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    • 4. 发明申请
    • HEAT EXCHANGER
    • 热交换器
    • US20100282449A1
    • 2010-11-11
    • US12738862
    • 2008-11-03
    • Brian MerkleinGregg D. OlsonMark KazikowskiJochen OrsoJorg Wille
    • Brian MerkleinGregg D. OlsonMark KazikowskiJochen OrsoJorg Wille
    • F28F9/02
    • F28F9/0226F28F2225/08
    • Various embodiments of the present invention provide a heat exchanger having a collection tank having an internal chamber, and a header connected to the collection tank and receiving a number of flat tubes through apertures in the header. In some embodiments, a reinforcing member received within the collection tank and/or the header functions to reinforce the header and/or the collection tank in applications where these elements are subject to internal pressures that would otherwise deform the header and/or collection tank to an unacceptable extent. Also, some heat exchanger embodiments utilized a curved gasket on each flat tube to match the shape of the flat tubes and a curved header. Also, another gasket can be located between a metal or plastic collection tank and a plastic or metal header, respectively, to prevent leakage therebetween.
    • 本发明的各种实施例提供一种具有收集箱的热交换器,该收集箱具有内部室,以及连接到收集箱并且通过集管中的孔容纳多个扁平管的集管。 在一些实施例中,收集在收集箱和/或集管内的加强件可用于在这些元件受到内部压力的应用中加强集管和/或收集箱,否则会使集管和/或收集罐变形为 不可接受的程度 此外,一些热交换器实施例在每个扁平管上使用弯曲的垫圈以匹配扁平管的形状和弯曲的头部。 此外,另外的垫圈可以分别位于金属或塑料收集箱和塑料或金属集管之间,以防止它们之间的泄漏。
    • 5. 发明授权
    • Exhaust gas system and method for recovering energy
    • 排气系统及能量回收方法
    • US08434307B2
    • 2013-05-07
    • US12697770
    • 2010-02-01
    • Peter AmbrosStefan HildingerJochen OrsoKlaus Tüber
    • Peter AmbrosStefan HildingerJochen OrsoKlaus Tüber
    • F01K23/10
    • F02B29/0443F02B29/0418F02B29/0475F02M26/05F02M26/23F02M26/39Y02T10/146
    • A system and method for recovering energy from gases of an internal combustion engine in conjunction with exhaust gas recirculation is described and illustrated, and in some embodiments includes an exhaust gas recirculation valve and an exhaust gas recirculation heat exchanger, with a working medium which undergoes a cyclic process being evaporated in the exhaust gas recirculation heat exchanger by hot exhaust gases, and with resulting steam being converted into mechanical or electrical energy which is available as additional energy. To improve heat recovery with little technical expenditure, an exhaust gas control valve can interact with the exhaust gas recirculation heat exchanger, and can control the mass flow of exhaust gases flowing through the exhaust gas recirculation heat exchanger constantly in all operating phases of the internal combustion engine, approximately in the vicinity of the performance limit of energy recovery.
    • 描述和示出了用于从内燃机的气体中回收能量的系统和方法,并且在一些实施例中包括排气再循环阀和废气再循环热交换器,其中工作介质经历 循环过程通过热废气在排气再循环热交换器中蒸发,并且所产生的蒸汽转化为可作为附加能量获得的机械或电能。 为了在少量的技术支出下提高热回收率,排气控制阀可以与排气再循环热交换器相互作用,并且可以在内燃的所有运行阶段不断地控制流经废气再循环换热器的废气的质量流量 发动机,大概在能量回收的性能极限附近。
    • 6. 发明申请
    • HEAT EXCHANGER PLATE AND AN EVAPORATOR WITH SUCH A PLATE
    • 热交换器板和具有这种板的蒸发器
    • US20120255288A1
    • 2012-10-11
    • US13453701
    • 2012-04-23
    • Jürgen BergerPeter AmbrosAxel FezerJochen OrsoHarald Necker
    • Jürgen BergerPeter AmbrosAxel FezerJochen OrsoHarald Necker
    • F28D15/00F01N5/02
    • F28D9/0068F28D9/0075F28F3/027
    • A heat exchanger plate for an evaporator includes a flow transverse distribution device. Disks of the flow transverse distribution device conduct the medium to be evaporated to the flow channel extending in the direction of the longitudinal axis. The disks include openings allowing a flow of the medium in the direction of the longitudinal axis with comparatively higher flow resistance than in the direction of the transverse axis. The number of disks arranged one behind the other in the direction of the longitudinal axis varies over the width of the heat exchanger plate in the direction of the transverse axis. On each width section, in which the entry of the medium into the disks arranged one behind the other is intended, the comparatively largest number of disks is provided one behind the other. As the distance from the entrance increases, the number decreases in the direction of the transverse axis.
