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    • 12. 发明申请
    • POWER PLANT AND METHOD FOR OPERATION THEREOF
    • 电厂和操作程序的
    • WO2014067793A3
    • 2015-06-18
    • PCT/EP2013071748
    • 2013-10-17
    • SIEMENS AG
    • DANOV VLADIMIRSCHÄFER JOCHEN
    • F25J3/04F02C6/16
    • F25J3/04018F02C6/16F25J3/04781F25J2230/40F25J2290/62Y02E60/15
    • The invention relates to a method for operating a power plant (22) having a connected air separation plant (10), wherein a first partial power of the power plant (22) is fed into an electrical supply network (28) and a second partial power of the power plant (22) is provided for operating at least one compressor (12) of the air separation plant (10). According to the invention, the sum of the partial powers is constant and, if the second partial power exceeds the power demand of the at least one compressor (12) for delivering the required volume of compressed air from the air separation plant (10), excess compressed air is supplied to a compressed air reservoir (36).
    • 本发明涉及一种方法,用于与所连接的空气分离装置(10),在该进给的动力装置(22)的第一部分电力到电力供应网络(28)和动力装置(22)的第二部分电力至少操作操作电厂(22) 空气分离装置(10)的压缩机(12)被提供。 根据本发明,提供的是所述局部性能的总和是恒定的,并且如果用于从所述空气分离装置(10)的压缩空气超过,过量的压缩空气(压缩气体贮罐的量输送所需的所述至少一个压缩机(12)的功率需求的第二部分电力 36)被提供。
    • 13. 发明申请
    • DEVICE AND METHOD FOR PROCESSING A MIXTURE OF GAS, OIL, AND WATER
    • 装置和方法进行处理气,油和水的混合物
    • WO2013092097A3
    • 2013-11-14
    • PCT/EP2012073318
    • 2012-11-22
    • SIEMENS AG
    • DANOV VLADIMIRSCHAEFER JOCHEN
    • F04B39/06E21B43/00E21B43/34
    • E21B43/34F04B39/06
    • The invention relates to a device (10) for processing a mixture of gas, oil, and water during crude oil extraction, comprising at least one separator (16, 18) for separating the phases of the mixture and a compressor (26) having at least one compressor stage (28, 30, 32) for compressing the separated gas, wherein the gas can be cooled to a specified temperature by means of an associated first heat exchanger (40) before entering the at least one compressor stage (28, 30, 32), wherein an additional heat exchanger (44, 56) thermally coupled to an adsorption and/or absorption refrigeration machine (46) is provided for at least one compressor stage (28, 30, 32) between the associated first heat exchanger (40, 42, 54) and the compressor stage (28, 30, 32).
    • 本发明涉及一种用于气体,油和在原油生产水的混合物的处理的装置(10),与至少一个分离器(16,18),用于与至少一个压缩机级分离所述混合物的阶段,以及一个压缩机(26)(28 ,30,32),用于压缩所述分离后的气体,该气体通过相关联的第一热交换器40的装置(进入至少一个压缩机级(28,30,32之前))可以被冷却到预定的温度,其中,(用于至少一个压缩机级28 ,30,32)相关联的第1热交换器(40,42,54)和所述压缩机级(28,30,32)的另一热交换器(44,56)之间被提供,其被热与吸附和/或吸收式制冷机(46耦合 )耦合。
    • 14. 发明申请
    • COOLING SYSTEM FOR ELECTROMECHANICAL TRANSDUCER
    • 冷却电机换能器
    • WO2014072341A2
    • 2014-05-15
    • PCT/EP2013073167
    • 2013-11-06
    • SIEMENS AG
    • DANOV VLADIMIRGROMOLL BERND
    • H02K9/19
    • H02K9/20B60L1/003B60L1/02B60L3/0061B60L2240/445H02K1/20H02K9/10Y02T10/641
    • The invention relates to an electromechanical transducer (1), in particular for aircraft propulsion systems and vehicle drives, said transducer having at least one inlet (2) and an outlet (3) for at least one hollow conduit (4) for receiving a coolant fluid (5). The hollow conduit (4) can be situated in or on a rotor (6) and/or a stator (7) and/or a shaft (8) and/or a housing (9) of the electromechanical transducer (1) and said hollow conduit (4) is set up as an evaporator (10) for receiving thermal energy from the electromechanical transducer (1) by means of the coolant fluid (5). The cooling process allows the efficiency of the electromechanical transducer (1) to be increased and permits a more compact construction.
    • 本发明涉及一种机电换能器(1),特别是用于飞机和汽车发动机,它具有至少一个入口(2)和出口(3),用于至少一个中空管(4),用于接收冷却流体(5),所述中空 中或上的转子(6)和/或定子(7)和/或轴(8)和/或所述机电转换器(1)的壳体(9)(4)行可被布置,并且其中所述中空管 (4)作为蒸发器(10),用于由所述冷却流体(5)的装置从所述机电换能器(1)接收的热能被布置。 通过冷却,可以在机电换能器(1)的效率提高,并允许更紧凑的设计。