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    • 1. 发明申请
    • ELECTRICITY GENERATION SYSTEM
    • 电力发电系统
    • WO2010034641A1
    • 2010-04-01
    • PCT/EP2009/061883
    • 2009-09-14
    • ABB RESEARCH LTDDAHLGREN, MikaelRUSSBERG, GunnarTHORBURN, Stefan
    • DAHLGREN, MikaelRUSSBERG, GunnarTHORBURN, Stefan
    • H01L37/04
    • H01L37/04Y02E10/34Y10T307/642
    • An electricity generation system (11) comprises a low frequency alternating heat and cold distribution system (12) provided for alternately distributing heat and cold at low frequency; a heat-electricity conversion system (13) operatively connected to the low frequency alternating heat and cold distribution system and provided for generating electricity in response to the alternately distributed heat and cold; an electric power delivery system (14) operatively connected to the heat- electricity conversion system and provided for distributing the generated electricity; and a process control system (15) operatively connected to the low frequency alternating heat and cold distribution system, to the heat-electricity conversion system, and to the electric power delivery system in order to control the operations thereof.
    • 发电系统(11)包括:低频交替冷热分配系统(12),用于低频交替分配热和冷; 一个热电转换系统(13),可操作地连接到低频交替的热和冷分配系统,并被提供用于响应于交替分布的热和冷发电; 电力输送系统(14),其可操作地连接到所述热电转换系统并且用于分配所产生的电力; 以及可操作地连接到所述低频交替冷热分配系统的过程控制系统(15),所述热电转换系统以及所述电力输送系统以控制其运行。
    • 2. 发明申请
    • DEVICE AND METHOD FOR CONVERTING ENERGY
    • 用于转换能量的装置和方法
    • WO2008116785A1
    • 2008-10-02
    • PCT/EP2008/053208
    • 2008-03-18
    • ABB RESEARCH LTDRUSSBERG, GunnarDAHLGREN, MikaelTHORBURN, Stefan
    • RUSSBERG, GunnarDAHLGREN, MikaelTHORBURN, Stefan
    • H01L37/04
    • H01L37/04
    • A device for transforming thermal energy to electric energy comprises a magnetic circuit (1) including at least a portion (3) made of a magnetic material; temperature-varying means (5) for varying the temperature in the portion made of the magnetic material alternately above and below a phase transition temperature of the magnetic material to thereby vary the reluctance of the magnetic circuit; and a coil (7) arranged around the magnetic circuit, in which electric energy is induced in response to a varying magnetic flux in the magnetic circuit. The device comprises a capacitor (9) connected in parallel with the coil to thereby form a resonant circuit (11), wherein the resonance frequency of the resonant circuit and the frequency of the temperature variation above and below the phase transition temperature of the magnetic material are dependent on one another to optimize the electric power output.
    • 用于将热能转换成电能的装置包括至少包括由磁性材料制成的部分(3)的磁路(1) 温度变化装置(5),用于在磁性材料的相变温度之上交替地改变由磁性材料制成的部分中的温度,从而改变磁路的磁阻; 以及围绕磁路布置的线圈(7),其中响应于磁路中的变化的磁通量而感应出电能。 该装置包括与线圈并联连接的电容器(9),从而形成谐振电路(11),其中谐振电路的谐振频率和温度变化频率高于和低于磁性材料的相变温度 相互依赖以优化电力输出。
    • 3. 发明申请
    • VALVE APPARATUS
    • 阀门装置
    • WO2008118063A1
    • 2008-10-02
    • PCT/SE2008/000232
    • 2008-03-28
    • ABB RESEARCH LTD.RUSSBERG, GunnarDAHLGREN, MikaelTHORBURN, Stefan
    • RUSSBERG, GunnarDAHLGREN, MikaelTHORBURN, Stefan
    • F16K11/00H01L37/04H02N10/00
    • H01L37/04F16K11/0853Y02E10/34
    • A rotating valve apparatus comprises a cylindrical casing (41); a shaft (42) arranged symmetrically in the casing; a member (43) fixedly attached to the shaft and in close fit with the cylindrical casing, defining separated chambers (44a-b) within the casing; at least one outlet (46a-f; 61; 71) fixedly arranged along the circumference of the casing; and a plurality of axially arranged inlets (45a-b), each of which being constantly in fluid communication with a respective one of the separated chambers, wherein the axially arranged inlets are alternately in fluid connection with the outlet fixedly arranged along the circumference of the casing in response to rotation of the shaft and the member with respect to the casing. The member (43) has an elliptically shaped cross section.