    • 用于蒸发器的热交换器板包括流动横向分配装置。 流动横向分配装置的磁盘将要蒸发的介质传导到在纵轴方向上延伸的流动通道。 盘包括允许介质在纵向轴线方向流动的开口,其流动阻力比横向轴线方向具有更高的流动阻力。 在纵向轴线方向上一个接一个布置的盘的数量在横轴方向上在热交换器板的宽度上变化。 在其中期望介质进入到彼此排列的盘中的每个宽度部分上,相对最大数量的盘被一个接一个地提供。 随着距离入口的距离增加,数量在横轴方向减小。
    • 7. 发明授权
    • Heat exchanger plate and an evaporator with such a plate
    • 热交换器板和具有这种板的蒸发器
    • US08793987B2
    • 2014-08-05
    • US13453701
    • 2012-04-23
    • Jürgen BergerPeter AmbrosAxel FezerJochen OrsoHarald Necker
    • Jürgen BergerPeter AmbrosAxel FezerJochen OrsoHarald Necker
    • F01N5/02F01K23/06F28D15/00
    • F28D9/0068F28D9/0075F28F3/027
    • A heat exchanger plate for an evaporator includes a flow transverse distribution device. Disks of the flow transverse distribution device conduct the medium to be evaporated to the flow channel extending in the direction of the longitudinal axis. The disks include openings allowing a flow of the medium in the direction of the longitudinal axis with comparatively higher flow resistance than in the direction of the transverse axis. The number of disks arranged one behind the other in the direction of the longitudinal axis varies over the width of the heat exchanger plate in the direction of the transverse axis. On each width section, in which the entry of the medium into the disks arranged one behind the other is intended, the comparatively largest number of disks is provided one behind the other. As the distance from the entrance increases, the number decreases in the direction of the transverse axis.
    • 用于蒸发器的热交换器板包括流动横向分配装置。 流动横向分配装置的磁盘将要蒸发的介质传导到在纵轴方向上延伸的流动通道。 盘包括允许介质在纵向轴线方向流动的开口,其流动阻力比横向轴线方向具有更高的流动阻力。 在纵向轴线方向上一个接一个布置的盘的数量在横轴方向上在热交换器板的宽度上变化。 在其中期望介质进入到彼此排列的盘中的每个宽度部分上,相对最大数量的盘被一个接一个地提供。 随着距离入口的距离增加,数量在横轴方向减小。
    • 9. 发明申请
    • EXHAUST GAS SYSTEM AND METHOD FOR RECOVERING ENERGY
    • 排气系统和恢复能源的方法
    • US20100192569A1
    • 2010-08-05
    • US12697770
    • 2010-02-01
    • Peter AmbrosStefan HildingerJochen OrsoKlaus Tuber
    • Peter AmbrosStefan HildingerJochen OrsoKlaus Tuber
    • F02D23/00F02M25/07F02B33/44
    • F02B29/0443F02B29/0418F02B29/0475F02M26/05F02M26/23F02M26/39Y02T10/146
    • A system and method for recovering energy from gases of an internal combustion engine in conjunction with exhaust gas recirculation is described and illustrated, and in some embodiments includes an exhaust gas recirculation valve and an exhaust gas recirculation heat exchanger, with a working medium which undergoes a cyclic process being evaporated in the exhaust gas recirculation heat exchanger by hot exhaust gases, and with resulting steam being converted into mechanical or electrical energy which is available as additional energy. To improve heat recovery with little technical expenditure, an exhaust gas control valve can interact with the exhaust gas recirculation heat exchanger, and can control the mass flow of exhaust gases flowing through the exhaust gas recirculation heat exchanger constantly in all operating phases of the internal combustion engine, approximately in the vicinity of the performance limit of energy recovery.
