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    • 1. 发明授权
    • Horizontally assembled steam generator
    • 水平组装蒸汽发生器
    • US07428374B2
    • 2008-09-23
    • US10527279
    • 2003-08-28
    • Joachim FrankeRudolf KralEberhard Wittchow
    • Joachim FrankeRudolf KralEberhard Wittchow
    • F22B29/06
    • F22B1/1815
    • Disclosed is a steam generator in which a continuous evaporating heating area is disposed within a heating gas duct that is penetrated in a nearly horizontal direction by a heating gas. Said continuous evaporating heating area comprises a number of steam-generating pipes that are connected in parallel and are penetrated by a flowing medium and is configured such that a steam-generating pipe which is heated more than another steam-generating pipe of the same continuous evaporating heating area has a higher throughput of the flowing medium than said other steam-generating pipe. The aim of the invention is to create a steam generator which provides a particularly high degree of stability of flow during operation of the continuous evaporating heating area while keeping the structural complexity and design comparatively simple. Said aim is achieved by means of a discharge collector which is mounted downstream of the steam-generating pipes of the continuous evaporating heating area on the side of the flowing medium, and the longitudinal axis of which is located essentially parallel to the direction of the heating gas.
    • 公开了一种蒸汽发生器,其中连续蒸发加热区域设置在通过加热气体在大致水平方向上穿透的加热气体管道内。 所述连续蒸发加热区域包括并联连接并被流动介质穿透的多个蒸汽发生管,并且被配置为使得蒸汽发生管被加热到相同连续蒸发的另一个蒸汽发生管 加热区域具有比所述其它蒸汽发生管道更高的流动介质的通过量。 本发明的目的是创造一种蒸汽发生器,其在连续蒸发加热区域的操作期间提供特别高的流动稳定性,同时保持结构复杂性和设计比较简单。 所述目的通过一种放电收集器实现,该集电器安装在流动介质一侧的连续蒸发加热区域的蒸汽发生管的下游,其纵轴基本上平行于加热方向 加油站。
    • 2. 发明授权
    • Operating method for a horizontal steam generator and a steam generator for carrying out said method
    • US07116899B2
    • 2006-10-03
    • US10527278
    • 2003-08-28
    • Joachim FrankeRudolf KralEberhard Wittchow
    • Joachim FrankeRudolf KralEberhard Wittchow
    • F22B29/06
    • F22B1/1815
    • The invention relates to a steam generator in which the continuous heating panel of an evaporator is arranged in a heating gas channel which can be cross-flown in a more or less horizontal direction of a heating gas. Said continuous heating panel of the evaporator comprises a plurality of pipes of a steam generator which are connected in parallel to each other. Said pipes are constructed in such a way that they cross a flow medium and are provided with the part of a more or less vertical down pipe which can be cross-flown by the flow medium in a downward direction and with the part of a rising pipe connected downstream with respect to the down pipe on the side of the flow medium and which is more or less vertical and can be cross-flown by the flow medium in an upward direction. The continuous heating panel of the evaporator is arranged in such a way that one pipe of the steam generator which is hotter than the other pipe of the steam generator of the same continuous heating panel of the evaporator has a flow medium rate which is higher than that of the other pipe of the steam generator. The aim of said invention is to operate said steam generator in a relatively simple manner in association with a highly stable flow in the continuous heating panel of the evaporator. For this purpose, the flow medium of the continuous heating panel of the evaporator is supplied in such a way that the flow velocity thereof is higher than a minimum flow velocity predefined in the down pipe. The inventive steam generator is extremely well adapted for carrying out said method and comprises another continuous heating panel of the evaporator which is connected downstream with respect to the continuous heating panel of the evaporator on the side of the flow medium.
    • 3. 发明申请
    • Operating method for a horizontal steam generator and a steam generator for carrying out said method
    • 水平蒸汽发生器和蒸汽发生器的操作方法,用于执行所述方法
    • US20060081359A1
    • 2006-04-20
    • US10527278
    • 2003-08-28
    • Joachim FrankeRudolf KralEberhard Wittchow
    • Joachim FrankeRudolf KralEberhard Wittchow
    • F28D15/00
    • F22B1/1815
    • The invention relates to a steam generator in which the continuous heating panel of an evaporator is arranged in a heating gas channel which can be cross-flown in a more or less horizontal direction of a heating gas. Said continuous heating panel of the evaporator comprises a plurality of pipes of a steam generator which are connected in parallel to each other. Said pipes are constructed in such a way that they cross a flow medium and are provided with the part of a more or less vertical down pipe which can be cross-flown by the flow medium in a downward direction and with the part of a rising pipe connected downstream with respect to the down pipe on the side of the flow medium and which is more or less vertical and can be cross-flown by the flow medium in an upward direction. The continuous heating panel of the evaporator is arranged in such a way that one pipe of the steam generator which is hotter than the other pipe of the steam generator of the same continuous heating panel of the evaporator has a flow medium rate which is higher than that of the other pipe of the steam generator. The aim of said invention is to operate said steam generator in a relatively simple manner in association with a highly stable flow in the continuous heating panel of the evaporator. For this purpose, the flow medium of the continuous heating panel of the evaporator is supplied in such a way that the flow velocity thereof is higher than a minimum flow velocity predefined in the down pipe. The inventive steam generator is extremely well adapted for carrying out said method and comprises another continuous heating panel of the evaporator which is connected downstream with respect to the continuous heating panel of the evaporator on the side of the flow medium.