    • 旋转阀装置包括圆柱形壳体(41); 在所述壳体中对称布置的轴(42); 固定地连接到所述轴并与所述圆柱形壳体紧密配合的构件(43),在所述壳体内限定分隔的腔室(44a-b); 至少一个出口(46a-f; 61; 71),沿着所述壳体的圆周固定地布置; 以及多个轴向布置的入口(45a-b),每个入口(45a-b)与相应的一个分离的腔室不断地流体连通,其中轴向设置的入口与沿着 壳体响应于轴和构件相对于壳体的旋转。 构件(43)具有椭圆形横截面。
    • 4. 发明申请
    • GENERATOR DEVICE AND METHOD
    • 发电机装置及方法
    • WO2008116789A1
    • 2008-10-02
    • PCT/EP2008/053215
    • 2008-03-18
    • ABB RESEARCH LTDRUSSBERG, GunnarDAHLGREN, MikaelTHORBURN, Stefan
    • RUSSBERG, GunnarDAHLGREN, MikaelTHORBURN, Stefan
    • H01L37/04H02N11/00
    • H01L37/04F16K11/0853Y02E10/34
    • A generator device for converting thermal energy to electric energy comprises a magnetic circuit (1) including at least a portion (3) made of a magnetic material; temperature-varying means (5) for varying the temperature in the portion made of the magnetic material alternately above and below a phase transition temperature of the magnetic material to thereby vary the reluctance of the magnetic circuit; a coil (7) arranged around the magnetic circuit, in which electric energy is induced in response to a varying magnetic flux in the magnetic circuit; and means for creating a magnetic flux in the magnetic circuit. The temperature-varying means is provided to alternately pass hot and cold fluid by, or through holes in, the portion made of the magnetic material of the magnetic circuit in a single direction to thereby vary the temperature in the portion made of the magnetic material alternately above and below the phase transition temperature of the magnetic material.
    • 用于将热能转换成电能的发电机装置包括至少包括由磁性材料制成的部分(3)的磁路(1) 温度变化装置(5),用于在磁性材料的相变温度之上交替地改变由磁性材料制成的部分中的温度,从而改变磁路的磁阻; 围绕所述磁路布置的线圈(7),其中响应于所述磁路中的变化的磁通量而感应电能; 以及用于在磁路中产生磁通量的装置。 设置温度变化装置以在单个方向上交替地将热和冷流体通过磁路的磁性材料制成的部分或通过孔进行通过,从而交替地改变由磁性材料制成的部分中的温度 高于和低于磁性材料的相变温度。
    • 5. 发明申请
    • THERMOMAGNETIC GENERATOR DEVICE AND ENERGY CONVERTING METHOD
    • 热电发生器装置和能量转换方法
    • WO2008116792A1
    • 2008-10-02
    • PCT/EP2008/053221
    • 2008-03-18
    • ABB RESEARCH LTDRUSSBERG, GunnarDAHLGREN, MikaelTHORBURN, Stefan
    • RUSSBERG, GunnarDAHLGREN, MikaelTHORBURN, Stefan
    • H01L37/04
    • H01L37/04
    • A generator device for converting thermal energy to electric energy comprises a magnetic circuit (1) including at least a portion (3) made of a magnetic material; temperature-varying means (5) for varying the temperature in the portion made of the magnetic material alternately above and below a phase transition temperature of the magnetic material to thereby vary the reluctance of the magnetic circuit; a coil (7) arranged around the magnetic circuit, in which electric energy is induced in response to a varying magnetic flux in the magnetic circuit; and means (60) for creating a magnetic flux in the magnetic circuit. The generator device comprises a controllable electric circuit device (13) connected to the coil and a control device (15) provided for controlling the controllable electric circuit device (13).
    • 用于将热能转换成电能的发电机装置包括至少包括由磁性材料制成的部分(3)的磁路(1) 温度变化装置(5),用于在磁性材料的相变温度之上交替地改变由磁性材料制成的部分中的温度,从而改变磁路的磁阻; 围绕所述磁路布置的线圈(7),其中响应于所述磁路中的变化的磁通量而感应电能; 以及用于在磁路中产生磁通量的装置(60)。 发电机装置包括连接到线圈的可控电路装置(13)和用于控制可控电路装置(13)的控制装置(15)。
    • 8. 发明申请
    • ARRANGEMENT AND METHOD FOR THERMOMAGNETIC POWER GENERATION
    • 热电发电装置及方法
    • WO2010139538A1
    • 2010-12-09
    • PCT/EP2010/056520
    • 2010-05-12
    • ABB RESEARCH LTDRUSSBERG, GunnarTHORBURN, Stefan
    • RUSSBERG, GunnarTHORBURN, Stefan
    • H01L37/04
    • H01L37/04
    • The present invention relates to an arrangement for converting thermal energy into electric energy comprising at least two thermomagnetic elements comprising a material exhibiting a magnetic phase transition, wherein the phase transition of the elements is at different temperatures. The at least two elements are arranged in at least one cascaded series in a manner so that an element having a first transition temperature is arranged to receive cooling fluid from a cooling fluid outlet arranged to deliver cooling fluid from an element having a lower phase transition temperature than the first transition temperature. The invention further relates to a thermomagnetic generator and a method of operating a thermomagnetic generator.
