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    • 11. 发明授权
    • Continuous steam generator
    • 连续蒸汽发生器
    • US08146540B2
    • 2012-04-03
    • US11884286
    • 2006-02-06
    • Martin EffertJoachim FrankeRudolf Kral
    • Martin EffertJoachim FrankeRudolf Kral
    • F22B29/06F22B37/26
    • F22B29/062F22B37/26
    • The invention relates to a continuous steam generator comprising a surrounding wall which forms a gas draught and whose lower section is configured from gas-tight evaporator tubes that are welded together and whose upper section is configured from gas-tight superheater tubes that are welded together. According to the invention, superheater tubes are connected downstream of the evaporator tubes on the flow medium side by means of a water separator system. The aim of the invention is to provide a system with particularly high degree of operational flexibility even in the start-up and off-peak periods, while keeping the production and installation expenditure relatively low. To achieve this, the water separator system comprises a large number of water separator elements, each of which is connected downstream or upstream of less than ten evaporator tubes, preferably one tube and/or less than ten superheater tubes, preferably one tube on the flow medium side.
    • 本发明涉及一种连续蒸汽发生器,其包括形成气流通的周围壁,其下部由焊接在一起的气密蒸发器管构成,其上部由焊接在一起的气密过热器管构成。 根据本发明,过热器管通过水分离器系统连接在流动介质侧上的蒸发器管的下游。 本发明的目的是提供一种即使在启动和非高峰时段也具有特别高的操作灵活性的系统,同时保持生产和安装费用相对较低。 为了实现这一点,水分离器系统包括大量的水分离器元件,每个水分离器元件连接在少于十个蒸发器管的下游或上游,优选地一个管和/或少于十个过热器管,优选地在流动上一个管 中等
    • 12. 发明申请
    • Continuous steam generator
    • 连续蒸汽发生器
    • US20110197830A1
    • 2011-08-18
    • US13062700
    • 2009-09-09
    • Jan BrücknerMartin EffertJoachim Franke
    • Jan BrücknerMartin EffertJoachim Franke
    • F22B29/06F22B5/02F22B37/26F22G3/00
    • F22B29/06F22B21/341F22B37/26
    • A continuous steam generator including a combustion chamber with a plurality of burners for fossil fuel is provided. A vertical gas duct is connected downstream of the combustion chamber on the hot gas side, in an upper region via a horizontal gas duct. The outside wall of the combustion chamber is formed from evaporation pipes which are welded together in a gas-tight manner and mounted upstream of a water separator system on the flow medium side and from superheater pipes which are welded together in a gas-tight manner and mounted downstream of the water separator system. The water separator system includes a plurality of water separation elements, each element includes an inlet tube which is connected to the respective upstream evaporation for tubes, which extend into a water evacuation tube. A distributer element is arranged on the evaporator side between the respective water separator element and the inlet collector.
    • 提供了包括具有用于化石燃料的多个燃烧器的燃烧室的连续蒸汽发生器。 垂直气体管道通过水平气体管道连接在热气体侧的燃烧室的下游,在上部区域。 燃烧室的外壁由蒸气管形成,其以气密方式焊接在一起,并且安装在流动介质侧上的水分离器系统的上游和以气密方式焊接在一起的过热管, 安装在水分离器系统的下游。 水分离器系统包括多个水分离元件,每个元件包括入口管,其连接到延伸到排水管中的管的各个上游蒸发器。 在各自的水分离器元件和入口收集器之间的蒸发器侧布置有分配器元件。
    • 17. 发明申请
    • Fossil-Fuel Heated Continuous Steam Generator
    • 化石燃料加热连续蒸汽发生器
    • US20080257282A1
    • 2008-10-23
    • US11663243
    • 2005-07-22
    • Martin EffertJoachim FrankeRudolf Kral
    • Martin EffertJoachim FrankeRudolf Kral
    • F22B33/00
    • F22B29/062
    • The invention relates to a fossil-energy heated continuous steam generator, whereby the at least one combustion chamber, viewed in the flow direction of the hot gases, is divided into at least two throughflow segments, formed by evaporator heating surfaces, whereby the evaporator heating surfaces each comprise steam generation tubes welded to each other in a gastight manner and pressurized in parallel with a flow medium. According to the invention, said generator is suitable for operation with high fresh steam parameters, such as for example, steam temperatures of approximately 700° C., with a simple construction and particularly simple assembly, whereby a throughflow segment, arranged after the first through flow segment, viewed in the direction of flow of the hot gases, forms the first evaporator stage for the flow medium, such that the injection of particularly cold flow medium can occur in the region of maximum heating.
