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    • 11. 发明授权
    • Method and apparatus for ultrasonic leak location
    • 超声波泄漏位置的方法和装置
    • US5400645A
    • 1995-03-28
    • US109386
    • 1993-08-19
    • Ulrich KunzeWalter KnoblachGunther Schulze
    • Ulrich KunzeWalter KnoblachGunther Schulze
    • B65D90/50G01B17/00G01D1/14G01M3/24G01N29/00G01N29/44G21C17/017
    • G01M3/243G01M3/24
    • A method for ultrasonic leak location includes showing sound levels in a bar diagram at various locations along a measurement segment. The measuring segment is divided into subsegments with intrinsically uniform damping. Effective portions are obtained by multiplying the subsegments by the associated damping coefficient, and an effective portion is assigned to each of the subsegments. Corresponding effective measuring positions are ascertained for the measuring locations within the effective portions. Respective logarithmized net sound levels are plotted through the ascertained effective measuring locations and two inclined straight lines are produced as a result. An intersection of the straight lines in the bar diagram is ascertained for identifying a leak point. An apparatus for ultrasonic leak location includes a number of ultrasound pickups being disposed at measuring locations along a measuring segment, a data processing computer, amplifiers and components forming an effective value. The amplifiers and the components are connected between outputs of the ultrasound pickups and the data processing system.
    • 一种用于超声波泄漏位置的方法包括在测量段的各个位置处示出条形图中的声级。 测量段被分为具有固有均匀阻尼的子段。 通过将子段乘以相关联的阻尼系数获得有效部分,并且将有效部分分配给每个子段。 确定有效部分内的测量位置的对应的有效测量位置。 通过确定的有效测量位置绘制相应的对数净声级,结果产生两条倾斜的直线。 确定条形图中的直线的交点用于识别泄漏点。 一种用于超声波泄漏位置的装置包括多个超声波拾取器,其被设置在测量段的测量位置处,数据处理计算机,放大器和形成有效值的部件。 放大器和组件连接在超声波拾取器和数据处理系统的输出端之间。
    • 13. 发明授权
    • Method for determining the lifecycle of a power station component
    • 确定电站组件生命周期的方法
    • US08069708B2
    • 2011-12-06
    • US12667253
    • 2008-06-27
    • Ulrich KunzeArno Römpke
    • Ulrich KunzeArno Römpke
    • G01M15/00
    • G05B23/0283
    • A method for determining the life cycle of a power station component is provided. The method includes the following steps: definition of a first characteristic for the life cycle of a power station component at a constant output, definition of a second characteristic for the life cycle of the power station component at a variable output, definition of a first equivalence rule as a function from an actual time parameter, definition of a second equivalence rule wherein the pre-defined operation of the power station component at the variable output in accordance with a plurality of second characteristics is depicted, determination of the numbers of first and second characteristics that are generated during the actual operation of the power station, determination of the sum of the numbers of first and second characteristics, and assessment of the life cycle of the power station component using the determined sum.
    • 提供了一种用于确定电站组件的寿命周期的方法。 该方法包括以下步骤:在恒定输出处定义电站组件的生命周期的第一特性,在可变输出处定义电站组件的生命周期的第二特性,定义第一等价 规则作为来自实际时间参数的函数,第二等价规则的定义,其中描绘了根据多个第二特征的可变输出处的电站组件的预定义操作,确定第一和第二 在电站的实际操作期间产生的特性,确定第一和第二特性的数量的总和,以及使用确定的和来评估电站组件的使用寿命。
    • 14. 发明授权
    • Method for operating an industrial scale installation and guidance system for same
    • 用于操作工业规模的安装和引导系统的方法
    • US07987080B2
    • 2011-07-26
    • US12311385
    • 2007-03-02
    • Ulrich KunzeArno Römpke
    • Ulrich KunzeArno Römpke
    • G06G7/48G05B19/042G07C3/00
    • G05B23/0251G07C3/08
    • A method and a guidance system for operating an industrial scale installation, especially a power plant installation, are provided. For this method and guidance system a number of installation operating parameters characterizing the operating state of the installation and several component operating parameters of selected components of the installation are monitored and stored in a memory device. A characteristic fatigue value characterizing the current fatigue state of each component is determined, as required, using the stored installation operating parameters and/or the stored associated component operating parameters. The purpose of this method and guidance system is to develop an operation of the installation which protects resources. To this end, an associated fatigue prognosis value is determined from the characteristic fatigue value characterizing the current fatigue state for each selected component using guiding parameters characterizing a planned change of state.
    • 提供了用于操作工业规模安装,特别是发电厂安装的方法和指导系统。 对于该方法和指导系统,表征安装的操作状态的多个安装操作参数和安装的所选组件的若干组件操作参数被监视并存储在存储器设备中。 根据需要,使用存储的安装操作参数和/或存储的相关组件操作参数来确定表征每个部件的当前疲劳状态的特征疲劳值。 该方法和指导系统的目的是开发一种保护资源的安装操作。 为此,使用表征计划的状态变化的指导参数,从表征每个选定部件的当前疲劳状态的特征疲劳值确定相关的疲劳预后值。
    • 15. 发明申请
    • Method and Device for Controlling a Computer-Aided Arithmetic Process in a Technical System
    • 用于控制技术系统中计算机辅助算术过程的方法和装置
    • US20090234466A1
    • 2009-09-17
    • US12083425
    • 2006-10-10
    • Ulrich Kunze
    • Ulrich Kunze
    • G05B11/01
    • F01K13/02
    • Disclosed is a method for controlling a computer-assisted arithmetic process in a technical system, which is designed for interactive network-based use such that data is input by means of an interactive network-based operation. Said data is processed at least in part during the computer-assisted arithmetic process while the interactive operations is prevented from actively influencing the computer-assisted arithmetic process and vice versa by dissociating the interactive network-based operation and the computer-assisted arithmetic process. Also disclosed is a device for controlling a computer-aided arithmetic process in a technical system, which is designed for interactive network-based use. Said device comprises a client, a server, a data memory, as controller, and an application. The client is connected to the server to exchange data, the server is connected to the data memory to exchange data, the data memory is connected to the controller to exchange data, and the controller is connected to the application to exchange data.