    • 本发明涉及一种蒸汽发生器,其中蒸发器的连续加热板布置在加热气体通道中,该加热气体通道可以在加热气体的或多或少的水平方向上交叉流动。 所述蒸发器的连续加热板包括彼此并联连接的多个蒸汽发生器管。 所述管道构造成使得它们穿过流动介质并且设置有或多或少垂直的下管的一部分,该垂直向下管可以沿流动介质在向下的方向和与上升管的一部分交叉流动 相对于流动介质侧的下管连接在下游,并且其垂直方向或多或少垂直,并且可以由流动介质沿向上方向交叉流动。 蒸发器的连续加热板以这样的方式布置,使得比蒸发器的相同连续加热板的蒸汽发生器的另一个管更热的蒸汽发生器的一个管道的流动介质速率高于 的蒸汽发生器的另一个管道。 所述发明的目的是以相对简单的方式操作所述蒸汽发生器,与蒸发器的连续加热板中的高度稳定的流相关联。 为此,蒸发器的连续加热板的流动介质以其流速高于下管中预定的最小流速的方式供给。 本发明的蒸汽发生器非常适合于执行所述方法,并且包括蒸发器的另一连续加热板,其相对于流动介质侧的蒸发器的连续加热板连接在下游。
    • 4. 发明申请
    • Horizontally assembled steam generator
    • 水平组装蒸汽发生器
    • US20050257753A1
    • 2005-11-24
    • US10527279
    • 2003-08-28
    • Joachim FrankeRudolf KralEberhard Wittchow
    • Joachim FrankeRudolf KralEberhard Wittchow
    • F22B1/18F22B29/06F22B37/22F22D7/00
    • F22B1/1815
    • Disclosed is a steam generator in which a continuous evaporating heating area is disposed within a heating gas duct that is penetrated in a nearly horizontal direction by a heating gas. Said continuous evaporating heating area comprises a number of steam-generating pipes that are connected in parallel and are penetrated by a flowing medium and is configured such that a steam-generating pipe which is heated more than another steam-generating pipe of the same continuous evaporating heating area has a higher throughput of the flowing medium than said other steam-generating pipe. The aim of the invention is to create a steam generator which provides a particularly high degree of stability of flow during operation of the continuous evaporating heating area while keeping the structural complexity and design comparatively simple. Said aim is achieved by means of a discharge collector which is mounted downstream of the steam-generating pipes of the continuous evaporating heating area on the side of the flowing medium, and the longitudinal axis of which is located essentially parallel to the direction of the heating gas.
    • 公开了一种蒸汽发生器,其中连续蒸发加热区域设置在通过加热气体在大致水平方向上穿透的加热气体管道内。 所述连续蒸发加热区域包括并联连接并被流动介质穿透的多个蒸汽发生管,并且被配置为使得蒸汽发生管被加热到相同连续蒸发的另一个蒸汽发生管 加热区域具有比所述其它蒸汽发生管道更高的流动介质的通过量。 本发明的目的是创造一种蒸汽发生器,其在连续蒸发加热区域的操作期间提供特别高的流动稳定性,同时保持结构复杂性和设计比较简单。 所述目的通过一种放电收集器实现,该集电器安装在流动介质一侧的连续蒸发加热区域的蒸汽发生管的下游,其纵轴基本上平行于加热方向 加油站。
    • 5. 发明授权
    • Steam generator
    • 蒸汽发生器
    • US06189491B1
    • 2001-02-20
    • US09333146
    • 1999-06-14
    • Eberhard WittchowJoachim FrankeRudolf Kral
    • Eberhard WittchowJoachim FrankeRudolf Kral
    • F22D100
    • F22B1/1815F22B29/06F22B37/12F22B37/74
    • A steam generator which is both suitable for a horizontal mode of construction and offers the advantages of a continuous steam generator. According to the invention, a steam generator has at least one continuous heating surface disposed in a duct where hot gas circulates in a substantially horizontal direction. The heating surface consists of a plurality of parallel and almost vertical pipes which are used to circulate a fluid, and is configured in such a way that the fluid circulating in a tube heated to a greater temperature than the following tube of the same continuous heating surface has a higher flow rate than the fluid circulating in the following tube.
