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    • 5. 发明授权
    • Steam power plant provided with a retrofit kit and method for retrofitting a steam power plant
    • 蒸汽发电厂提供改装套件和改造蒸汽发电厂的方法
    • US07458219B2
    • 2008-12-02
    • US10474367
    • 2002-04-09
    • Maurus HerzogRichard Brendon ScarlinCharles Smadja
    • Maurus HerzogRichard Brendon ScarlinCharles Smadja
    • F01K7/34
    • F01K7/16
    • A steam power plant with retrofit kit has a steam generator (1) with superheater, a steam turbine set including condensation installations (11), connecting pipelines, auxiliary devices and a generator (10). The steam power plant (22) is distinguished by the fact that the retrofit kit includes a retrofit turbine module (25) which is designed for elevated temperature and for unchanged or modified pressure and is connected upstream of the existing steam turbine set or is exchanged for the high-pressure turbine of the latter. Furthermore, a method for retrofitting an existing steam power plant includes the following steps: connecting a retrofit turbine module (25) for high operating temperatures and unchanged or modified operating pressure upstream of the existing turbine set or exchanging the existing high-pressure turbine for the retrofit turbine module (25); providing a steam generator (1) and/or superheater (32) for high live steam temperature. This improves the efficiency and/or the service life of an existing steam power plant. The retention of as many original parts of the steam power plant as possible leads to an inexpensive solution for increasing output. Moreover, the general infrastructure can be maintained to the extent that to do so is economical and environmentally compatible.
    • 具有改造套件的蒸汽发电厂具有带有过热器的蒸汽发生器(1),包括冷凝设备(11),连接管道,辅助设备和发电机(10)的蒸汽涡轮机组。 蒸汽发电厂(22)的特征在于改装套件包括改进的涡轮机模块(25),其被设计用于升高的温度和不变的或改进的压力,并连接在现有的蒸汽轮机组的上游,或者被交换为 后者的高压涡轮机。 此外,用于改造现有蒸汽动力装置的方法包括以下步骤:连接用于高运行温度的改装涡轮机组件(25)和在现有涡轮机组上游的未改变或改变的操作压力或者交换现有的高压涡轮机 改装涡轮机组件(25); 提供用于高活蒸汽温度的蒸汽发生器(1)和/或过热器(32)。 这提高了现有蒸汽发电厂的效率和/或使用寿命。 尽可能多地保留蒸汽发电厂的原始部件可能导致提高产量的便宜解决方案。 此外,一般基础设施可以保持在一定程度上,这样做是经济和环境相容的。
    • 6. 发明申请
    • Generator system and method for operating such a system
    • 发电机系统及其运行方法
    • US20050225302A1
    • 2005-10-13
    • US11094672
    • 2005-03-31
    • Maurus HerzogMichael Hiegemann
    • Maurus HerzogMichael Hiegemann
    • H02H7/06H02K7/18H02K11/00H02P9/00H02P9/08H02P9/10H02P9/42H02P11/00
    • H02P9/10H02P9/42
    • The invention relates to a generator system for generating an increased braking power, in particular during the startup and/or powering down of a turbine, drivingly connected to a generator, of a turbine system, e.g. a CAES system. The generator system includes the generator, which for generating current is drivingly connected to the turbine, and a transformer, which is connected on the primary side to the generator and on the secondary side to an external current network. A means for frequency adaptation is disposed between the generator and the transformer and is expediently embodied as capable of being put on line. By putting the means for frequency adaptation on line during the startup and/or the powering down of the turbine system, the turbine is acted upon by a greater braking power. In this way, the development of ventilation in the turbine can be largely avoided.
    • 本发明涉及一种用于产生增加的制动功率的发电机系统,特别是在涡轮机的启动和/或断电期间,驱动地连接到发电机,涡轮机系统,例如涡轮机。 CAES系统。 发电机系统包括用于产生电流的发电机驱动地连接到涡轮机,以及变压器,其在初级侧连接到发电机,次级侧连接到外部电流网络。 用于频率适配的装置设置在发电机和变压器之间,并且有利地体现为能够在线。 通过在启动和/或涡轮机系统的断电期间将用于频率适应的装置放置在线路上,涡轮机被更大的制动功率作用。 这样可以大大避免涡轮机通风的发展。
    • 8. 发明授权
    • Steam turbine
    • 汽轮机
    • US08454306B2
    • 2013-06-04
    • US12622823
    • 2009-11-20
    • Thomas MokulysVishal BorikarGiorgio ZanazziDavor KrizHans-Ludwig BoxheimerLuca RipamontiMaurus HerzogMartin ReiglRolf DoeblerJozo DrmicJian ChenRabiye Bekyigit
    • Thomas MokulysVishal BorikarGiorgio ZanazziDavor KrizHans-Ludwig BoxheimerLuca RipamontiMaurus HerzogMartin ReiglRolf DoeblerJozo DrmicJian ChenRabiye Bekyigit
    • F01D5/18
    • F01D5/08F01D3/04F01D5/082F01D5/084F01D5/087F01D25/12F05D2220/31F05D2260/20F05D2260/231F05D2260/2322
    • A steam turbine (10), especially for the high-pressure range or intermediate-pressure range, includes a rotor (11) which is rotatably mounted around an axis and concentrically enclosed at a distance by an inner casing (12), wherein between the rotor (11) and the inner casing (12) a flow passage (13) is formed, which on the inlet side is axially delimited by a balance piston (18) which is arranged on the rotor (11), and into which flow passage rotor blades (15) and stator blades (17), alternating in the direction of flow, radially project, and wherein, at the entry of the flow passage (13), an inlet scroll (14), through which steam is guided from the outside radially inwards and deflected in a deflection region (27) in the axial direction to the inlet of the flow passage (13), is formed on the inner casing (12). A reduction of the thermal loads and stresses is achieved by a stress-relief slot (20) in the deflection region (27) upstream of the first rotor blade row (15) for reducing stresses in the fastening slot (16) of the first rotor blade row (15) in the rotor (11), and by a heat shield (21) arranged in the region of the stress-relief slot (20) for protecting the rotor (11) against high temperatures.
    • 特别是用于高压范围或中压范围的蒸汽轮机(10)包括转子(11),该转子可围绕轴线可旋转地安装并且通过内壳体(12)同心地封闭一定距离,其中在 转子(11)和内壳体(12)形成有一个流动通道(13),该通道在入口侧由设置在转子(11)上的平衡活塞(18)轴向限定,流道 转子叶片(15)和定子叶片(17),其在流动方向上交替,径向突出,并且其中在流动通道(13)入口处具有入口涡旋件(14),蒸汽从所述入口涡卷 在内壳体(12)上形成有径向向内并在偏转区域(27)中沿着轴向方向偏转到流路(13)的入口的外侧。 通过在第一转子叶片排(15)上游的偏转区域(27)中的应力消除槽(20)来实现热负荷和应力的减小,以减小第一转子的紧固槽(16)中的应力 转子(11)中的叶片排(15)和布置在应力消除槽(20)的区域中的隔热罩(21),用于保护转子(11)免受高温的影响。