D2200/12F24D2200/13F24D2200/14Y02B10/20Y02B10/70Y02B30/14
    • Disclosed is a method for regulating a heating system (1) comprising a buffer tank (2) which can be charged by means of a boiler (3, 68) having a boiler pump (26, 70). The buffer tank (2) is equipped with three connections (20, 21, 22, 23) located at different levels, a high-temperature heating branch (5) that is directly connected to the buffer tank (2), and a low-temperature heating branch (6) which is indirectly connected by means of a system separation (46) and the flow temperature of which can be controlled using a valve (44) that can be controlled using a three-point signal. The high-temperature heating branch (5) and the low-temperature heating branch (6) form a heat sink. In the disclosed method, the following operating states can be obtained: The secondary flow temperature of the low-temperature heating branch (6) is modified by affecting the primary flow from the system separation (46). i.e. by modifying the mixing ratio between the water flowing out of the boiler and the water returning from the high-temperature heating branch or by modifying the flow rate of the water returning from the high-temperature heating branch. The flow rate of the heating medium through the high-temperature heating branch (5) and the system separation (46) of the low-temperature heating branch is supplied by a single pump located in the boiler flow path or a differential pressure valve (40) disposed in the return flow path of the high-temperature heating branch, and the portion of the returning water of the high-temperature heating branch which does not flow through the system separation is fed back to the buffer tank separately from the water of the primary low-temperature heating branch which returns from the system separation.
    • 一种用于控制加热系统(1)与锅炉中的一个(3,68)与一个锅炉水泵(26,70)充电的缓冲存储器的方法(2)具有三个位于不同高度处的端子(20,21,22,23),一个直接 与缓冲存储器(2)连接到所述高温加热分支(5)和一个通过系统分离间接(46)连接,并且由可控用三点信号阀(44)在它的流动温度低温加热分支可控的,这两者的(6)形成的散热片 其中以下操作模式是可能的:低温Heizzweiges(6)的二次侧入口温度是通过作用于该系统的分离(46)通过更改锅炉给水和高温加热分支回水的混合比的初级侧引线手段改变,或者通过改变的吞吐量 高温加热分支回水,通过热介质的流量 施加到高温加热分支(5)和布置在所述锅炉供给泵或设置在高温加热分支返回差压阀(40),而不是流过高温加热分支的系统分离部的阀低温Heizzweiges的系统分离(46)由单一 -Rücklaufes是从该分离系统的初级侧低温加热分支返回到缓冲存储器分别被反馈。
    • 38. 发明申请
    • SOLARANLAGE MIT MINDESTENS ZWEI SOLARKOLLEKTOREN UNTERSCHIEDLICHER EXPOSITION
    • 至少有两个不同曝光的太阳能收集器的太阳能植物
    • WO2011012411A2
    • 2011-02-03
    • PCT/EP2010/059692
    • 2010-07-07
    • VKR HOLDING A/SPRACHAR, ThomasJEDREJCIC, Stefan
    • PRACHAR, ThomasJEDREJCIC, Stefan
    • F24D19/1057F24D19/1024F24D2200/14F24S50/40F24S2020/186Y02B10/20Y02B10/70Y02E10/40
    • Die Erfindung betrifft eine Solaranlage mit mindestens zwei Solarkollektoren (1, 2) unterschiedlicher Exposition, einem Verbraucher (10), einer Hauptzufuhrleitung (3), die sich in Einzelzufuhrleitungen (4, 5) zu den Solarkollektoren (1, 2) verzweigt und einer Hauptrückführleitung (8), in die Einzelrückführleitungen (6, 7) von den Solarkollektoren (1, 2) münden, mit einem Verteilventil (17), das an der Verzweigung der Hauptzufuhrleitung (3) in die Einzelzufuhrleitungen (4, 5) oder an der Verzweigung der Hauptrückführleitung (8) in die Einzelrückführleitungen (6, 7) angeordnet ist, und mit einer Pumpe (9) zur Förderung eines Wärmeträgermediums. Eine Ertragsoptimierung kann dadurch erreicht werden, dass das Verteilventil (17) als Mischventil ausgebildet ist. Weiters betrifft die Erfindung ein Verfahren zu Regelung einer solchen Solaranlage.
