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    • 1. 发明申请
    • ENERGY STORAGE MODULE
    • 储能模块
    • WO2013010912A3
    • 2013-03-14
    • PCT/EP2012063695
    • 2012-07-12
    • SIEMENS AGGEBHARD BRUNOHUBER NORBERTMEINERT MICHAELRECHENBERG KARSTEN
    • GEBHARD BRUNOHUBER NORBERTMEINERT MICHAELRECHENBERG KARSTEN
    • H01M2/20H01M10/50
    • H01M2/20H01M10/052H01M10/61H01M10/653H01M10/655H01M10/6551H01M10/6553H01M10/656
    • The invention relates to an energy storage module (1), comprising a plurality of storage cells (2', 2) for electrical energy which are electrically connected in series, a module housing (5) which surrounds the storage cells (2', 2), a module port (6) arranged on the module housing (5) for the purpose of making external electrical contact with the storage cells (2', 2), a supply lead that electrically connects the module port (6) to a first of the series-connected storage cells (2', 2), and a cooling device which is thermally coupled to the storage cells (2' 2) for the purpose of absorbing and dissipating heat energy. According to the invention, the supply lead is designed and arranged such that heat energy generated in it can be dissipated. This evens out the cooling of the storage cells and hence extends the life of the storage cells and hence that of the entire energy storage module.
    • 本发明涉及一种包括多个电串联连接的存储器单元的能量存储模块(1)(2”,2),用于将电能,存储器单元(2' ,2)包围所述模块壳体(5),布置在模块壳体(5)模块连接器上的一个( 6)热为2的存储单元的外部电接触(“ 2),一个具有第一串联连接的存储器单元(2' 的模块连接器(6),2电连接引线)和一个(存储单元2”,2) 吸收和去除热能的耦合冷却装置。 根据本发明的连接导体被形成和布置成使得在它产生的热能可以被耗散掉。 以这种方式,存储器单元的冷却变得均匀,并且因此延长了存储器单元的寿命,从而使整个能量存储模块。
    • 2. 发明申请
    • DEVICE FOR EXCHANGING HEAT COMPRISING A PLATE STACK AND METHOD FOR PRODUCING SAID DEVICE
    • 设备交换热火FOR板组件和方法及其
    • WO2010124937A3
    • 2011-06-03
    • PCT/EP2010054947
    • 2010-04-15
    • SIEMENS AGHUBER NORBERTMEINERT MICHAELRASTOGI ARMINRECHENBERG KARSTEN
    • HUBER NORBERTMEINERT MICHAELRASTOGI ARMINRECHENBERG KARSTEN
    • F28F3/08
    • F28F3/086H01L23/473H01L2924/0002Y10T29/4935H01L2924/00
    • The present invention relates to a device for exchanging heat comprising a plate stack (1) of at least a first, a second, and a third plate (4, 5, 6). The three or more plates are stacked one on top of the other and have recesses (7) which are arranged in a regular pattern on a plane of the respective plates (4 - 6). The first and the second plates (4, 5) as well as the second and the third plates (5, 6) are stacked in such a manner that each adjacent plate forms at least one common cooling channel (8), which is accessible to a fluid, running in a direction on the plane of plates, and formed by way of recesses (7), which partially but not entirely overlap, in the adjacent plates. The one or more cooling channels (8a) of the first and second plates (4, 5) are entirely spatially separated from at least one cooling channel (8b) of the second and third plates (5, 6). The invention also relates to a method for producing the plate stack.