    • 描述和示出了用于从内燃机的气体中回收能量的系统和方法,并且在一些实施例中包括排气再循环阀和废气再循环热交换器,其中工作介质经历 循环过程通过热废气在排气再循环热交换器中蒸发,并且所产生的蒸汽转化为可作为附加能量获得的机械或电能。 为了在少量的技术支出下提高热回收率,排气控制阀可以与排气再循环热交换器相互作用,并且可以在内燃的所有运行阶段不断地控制流经废气再循环换热器的废气的质量流量 发动机,大概在能量回收的性能极限附近。
    • 10. 发明申请
    • Heat Exchanger Plate and Evaporator Comprising Same
    • 换热板和蒸发器组成
    • US20120266599A1
    • 2012-10-25
    • US13502338
    • 2010-10-22
    • Jurgen BergerPeter AmbrosAxel FezerJochen OrsoHarald Necker
    • Jurgen BergerPeter AmbrosAxel FezerJochen OrsoHarald Necker
    • F28F3/12F02B73/00F25B39/02
    • F28F3/046B01D1/22F01K23/065F28D9/0068F28D9/0075F28D2021/0064F28D2021/0071F28F9/026F28F13/08Y02T10/16
    • The invention relates to a heat exchanger plate for an evaporator; with a longitudinal axis and a transverse axis, with the transverse axis being disposed perpendicularly or substantially perpendicularly to the longitudinal axis; with at least one flow channel which extends in the direction of the longitudinal axis of the heat exchanger plate through a heat supply area of the heat exchanger plate and conducts the medium to be evaporated; with an inlet for the medium to be evaporated, which inlet is in a flow-conducting connection with the at least one flow channel arranged in the direction of the longitudinal axis of the heat exchanger plate, with a meandering inflow channel being provided in the direction of the longitudinal axis between the inlet and the at least one flow channel arranged in the direction of the longitudinal axis, which inflow channel is in a flow-conducting connection with the inlet and the at least one flow channel, and conducts the medium which flows out of the inlet to the at least one flow channel in an alternating manner along the transverse axis in the direction of the at least one flow channel. The invention is characterized in that the meandering inflow channel is formed by a plurality of webs which are disposed on the heat exchanger plate or a base plate which forms the bottom or top of the inflow channel and the at least one flow channel arranged in the direction of the longitudinal axis, which webs extend in the direction of the transverse axis, and the inflow channel between the webs is subdivided into individual partial channels by a plurality of plates which extend in the direction of the transverse axis.
    • 本发明涉及一种用于蒸发器的热交换器板; 纵向轴线和横向轴线,其横向轴线垂直于或基本上垂直于纵向轴线设置; 具有至少一个流动通道,其通过热交换器板的供热区域沿热交换器板的纵向轴线的方向延伸,并传导待蒸发的介质; 具有用于介质被蒸发的入口,该入口与沿热交换器板的纵向轴线的方向布置的至少一个流动通道形成一个导流连接,其中在该方向上设置有弯曲的流入通道 所述纵向轴线在所述入口和所述至少一个流动通道之间沿所述纵向轴线的方向布置,所述流入通道与所述入口和所述至少一个流动通道处于导流连接,并且传导流体的介质 沿至少一个流动通道的方向沿着横向轴线以交替方式从所述至少一个流动通道的入口流出。 本发明的特征在于,曲折流入通道由设置在热交换器板上的多个腹板或形成流入通道的底部或顶部的基板形成,并且至少一个流动通道沿方向 所述纵向轴线沿着所述横向轴线的方向延伸,并且所述腹板之间的流入通道通过沿所述横向轴线的方向延伸的多个平板细分成各个部分通道。