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    • 21. 发明申请
    • TEMPLATE FOR FORMING COOLING PASSAGES IN A TURBINE ENGINE COMPONENT
    • 在涡轮发动机部件中形成冷却通道的模板
    • WO2014028189A1
    • 2014-02-20
    • PCT/US2013/051950
    • 2013-07-25
    • SIEMENS ENERGY, INC.OLIVER VARGAS, Ivan F.
    • OLIVER VARGAS, Ivan F.
    • B23H9/10B23H9/14B23H1/02B23H1/00
    • B23H9/10B23H1/00B23H9/14
    • A reusable template (18) for simultaneously forming a plurality of cooling passages (Cp) in a component (12) for use in a turbine engine includes a first surface defining an electrode entry surface, a second surface opposed from the first surface and defining a component mating surface, and a plurality of electrode passages pre-formed in the template and extending from the first surface to the second surface. The second surface (22) of the template has a shape that corresponds to an outer surface (26) of the component such that the template is capable of being snugly positioned against the outer surface of the component. During an electro-discharge machining operation, a plurality of electrodes are simultaneously inserted through the pre-formed electrode passages in the template and into the component while supplying an electric current to the electrodes to remove material from the component so as to form the cooling passages therein.
    • 一种用于在用于涡轮发动机的部件(12)中同时形成多个冷却通道(Cp)的可重复使用的模板(18)包括限定电极进入表面的第一表面,与第一表面相对的第二表面, 组件配合表面,以及预先形成在模板中并从第一表面延伸到第二表面的多个电极通道。 模板的第二表面(22)具有对应于部件的外表面(26)的形状,使得模板能够紧贴于部件的外表面定位。 在放电加工操作期间,多个电极同时插入模板中的预先形成的电极通道并进入部件中,同时向电极提供电流以从部件去除材料,以形成冷却通道 在其中。
    • 24. 发明申请
    • SYSTEM AND METHOD FOR DETECTING ELECTRIC POWER PLANT EQUIPMENT OVERHEATING WITH REAL-TIME PLURAL PARALLEL DETECTION AND ANALYSIS PARAMETERS
    • 用于实时检测电动工厂设备的实时平行检测和分析参数的系统和方法
    • WO2013165818A1
    • 2013-11-07
    • PCT/US2013/038308
    • 2013-04-26
    • SIEMENS ENERGY, INC.THOMPSON, Edward D.
    • THOMPSON, Edward D.
    • G05B17/00
    • G05B23/0235F01K13/02F01K23/00
    • An overheating detection processing system monitors in real time and stores data samples from the different types of power plant overheating detectors. The system determines a likelihood of whether a stored detector output sample reading, alone or in combination with other readings, is indicative of monitored power plant equipment overheating. The system references previously stored information in an information storage device that associates respective types of detector sample reading levels with equipment overheating. The system also compares a combination of stored sample readings and establishes overheating determination confidence levels. The confidence levels information is combined to derive an overall confidence level of whether the power plant equipment is overheated. An overheating alarm response is initiated if an overheating condition is determined at any confidence level. Additional responses are made based on a combination of calculated confidence levels.
    • 过热检测处理系统实时监控并存储来自不同类型的发电厂过热检测器的数据样本。 该系统确定存储的检测器输出样品读数单独或与其他读数组合是否表示监控的发电厂设备过热的可能性。 该系统将先前存储的信息引用到将检测器样本读取级别与设备过热相关联的信息存储设备中。 该系统还比较存储的样本读数的组合,并建立过热确定置信水平。 组合置信水平信息以得出发电厂设备是否过热的总体置信水平。 如果在任何置信水平确定过热条件,则启动过热报警响应。 基于计算的置信水平的组合进行额外的回应。
    • 28. 发明申请
    • SYSTEM AND METHOD FOR ONLINE INSPECTION OF TURBINES INCLUDING TEMPERATURE AND VIBRATION COMPENSATING LENS MOUNT
    • 用于在线检查涡轮机的系统和方法,包括温度和振动补偿镜头安装
    • WO2013116006A1
    • 2013-08-08
    • PCT/US2013/022013
    • 2013-01-18
    • SIEMENS ENERGY, INC.BALEINE, ErwanJONNALAGADDA, VinaySAVARD, Michael
    • BALEINE, ErwanJONNALAGADDA, VinaySAVARD, Michael
    • G02B7/02G02B23/24
    • G02B23/2492G02B7/028G03B17/12G03B17/55H04N5/23287H04N2005/2255
    • Optical camera systems for nondestructive internal inspection of online, operating power generation turbines, including gas turbine combustor and turbine sections that are at high operating temperatures in the range of over 600°C (1112°F). The system includes one or more temperature and vibration-compensating lens systems in the optical tube mount. The lens is circumferentially retained within a lens mount, with a mounting ring in contact with only the lens axial face. A biasing element exerts axially oriented biasing force on the first lens face through the first mounting ring, allowing for mount flexure in response to operational turbine vibration and temperature changes. The lens mount is advantageously combined with aspheric lenses capable of withstanding continuous operating temperatures above 600°C. The aspheric lenses, alone or in combination with spherical lenses, establish a wider field of view, and require fewer lenses in combination than lens mounts incorporating only spherical lenses.
    • 在超过600°C(1112°F)范围内的高工作温度下在线,运行的发电涡轮机,包括燃气轮机燃烧器和涡轮机部分的非破坏性内部检查的光学相机系统。 该系统在光学管座中包括一个或多个温度和振动补偿透镜系统。 透镜周向地保持在透镜安装件内,安装环仅与透镜轴向面接触。 偏置元件通过第一安装环在第一透镜面上施加轴向取向的偏压力,从而允许响应于涡轮机运行的振动和温度变化而进行安装弯曲。 透镜座有利地与能够承受高于600℃的连续工作温度的非球面透镜组合。 非球面透镜单独或与球面透镜组合建立了更宽的视野,并且与仅包含球面透镜的透镜座相比,需要较少的透镜组合。