    • 一种蒸汽发生器,既适用于水平施工方式,又具有连续蒸汽发生器的优点。 根据本发明,蒸汽发生器具有设置在管道中的至少一个连续的加热表面,其中热气体在基本水平的方向上循环。 加热表面由用于循环流体的多个平行和几乎垂直的管道组成,并且被配置成使得在管中循环的流体被加热到比相同连续加热表面的随后管更大的温度 具有比在后续管中循环的流体更高的流速。
    • 6. 发明授权
    • Fossil fuel-fired continuous-flow steam generator
    • 化石燃料连续式蒸汽发生器
    • US06446580B2
    • 2002-09-10
    • US09883446
    • 2001-06-18
    • Joachim FrankeRudolf KralEberhard Wittchow
    • Joachim FrankeRudolf KralEberhard Wittchow
    • F22G300
    • F22B21/346
    • The fossil fuel fired continuous-flow steam generator has a gas turbine combustion chamber for fossil combustibles. On the heating gas side a vertical gas extractor is mounted downstream of a horizontal gas extractor. The walls surrounding the combustion chamber are composed of vertical evaporator tubes that are welded together. During operation the temperature differences between adjacent evaporator tubes of the combustion chamber are kept as low as possible. The burners are arranged at the level of the horizontal gas extractor. For a number of evaporator tubes which can be simultaneously impinged by the flow medium the ratio of the steam generating capacity M (in kg/s) at full load and of the sum A (in m2) of the inner cross-sectional surfaces of the same evaporator tubes is less than 1350 (in kg/sm2).
    • 化石燃料燃烧的连续蒸汽发生器具有用于化石可燃物的燃气轮机燃烧室。 在加热气体侧,垂直气体提取器安装在水平气体提取器的下游。 围绕燃烧室的壁由垂直的蒸发器管组成,焊接在一起。 在操作期间,燃烧室的相邻蒸发器管之间的温度差保持尽可能低。 燃烧器布置在水平气体提取器的水平面上。 对于可以同时被流动介质冲击的多个蒸发器管,满载时的蒸汽产生能力M(以kg / s计)和总负载的总和A(以m2为单位) 相同的蒸发器管小于1350(kg / sm2)。
    • 10. 发明授权
    • Steam generator
    • 蒸汽发生器
    • US5056468A
    • 1991-10-15
    • US648904
    • 1991-01-31
    • Eberhard WittchowJoachim FrankeWolfgang Vollmer
    • Eberhard WittchowJoachim FrankeWolfgang Vollmer
    • F22B35/00F22B29/02F22B35/02F22B35/08F22B37/14F22D5/26F22G5/12
    • F22B29/026F22B35/02F22B35/086F22B37/141F22D5/26
    • A steam generator includes a gas flue having burners for fossil fuel, a gas-tight tube wall with tubes, inlet and outlet headers connected to the tubes, the outlet header being at a higher level than the inlet header, and a down pipe outside the tube wall connecting the outlet to the inlet header. A steam line is connected to the outlet header and at least one heating surface is connected downstream of the outlet header in the steam line. A feedwater line is connected to the gas flue and an economizer is connected upstream of the gas flue in the feedwater line. A regulating device for influencing feedwater flow in the feedwater line detects at least one of: the steam enthalpy in the heating surface or the steam line downstream of the heating surface, the steam temperature in the heating surface or the steam line downstream of the heating surface, the thermal output transfer to the tubes, a ratio of feedwater flow in the feedwater line to steam flow in the steam line, a ratio of injection water flow into an injection cooler connected in the steam line to feedwater flow in the feedwater line, and residual moisture of steam in the steam line.
    • 蒸汽发生器包括具有用于化石燃料的燃烧器的气体烟道,具有管的气密管壁,连接到管的入口和出口集管,出口集管处于比进口集管更高的水平, 将出口连接到入口集管的管壁。 蒸汽管线连接到出口集管,并且至少一个加热表面连接在蒸汽管线中的出口集管的下游。 给水管线连接到气体烟道,并且节约器连接在给水管线中的气体烟道的上游。 用于影响给水管线中的给水流量的调节装置检测以下至少一个:加热表面中的蒸汽焓或加热表面下游的蒸汽管线,加热表面中的蒸汽温度或加热表面下游的蒸汽管线 ,热量输出到管中,给水管线中的给水流量与蒸汽管线中的蒸汽流量的比率,连接在蒸汽管线中的注射冷却器中的注入水流量与给水管线中的给水流量的比率,以及 蒸汽管线中蒸汽的残留水分。