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    • 2. 发明授权
    • Switchgear unit for switching high DC voltages
    • 用于切换高直流电压的开关柜
    • US08766760B2
    • 2014-07-01
    • US13537918
    • 2012-06-29
    • Waldemar WeberKlaus WernerHubert HarrerWolfgang Schmidt
    • Waldemar WeberKlaus WernerHubert HarrerWolfgang Schmidt
    • H01H85/00H01H71/20H01H85/02
    • H01H9/32H01H37/761H01H71/122H01H83/10
    • A switchgear unit switches high DC voltages, particularly for interrupting of direct current between a direct current source and an electrical device. The switchgear unit contains two connections which project from a housing and which are electrically conductively coupled by a conductor path, a contact system which is arranged between the first and second connections and an isolating apparatus that can be tripped by a thermal fuse. The thermal fuse contains a melting location which is arranged in the conductor path and which is connected first to the contact system and second via a moving conductor section to the first connection. The isolating apparatus is tripped and the connection between the conductor section and the contact system is broken at the melting location when an arc produced when the contact system is opened has caused the melting temperature of the melting location to be reached or exceeded.
    • 开关柜单元切换高直流电压,特别是用于中断直流电源和电气设备之间的直流电。 开关装置包含从外壳突出并且通过导体路径导电耦合的两个连接,设置在第一和第二连接之间的接触系统以及可被热熔断器跳闸的隔离装置。 热熔丝包含布置在导体路径中的熔化位置,其首先连接到接触系统,而第二通过移动导体部分连接到第一连接。 当接触系统打开时产生的电弧导致熔化位置的熔化温度达到或超过,隔离装置跳闸,并且导体部分和接触系统之间的连接在熔化位置断裂。
    • 5. 发明申请
    • Adjunct Processor Load Balancing
    • 兼容处理器负载平衡
    • US20090217286A1
    • 2009-08-27
    • US12362912
    • 2009-01-30
    • Joerg SchmidbauerKlaus Werner
    • Joerg SchmidbauerKlaus Werner
    • G06F9/46
    • G06F9/5044G06F9/505G06F2209/5019
    • Managing the workload across one or more partitions of a plurality of partitions of a computing environment. One or more processors are identified in a partition to be managed by a quality weight defined according to characteristics of each corresponding processor. A load of each identified processor is measured depending on the requests already allocated to be processed by each corresponding processor. Each identified processor has a performance factor determined based on the measured load and the quality weight. The performance factor is a measurement of processor load. A new request is identified to be allocated to the partition, selecting a processor from the partition with the lowest performance factor. The new request is allocated to the selected processor.
    • 在计算环境的多个分区的一个或多个分区上管理工作负载。 一个或多个处理器在由要由每个对应的处理器的特性定义的质量权重的分区中被识别。 每个识别的处理器的负载根据已被分配以由每个对应的处理器处理的请求来测量。 每个识别的处理器具有基于测量的负载和质量权重确定的性能因素。 性能因素是处理器负载的测量。 一个新的请求被标识分配给该分区,从具有最低性能因素的分区中选择一个处理器。 新请求被分配给所选择的处理器。
    • 6. 发明授权
    • Fuel preheating in a gas turbine
    • 燃气轮机中的燃料预热
    • US06381945B2
    • 2002-05-07
    • US09817673
    • 2001-03-26
    • Klaus Werner
    • Klaus Werner
    • F02C712
    • F01D5/185F02C7/16F02C7/224F05D2260/20F05D2260/232
    • A gas turbine and a method for operating a gas turbine includes a combustion chamber, a turbine having rows of blades, an air compressor, a combustion-air line for feeding compressed air into the combustion chamber, a fuel supply unit, at least one fuel line, at least one cooling-air line. Some of the blades have an interior defining cavities whereby first cavities direct at least a portion of fuel to the combustion chamber through the first cavities at least in a section of the blades, thereby preheating the fuel before being introduced into the combustion chamber. The system defined by the first cavities and the section of the blades is closed relative to an interior of the gas turbine. Second cavities fluidically connect to the air compressor and receive at least a portion of the cooling air for cooling the blades.
    • 燃气轮机和操作燃气轮机的方法包括燃烧室,具有一排叶片的涡轮机,空气压缩机,用于将压缩空气供入燃烧室的燃烧空气管线,燃料供给单元,至少一种燃料 至少有一条冷气线。 一些叶片具有限定空腔的内部,由此第一空腔至少在叶片的一部分中通过第一空腔将至少一部分燃料引导到燃烧室,从而在引入燃烧室之前预热燃料。 由第一腔体和叶片的截面限定的系统相对于燃气轮机的内部封闭。 第二腔流体地连接到空气压缩机并且接收至少一部分冷却空气以冷却叶片。
    • 7. 发明授权
    • Electric connector
    • 电连接器
    • US4981440A
    • 1991-01-01
    • US475218
    • 1990-02-05
    • Klaus WernerHelmut FriesSiegfried Kleufer
    • Klaus WernerHelmut FriesSiegfried Kleufer
    • H01R24/00H01R13/193
    • H01R13/193
    • An electric connector includes two complementary connector members, one of which has spring contacts as contact elements and the other has blade contacts as contact elements, wherein the contact elements are mounted in a row or in several parallel rows on base members. The base members are mounted on frame-like enclosing members of housings which extend parallel to the direction of insertion of the contact elements and which serve for the mutual guidance of the housings during the insertion. In the joined state of the connector members, the spring contacts and the corresponding blade contacts can be placed in contact with each other and out of contact from each other by means of contact slide members which are displaceable along the row or rows of contact elements. The connector members can be positively coupled transversely of the direction of insertion by means of locking slide members. The contact slide members and the locking slide members are mounted on the same connector member and are in engagement with a common swivel lever mounted on the same connector member. The engagement between the contact members and the locking slide members is such that, during the coupling procedure as well as during the uncoupling procedure, initially only the locking slide members are movable and the contact slide members are movable subsequently.
