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    • 71. 发明授权
    • Method for starting a continuous steam generator and continuous steam generator for carrying out said method
    • 用于启动连续蒸汽发生器和连续蒸汽发生器以执行所述方法的方法
    • US07587133B2
    • 2009-09-08
    • US10570653
    • 2004-08-02
    • Joachim FrankeRudolf KralDieter Schiesser
    • Joachim FrankeRudolf KralDieter Schiesser
    • F22B1/20F22B3/12F22D1/00
    • F22B1/1815F22B29/06F22B35/14Y02P80/156
    • The invention relates to a continuous steam generator provided with an evaporator through flow heating surface which is disposed in a heating gas channel which can be cross flown in an approximately vertical manner in a heating gas device, said evaporator through flow heating surface comprising a plurality of parallel connected steam generating pipes enabling a flow medium to flow through, and an overheating heating surface which is arranged downstream from the evaporator through flow heating surface comprising a plurality of parallel connected overheating pipes enabling the evaporated flow medium to flow through, also enabling production and operational costs to be reduced and enabling the temperature of the steam on the outlet of the overheating heating surface to be controlled in a comparatively simple and flexible manner. The steam end-point of the flow medium is displaced to the overheating pipe, if required. The continuous heating surfaces and the overheating heating surfaces are combined to form one functional unit such that the overheating heating surface can be used as a steam heating surface in a continuous steam generator which is particularly suitable for carrying out said method.
    • 本发明涉及一种连续蒸汽发生器,其具有通过流动加热表面的蒸发器,该蒸发器设置在加热气体通道中,加热气体通道可以在加热气体装置中以大致垂直的方式交叉流动,所述蒸发器通过流动加热表面包括多个 平行连接的蒸汽发生管,使得流动介质流过;以及过热加热表面,其通过流动加热表面布置在蒸发器的下游,该加热表面包括多个平行连接的过热管,使得蒸发的流动介质流过, 减少运行成本,并以相对简单和灵活的方式控制过热加热表面出口的蒸汽温度。 如果需要,流动介质的蒸汽终点被移动到过热管道。 连续加热表面和过热加热表面组合形成一个功能单元,使得过热加热表面可以用作连续蒸汽发生器中的蒸汽加热表面,其特别适合于执行所述方法。
    • 72. 发明授权
    • Horizontally constructed continuous steam generator and method for the operation thereof
    • 水平构造连续蒸汽发生器及其操作方法
    • US07406928B2
    • 2008-08-05
    • US10570652
    • 2004-08-02
    • Joachim FrankeRudolf Kral
    • Joachim FrankeRudolf Kral
    • F22B35/10
    • F22B29/06F22B1/1815
    • The invention relates to a continuous steam generator provided, in a duct for hot gas circulating in a substantially horizontal direction, with a continuous heating surface of an evaporator comprising a plurality of steam generator tubes which are mounted in parallel for circulating a fluid flow. The inventive device requires exceptionally low construction expenditures and ensures a high degree of safety and a high efficiency. For this purpose, the continuous heating surface of the evaporator is characterized in that it comprises a segment of the heating surface through which a moving fluid flows in an opposite direction with respect to the heated gas direction is positioned in such a way that a saturated steam temperature which is adjusted during operation at the exit from the continuous heating surface deviates from the predetermined maximum value of the temperature of the gas prevailing during operation at the outlet of the segment of the heating surface. In addition, one or several entry collectors are disposed at a close distance from the outlet of the heating surface on the gas side in such a way that the moving fluid has a flow speed in the downpipe which is higher than the minimum speed required for pulling nascent steam bubbles.
    • 本发明涉及一种连续蒸汽发生器,其设置在用于在大致水平方向上循环的热气体的管道中,蒸发器的连续加热表面包括多个并联安装的蒸汽发生器管,用于循环流体流。 本发明的装置需要非常低的施工费用,并确保高度的安全性和高效率。 为此,蒸发器的连续加热表面的特征在于它包括加热表面的一部分,运动流体相对于被加热的气体方向沿相反方向流动,该区域以这样的方式定位,使得饱和蒸汽 在连续加热表面的出口处操作期间调节的温度偏离在加热表面的段的出口处的操作期间主要的气体的温度的预定最大值。 此外,一个或几个入口收集器被设置在与气体侧的加热表面的出口相近的距离处,使得移动流体具有比下拉管中的流速高于拉动所需的最小速度 新生蒸气泡。
    • 73. 发明授权
    • Method for starting a steam generator comprising a heating gas channel that can be traversed in an approximately horizontal heating gas direction and a steam generator
    • 一种用于启动蒸汽发生器的方法,该蒸汽发生器包括可沿大致水平的加热气体方向穿过的加热气体通道和蒸汽发生器
    • US07281499B2
    • 2007-10-16
    • US10488328
    • 2002-08-20
    • Joachim FrankeRudolf Kral
    • Joachim FrankeRudolf Kral
    • F22B7/00
    • F22B35/14F22B1/1815
    • The invention relates to a steam generator comprising a heating gas channel, which can be traversed in an approximately horizontal heating gas direction and in which at least one continuous heating surface is located, configured from a number of approximately vertical evaporator tubes, connected in parallel to allow the passage of a flow medium. The aim of the invention is to provide a method for starting a generator, which guarantees a high degree of operational safety, even for a steam generator with a particularly simple construction. According to the invention, to achieve this, at least several evaporator tubes are partially filled to a predeterminable desired level with unevaporated flow medium, prior to the impingement of the heating gas channel by a heating gas.