    • 本发明涉及具有至少两个太阳能收集器的太阳能设备(1,2)不同的曝光的,消费者(10),(3)在单独的供给线延伸的主供给管道(4,5)的太阳能收集器( 1,2)分支和一个Hauptr导航用途CKF导航用途hrleitung(8),在Einzelr导航用途CKF导航用途hrleitungen(6,7)的太阳能集热器(1,2)米导航用途的配体,(具有开关阀17)时,这在 在各个进料管线的主供给导管(3)的分支(4,5),或在Hauptr导航用途CKF导航用途hrleitung的交界处(8)在Einzelr导航用途CKF导航用途hrleitungen(6,7)被设置,并与一个泵(9),用于 促进再生介质。 通过将分配阀(17)设计为混合阀来实现产量优化。 此外,本发明涉及用于控制这种太阳能系统的方法。

    • 40. 发明申请
    • METHODS AND EQUIPMENT FOR GEOTHERMALLY EXCHANGING ENERGY
    • 地热交换能源的方法与设备
    • WO2010053795A2
    • 2010-05-14
    • PCT/US2009/062418
    • 2009-10-28
    • TRAK INTERNATIONAL, LLCMAXWELL, Jeffrey, H.
    • MAXWELL, Jeffrey, H.
    • F25B29/00F25D19/00F25D23/00F25B41/00
    • F24F5/0003F24D3/10F24D12/02F24D15/00F24D19/1009F24D19/1024F24D19/1045F24D2200/11F24D2200/12F24D2200/14F24D2200/20F24D2200/22F24F3/08F24H9/14F24H9/142F24S2025/011F24S2080/05F24T10/17F25B2400/06Y02B10/20Y02B10/40Y02B10/70Y02B30/108Y02B30/14Y02B30/52Y02E10/125Y10T29/49826
    • As discussed herein, a first aspect of the present invention provides a round energy transfer component. The ground energy transfer component can include an outer tube having an upper end and a lower end. The outer tube can be constructed out of generally thermally conductive material. The ground energy transfer component can include an inner tube. The inner tube can be constructed out of generally thermally insulative material. The inner tube can be coupled to the outer tube and positioned generally coaxially with the outer tube to define a generally thermally insulated interior of the inner tube and a channel between the inner tube and the outer tube. The inner tube can have an upper end and a lower end, with the inner tube's lower end defining one or more openings to permit fluid communication between the channel and the interior of the inner tube. The ground energy transfer component can include a base connected to the lower end of the outer tube to substantially seal the lower end of the outer tube. The ground energy transfer component can include first and second connectors coupled to the inner and outer tubes. The first and second connectors can be configured to connect the ground energy transfer component to HVAC pipes of an HVAC system so that HVAC fluid from the HVAC system can flow through the ground energy transfer component. The channel can be configured to create more turbulence in the flowing HVAC fluid than is the interior of the inner tube.
    • 如本文所讨论的,本发明的第一方面提供了一种圆形能量传递部件。 地面能量传递部件可以包括具有上端和下端的外管。 外管可以由通常导热的材料制成。 地面能量传递部件可以包括内管。 内管可以由通常的绝热材料制成。 内管可以联接到外管并且与外管大致同轴地定位,以限定内管的通常绝热的内部和内管和外管之间的通道。 内管可以具有上端和下端,内管的下端限定一个或多个开口,以允许通道与内管内部之间的流体连通。 地面能量传递部件可以包括连接到外管的下端的基座,以基本上密封外管的下端。 地面能量传递部件可以包括联接到内管和外管的第一和第二连接器。 第一和第二连接器可以被配置为将地面能量传递部件连接到HVAC系统的HVAC管道,使得来自HVAC系统的HVAC流体可以流过地面能量传递部件。 通道可以被配置为在流动的HVAC流体中产生比内管的内部更多的湍流。