    • 本发明涉及一种化石能量加热的连续蒸汽发生器,其中从热气体的流动方向观察的至少一个燃烧室被分成由蒸发器加热表面形成的至少两个通流段,由此蒸发器加热 表面各自包括以气密方式彼此焊接并与流动介质平行加压的蒸汽发生管。 根据本发明,所述发生器适用于具有高新鲜蒸汽参数(例如约700℃的蒸汽温度)的操作,具有简单的结构和特别简单的组装,由此在第一次通过 从热气流的方向观察的流动段形成用于流动介质的第一蒸发器级,使得特别冷流介质的注入可以在最大加热的区域中发生。
    • 19. 发明授权
    • Fossil-fired steam generator
    • 化石燃烧蒸汽发生器
    • US09506376B2
    • 2016-11-29
    • US13877729
    • 2011-09-30
    • Martin EffertFrank Thomas
    • Martin EffertFrank Thomas
    • F01K7/24F01K7/22
    • F01K7/24F01K7/22
    • A fossil-fired steam generator for a steam power station includes a number of economizer, evaporator and superheater heating surfaces forming a flow path through which a flow medium flows in a plurality of pressure stages. In a high-pressure stage, an overflow line is connected to the flow path on its inlet side and leads to an injection valve disposed upstream in the flow path from a superheater heating surface in a medium-pressure stage on the flow medium side. The overflow line has two supply lines of which a first supply line branches off on the flow medium side upstream from a high-pressure preheater and a second supply line branches off on the flow medium side downstream from the high-pressure preheater.
    • 用于蒸汽发电站的化石燃烧蒸汽发生器包括多个节能器,蒸发器和过热器加热表面,其形成流动介质在多个压力级中流动的流动路径。 在高压阶段,溢流管路与其入口侧的流路连接,并且在流动介质侧的中压级的过热器加热面上通向设置在流路上游的喷射阀。 溢流管线具有两条供应管线,其第一供应管线在高压预热器上游的流动介质侧上分支,而第二供应管线在高压预热器下游的流动介质侧分支。
    • 20. 发明授权
    • Method for regulating a brief increase in power of a steam turbine
    • 用于调节蒸汽轮机功率短暂增加的方法
    • US09080467B2
    • 2015-07-14
    • US14001281
    • 2012-02-10
    • Jan BrücknerMartin EffertFrank Thomas
    • Jan BrücknerMartin EffertFrank Thomas
    • F01K13/02F22D11/00F22B35/10F22G5/12F22G5/02
    • F01K13/02F22B35/10F22D11/00F22D11/003F22G5/02F22G5/12
    • A method is provided for regulating a brief increase in power of a steam turbine that has an upstream fossil-fired once-through steam generator having a plurality of economizer, evaporator and superheater heating surfaces which form a flow path and through which a flow medium flows. The flow of the flow medium through the fossil-fired once-through steam generator is increased in order to achieve the brief increase in power of the steam turbine. The method involves using desired enthalpy value at the outlet of an evaporator heating surface as a control variable for determining a desired value for the flow of the flow medium through the fossil-fired once-through steam generator. The desired enthalpy value is reduced in order to achieve the brief increase in power of the steam turbine.
    • 提供了一种用于调节具有上游化石燃烧的一次通过蒸汽发生器的蒸汽轮机的功率的简单增加的方法,所述上游化石燃烧的一次蒸汽发生器具有形成流动路径的多个节能器,蒸发器和过热器加热表面,并且流动介质流过该蒸发器 。 通过化石燃烧的直通式蒸汽发生器的流动介质的流动增加,以实现蒸汽轮机的功率的短暂增加。 该方法包括在蒸发器加热表面的出口处使用期望的焓值作为控制变量,以确定通过化石燃烧的直通式蒸汽发生器的流动介质的流动的期望值。 为了实现蒸汽轮机的功率的短暂增加,所需的焓值被降低。