    • 本发明涉及一种蒸汽发生器,其包括加热气体通道,该加热气体通道可沿大致水平的加热气体方向穿过并且其中至少一个连续的加热表面位于其中,其由多个大致垂直的蒸发器管构成,并联连接到 允许流动介质通过。 本发明的目的是提供一种用于启动发电机的方法,即使对于具有特别简单结构的蒸汽发生器也能保证高度的操作安全性。 根据本发明,为了实现这一点,在通过加热气体冲击加热气体通道之前,至少几个蒸发器管部分地被填充到具有未蒸发的流动介质的可预定的期望水平。
    • 74. 发明授权
    • Device for cooling coolant in a gas turbine and gas and steam turbine with said device
    • 用于在燃气轮机中的冷却剂冷却的装置以及具有所述装置的气体和蒸汽轮机
    • US07032373B2
    • 2006-04-25
    • US10719566
    • 2003-11-21
    • Joachim FrankeErich Schmid
    • Joachim FrankeErich Schmid
    • F02C7/12
    • F22B1/1838F01K23/106F02C7/185F28F9/26Y02E20/14Y02E20/16Y02T50/675
    • The aim of the invention is a device for coolant cooling in a gas turbine which, with a relatively simple construction and low plant complexity permits a particularly high degree of efficiency in using the heat produced on cooling the coolant from a gas turbine. Said aim is achieved, whereby a number of interconnected evaporator tubes for a flow medium, are arranged in a coolant channel, connected to a gas turbine, to form forced throughflow steam generator. Said device is preferably used in a gas and steam unit with a waste heat steam generator on the exhaust gas side of a gas turbine, the heating surfaces of which are connected into the water-steam circuit of a steam turbine. The evaporator tubes of the device are thus connected on the inlet side by means of supply line to the feed water train of the water-steam circuit of the steam turbine.
    • 本发明的目的是一种用于燃气轮机中的冷却剂冷却的装置,其以相对简单的结构和低的工厂复杂性允许在使用从燃气轮机冷却冷却剂时产生的热量方面特别高的效率。 所述目的是实现的,其中用于流动介质的多个互连的蒸发器管被布置在连接到燃气轮机的冷却剂通道中,以形成强制通过蒸汽发生器。 所述装置优选用于具有在燃气轮机的排气侧的废热蒸汽发生器的气体和蒸汽单元,其加热表面连接到蒸汽轮机的水蒸汽回路中。 因此,装置的蒸发器管通过供应管线连接到进气侧,连接到蒸汽轮机的水蒸汽回路的给水排。
    • 75. 发明授权
    • Fossil-fired steam generator
    • 化石燃烧蒸汽发生器
    • US06499440B2
    • 2002-12-31
    • US09907761
    • 2001-07-18
    • Joachim FrankeRudolf Kral
    • Joachim FrankeRudolf Kral
    • F22G102
    • F22B21/346Y02P80/154
    • A steam generator has a combustion chamber which is configured for an approximately horizontal main direction of flow of the fuel gas and which is followed on the fuel-gas side, via a horizontal gas flue, by a vertical gas flue. The containment walls of the combustion chamber are formed from evaporator tubes. Temperature differences between adjacent evaporator tubes of the combustion chamber are to be kept particularly low in all the load states of the steam generator. For this purpose, a first group and a second group of evaporator tubes can be acted upon in each case in parallel by a flow medium. The first group of evaporator tubes is connected in series with the second group.
    • 蒸汽发生器具有燃烧室,该燃烧室构造成用于燃料气体的大致水平的主要流动方向,并且经由水平气体烟道,通过垂直气体烟道在燃料 - 气体侧遵循。 燃烧室的容纳壁由蒸发器管形成。 在蒸汽发生器的所有负载状态下,燃烧室的相邻蒸发器管之间的温差将保持特别低。 为此,第一组和第二组蒸发器管可以在每种情况下由流动介质平行地起作用。 第一组蒸发器管与第二组串联连接。
    • 76. 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)。