    • 一种用于与板组件1的热交换设备的至少一个第一,一个第二和一个第三面板4,5,6,该至少三个板堆叠在彼此和具有凹部7,其在相应的板4的在一个平面内以6 规则图案的形式布置。 在第一和第二板4,5以及所述第二和第三板5和6被一个堆叠在另一个之上,使得相邻的板的每个形式的至少一种用于在面板的平面中的流体共用的冷却通道8沿一个方向可访问的,该装置的 部分地形成但不完全重叠设置的凹部7中的相邻板。 在第一和第二板4,5中的至少一个冷却通道8a被完全空间上与第二和第三板5和6的制造板组件的制造方法中的所述至少一个冷却通道8b中分离。
    • 3. 发明申请
    • METHOD FOR PRODUCING A COOLING PLATE AND DEVICE PRODUCED BY SAID METHOD
    • 制造由该方法制造的冷却板和装置的方法
    • WO2011038988A3
    • 2011-07-14
    • PCT/EP2010062030
    • 2010-08-18
    • SIEMENS AGHUBER NORBERTRECHENBERG KARSTEN
    • HUBER NORBERTRECHENBERG KARSTEN
    • F28F3/08B23K20/02
    • F28F3/086F28F2275/02F28F2275/025F28F2275/061
    • The invention relates to a method for producing a cooling plate and to a device produced by said method, wherein the method comprises the following steps: providing at least one first and at least one second plate (10, 10') each having recesses (13) and arranging the at least two plates (10, 10') over one another such that the recesses (13) of the at least one first plate (10) overlap with recesses (13) of the at least one second plate (10') and are structured by continuous cooling channels along a longitudinal direction (30) in a plane of the plates (10, 10'). According to the invention, a material for mechanically stable joining of the plates (10, 10') is inserted between the at least two plates (10, 10') substantially does not penetrate into the recesses (13) of the plates (10, 10') upon temporally stable joining.
    • 本发明涉及一种用于制造冷却板和由该方法制造的装置,该方法包括以下步骤,提供至少一个第一和至少一个第二板(10,10“)分别设置有凹部(13) 和布置在所述至少两个板(10,10“)一个在另一个这样上面说的至少一个第一板(10)与所述至少一个第二板的凹部(13)的凹部(13)(10”沿纵向方向)的重叠和连续的冷却通道 (30)形成在所述板(10,10')的平面中。 所述至少两个板(10,10“)之间包括一个材料(10,10为机械稳定的接合板”)被插入,这在当时稳定组件基本上不进入板的凹部(13)(10,10' ) 穿透。
    • 6. 发明申请
    • APPARATUS FOR IN SITU EXTRACTION OF BITUMEN OR VERY HEAVY OIL
    • DEVICE沥青的“原位”提取或极重的油
    • WO2009027305A2
    • 2009-03-05
    • PCT/EP2008060927
    • 2008-08-21
    • SIEMENS AGDIEHL DIRKHUBER NORBERTWACKER BERNDWEIGEL JAN
    • DIEHL DIRKHUBER NORBERTWACKER BERNDWEIGEL JAN
    • E21B43/24H05B6/02
    • E21B43/2401E21B43/2408H05B6/108H05B2214/03
    • In order to lower the viscosity of bitumen or very heavy oil in deposits, thermal energy is applied to the deposit, especially inductive and/or resistive heat being optionally applied in addition to vapor that is applied according to the steam assisted gravity drainage (SAGD) process. According to the invention, a high-frequency generator feeds electric power to a linearly extended conductor loop (10, 15, 20) at a predefined depth of the deposit, the inductance of the conductor loop (10, 15, 20) being compensated in some sections or continuously. Advantageously, one of the conductors (10, 15) of the conductor loop (10, 15, 20) can be disposed substantially in a vertical direction above the extraction pipe (102). Models have shown that an extraction system can be exclusively operated by means of a device for inductive heating (electromagnetic gravity drainage (EMGD) process).
    • 用于降低沥青或重油矿床贮存器被提供热能的粘度,可以在除了蒸汽处理根据所谓的SAGD方法提供,特别是电感性和/或电阻加热。 根据本发明,是一种线性延伸导体环(10,15,20)中的沉积物的预定深度,并通过与电力的高频发生器,其中,在每种情况下,导体环(10,15,20)的部分的电感或连续地补偿供给。 有利的是,导体环(10,15,20)的所述导体(10,15)中的一个可以基本垂直于所述输送管(102)设置。 模型已经表明,一输送器可与用于感应加热的装置进行操作(所谓的。EMGD方法)。