    • 电连接器包括两个互补的连接器构件,其中一个具有作为接触元件的弹簧触点,另一个具有作为接触元件的叶片触点,其中接触元件以一排或几个平行的行安装在基座构件上。 基座构件安装在平行于接触元件的插入方向延伸的壳体的框架状封闭构件上,并且用于在插入期间相互引导壳体。 在连接器构件的连接状态下,弹簧触点和相应的叶片触点可以通过可沿着一排或多行接触元件移位的触头滑动构件彼此接触并且彼此脱离接触。 连接器构件可以通过锁定滑动构件横向于插入方向。 接触滑动构件和锁定滑动构件安装在相同的连接器构件上并且与安装在同一连接器构件上的公共旋转杆接合。 接触构件和锁定滑动构件之间的接合使得在联接过程期间以及在非连接过程期间,最初只有锁定滑动构件是可移动的并且接触滑动构件随后可移动。
    • 8. 发明授权
    • Method for determining the suction mass flow of a gas turbine
    • 确定燃气轮机抽吸质量流量的方法
    • US09466152B2
    • 2016-10-11
    • US12934358
    • 2009-03-24
    • Klaus Werner
    • Rolf Grosse-LaxzenKlaus Werner
    • G01M15/00G07C3/00F01D25/00
    • G07C3/00F01D25/002F05D2270/44F05D2270/708F05D2270/71
    • A method for determining a suction mass flow of a gas turbine is provided. A turbine inlet pressure, a combustion chamber pressure loss and a pressure loss between an environment and a compressor inlet are determined as input parameters. For each input parameter a provisional value for the suction mass flow is ascertained and for each provisional value a validated value by cross-balancing with the other provisional values is ascertained. A characteristic quantity of the suction mass flow of the gas turbine is generated as an average value from the validated values. The suction mass flow is determined without solving energy balances, without information relating to a fuel calorific value, and without information relating to a fuel mass flow.
    • 提供了一种用于确定燃气轮机的抽吸质量流量的方法。 涡轮进口压力,燃烧室压力损失和环境与压缩机入口之间的压力损失被确定为输入参数。 对于每个输入参数,确定吸入质量流量的临时值,并且对于每个临时值,确定通过与其他临时值的交叉平衡的验证值。 燃气轮机的抽吸质量流量的特征量作为来自验证值的平均值生成。 在没有解决能量平衡的情况下确定吸入质量流量,没有与燃料热值相关的信息,并且没有与燃料质量流量有关的信息。
    • 9. 发明申请
    • COMPRESSOR BLADE WITH NOZZLE
    • 压缩机叶片带喷嘴
    • US20140140858A1
    • 2014-05-22
    • US14131524
    • 2012-07-13
    • Klaus Werner
    • Klaus Werner
    • F01D5/18
    • F01D5/18F02C7/1435
    • A compressor blade having at least one nozzle for ejecting fluid, in particular for ejecting water, is provided. The at least one nozzle is produced as a laminar structure in which, in particular, individual layers such as metal sheets are laid on top of each other, and has differently orientated channel sections of a channel between an inlet and an outlet, wherein the metal sheets have cutouts corresponding to the channel sections. The nozzle geometry makes it possible to prevent the formation of droplets as water exits a compressor blade.
    • 提供一种压缩机叶片,其具有用于喷射流体的至少一个喷嘴,特别是用于喷射水的喷嘴。 所述至少一个喷嘴被制造成层状结构,其中特别地,诸如金属板的单个层彼此叠置,并且在入口和出口之间具有不同方向的通道部分,其中金属 纸张具有对应于通道部分的切口。 喷嘴几何形状使得可以防止水在离开压缩机叶片时形成液滴。
    • 10. 发明授权
    • Spool carrier having a special contour
    • 具有特殊外形的线轴承架
    • US08704421B2
    • 2014-04-22
    • US12672746
    • 2008-08-08
    • Uwe ScheinKlaus WernerHeinrich Zuber
    • Uwe ScheinKlaus WernerHeinrich Zuber
    • H02K3/34
    • H02K3/522H02K2203/12
    • A spool carrier has a winding body with a shell having a trapezoidal cross section with two substantially right angles and one acute angle, wherein the spool wire is guided on the obtuse angle edge of the winding body, beginning parallel to the front face edges of the winding body, along the side surface adjoining the obtuse angle edge, around the winding body, to the acute angle edge of the winding body, and guided on the front face from the acute to the obtuse angle edge at an angle to the front face edge, such that it comes to rest on the obtuse angle edge in one winding step directly adjacent to the winding wire of the previous winding, and in one winding step in the next adjacent groove between two windings of the previous layer, or optionally between the flange and the winding of the previous layer.
    • 卷轴托架具有带有壳体的卷绕体,该壳体具有两个基本上直角和一个锐角的梯形横截面,其中卷轴线在卷绕体的钝角边缘上被引导,平行于卷绕体的前表面边缘 卷绕体沿着与钝角相邻的侧面围绕卷绕体转动到卷绕体的锐角边缘,并且在前表面上从锐角到钝角边缘以与前表面边缘成一定角度被引导 ,使得其直接邻近前一绕组的绕组线的一个绕组步骤中的钝角边缘上,并且在前一层的两个绕组之间的下一相邻槽中的一个卷绕步骤中,或者可选地在凸缘之间 和上一层的缠绕。