    • 本发明涉及一种用于将热能转换为电能的装置,其包括至少两个包含表现出磁相变的材料的热磁性元件,其中元件的相变处于不同的温度。 所述至少两个元件以至少一个级联系列布置,使得具有第一转变温度的元件布置成从冷却流体出口接收冷却流体,所述冷却流体出口布置成从具有较低相变温度的元件输送冷却流体 比第一转变温度。 本发明还涉及一种热磁发电机和一种操作热磁发电机的方法。
    • 9. 发明申请
    • COMBINED PUMP AND VALVE APPARATUS
    • 组合泵和阀装置
    • WO2009065764A1
    • 2009-05-28
    • PCT/EP2008/065459
    • 2008-11-13
    • ABB RESEARCH LTDRUSSBERG, GunnarTHORBURN, StefanROTHMAN, Bengt
    • RUSSBERG, GunnarTHORBURN, StefanROTHMAN, Bengt
    • F04D3/02H01L37/04
    • F04D3/02F04B13/02F04D15/0005H01L37/04
    • A combined pump and valve apparatus comprises a cylindrical casing (41); a shaft (42) arranged symmetrically in the casing; a device (43, 47a-b, 43', 43'') fixedly attached to the shaft and in close fit with the cylindrical casing, thereby defining separated chambers (44a-d) within the casing; a plurality of outlets/inlets (46a-f) arranged along the circumference of the casing; and a plurality of axially arranged inlets/outlets (45a-b), each of which being fixedly connected to a respective one of the separated chambers. The axially arranged inlets/outlets are alternately in fluid connection with each of the outlets/inlets fixedly arranged along the circumference of the casing in response to rotation of the shaft and the device with respect to the casing. The device comprises further an impeller arrangement (47a-b, 43', 43'') for pumping a fluid through the combined pump and valve apparatus in response to the rotation of the shaft.
    • 组合的泵和阀装置包括圆柱形壳体(41); 轴对称地设置在所述壳体内的轴; 固定地连接到所述轴并且与所述圆柱形壳体紧密配合的装置(43,47a-b,43',43“),从而在所述壳体内限定分离的腔室(44a-d) 沿着所述壳体的圆周布置的多个出口/入口(46a-f); 以及多个轴向布置的入口/出口(45a-b),每个入口/出口固定地连接到相应的一个分离的室。 所述轴向布置的入口/出口与所述轴和所述装置相对于所述壳体的旋转相互交替地与沿着所述壳体的圆周固定地布置的每个所述出口/入口流体连接。 该装置还包括用于响应于轴的旋转而泵送流体通过组合的泵和阀装置的叶轮装置(47a-b,43',43“)。
    • 10. 发明申请
    • AN INDUCTION REGULATOR AND USE OF SUCH REGULATOR
    • 电感调节器和这种调节器的使用
    • WO2008073034A1
    • 2008-06-19
    • PCT/SE2007/050916
    • 2007-11-29
    • ABB RESEARCH LTDTHORBURN, StefanRUSSBERG, GunnarDAHLGREN, Michael
    • THORBURN, StefanRUSSBERG, GunnarDAHLGREN, Michael
    • H02J3/06H01F29/08
    • H01F29/12H02J3/06H02J3/1885Y02E40/32
    • An inductor regulator (50) for controlling the active and/ or reactive power flow in a three-phase electric transmission network (30,40), which for each phase comprises a first stator winding (60a, 60b, 60c) and a second stator winding 61a, 61b, 61c) separated from each other and electrically connected in series, and for each first and second stator winding comprises a first rotor winding (70a, 70b, 70c} and second rotor winding (71a, 71b, 71c) opposing said first and second stator windings and forming magnetic circuits via air gaps between respective stator windings and rotor windings. The first (60a, 60b, 60c) and second (61a, 61b, 61c) rotor windings for each phase are connected in series to give a rotating flux in the first 70a, 70b, 70c) and second (71a, 71b, 71c) rotor windings having different rotating direction in relation to the rotor axis (210, 210a).
    • 一种用于控制三相电力传输网络(30,40)中的有功和/或无功功率流的电感器调节器(50,40),其针对每相包括第一定子绕组(60a,60b,60c)和第二定子 绕组61a,61b,61c)彼此分离并串联电连接,并且对于每个第一和第二定子绕组包括与所述第一和第二定子绕组相对的第一转子绕组(70a,70b,70c)和第二转子绕组(71a,71b,71c) 第一和第二定子绕组,并通过相应的定子绕组和转子绕组之间的气隙形成磁路,每相的第一(60a,60b,60c)和第二(61a,61b,61c)转子绕组串联连接, 具有相对于转子轴线(210,210a)具有不同旋转方向的第一(70a,70b,70c)和第二(71a,71b,71c)转子绕组。