    • 公开了一种用于控制技术系统中的计算机辅助运算处理的方法,其被设计用于基于交互式网络的使用,以便通过基于交互式网络的操作来输入数据。 所述数据在计算机辅助算术处理期间至少部分地进行处理,同时通过解离基于交互式网络的操作和计算机辅助运算处理来防止交互操作主动地影响计算机辅助运算处理,反之亦然。 还公开了一种用于控制技术系统中的计算机辅助运算处理的装置,其被设计用于基于交互式网络的使用。 所述设备包括客户端,服务器,数据存储器,作为控制器和应用。 客户端连接到服务器交换数据,服务器连接到数据存储器交换数据,数据存储器连接到控制器交换数据,控制器连接到应用程序进行数据交换。
    • 17. 发明申请
    • METHOD FOR THE THERMODYNAMIC ONLINE DIAGNOSIS OF A LARGE INDUSTRIAL PLANT
    • 大型工业植物热力学在线诊断方法
    • US20130041512A1
    • 2013-02-14
    • US13642863
    • 2011-03-07
    • Ulrich KunzeStefan Raab
    • Ulrich KunzeStefan Raab
    • G06F1/32
    • G05B23/0254
    • A method for the thermodynamic diagnosis of processes in a large industrial plant, in particular a power plant is provided. The method includes determining a reference state of the large industrial plant, acquiring measured values of a plurality of thermodynamic measured variables in the large industrial plant, determining thermodynamic state variables from the measured values directly following acquisition of the measured values, using a thermodynamic model of the large industrial plant and state equations of an operating medium used in the plant in order to determine an actual state of the plant, wherein the actual state and the reference state are displayed simultaneously in a state diagram near to the time of their determination. A control system for the thermodynamic online diagnosis of a large industrial plant is also provided.
    • 提供了一种用于大型工厂,特别是发电厂的工艺热力学诊断的方法。 该方法包括确定大型工业设备的参考状态,获取大型工业设备中的多个热力学测量变量的测量值,使用热力学模型的热力学模型,从测量值直接获取测量值来确定热力学状态变量 为了确定工厂的实际状态,在工厂中使用的操作介质的大型工业设备和状态方程式,其中实际状态和参考状态在接近其确定时间的状态图中同时显示。 还提供了用于大型工厂的热力学在线诊断的控制系统。
    • 18. 发明申请
    • MOUNTING MAT
    • 安装垫
    • US20120171081A1
    • 2012-07-05
    • US13395930
    • 2010-09-17
    • Ulrich KunzeStefan R. ReimannHarald H. Krieg
    • Ulrich KunzeStefan R. ReimannHarald H. Krieg
    • B01D53/34B23P11/00B01J19/32
    • F01N3/2864F01N3/0211F01N3/2857F01N2350/02F01N2450/02Y02T10/20Y10T29/49826
    • A mounting mat for a pollution control device is disclosed. The device comprises at least a first sheet and a second sheet and at least one holding means for holding the at least first and second sheets together. The holding means are adapted to (i) hold the at least first and second sheets together whilst allowing movement of the at least first and second sheets parallel to each other in the region where the holding means is positioned; and/or (ii) to break upon wrapping around a body thereby allowing movement of the at least first and second sheets parallel to each other in the region where the holding means is positioned. A pollution control device containing such a mat and method of making a pollution control device containing such a mat are also disclosed.
    • 公开了一种用于污染控制装置的安装垫。 该装置至少包括第一片和第二片以及用于将至少第一片和第二片保持在一起的至少一个保持装置。 保持装置适于(i)将至少第一和第二片材保持在一起,同时允许至少第一和第二片材在保持装置定位的区域中彼此平行移动; 和/或(ii)打破围绕身体的折叠,从而允许至少第一和第二片材在保持装置所在的区域中彼此平行地移动。 还公开了含有这种垫子的污染控制装置和制造含有这种垫子的污染控制装置的方法。
    • 19. 发明申请
    • Method for determining the lifecycle of a power station component
    • 确定电站组件生命周期的方法
    • US20100206058A1
    • 2010-08-19
    • US12667253
    • 2008-06-27
    • Ulrich KunzeArno Römpke
    • Ulrich KunzeArno Römpke
    • G01M15/00
    • G05B23/0283
    • A method for determining the life cycle of a power station component is provided. The method includes the following steps: definition of a first characteristic for the life cycle of a power station component at a constant output, definition of a second characteristic for the life cycle of the power station component at a variable output, definition of a first equivalence rule as a function from an actual time parameter, definition of a second equivalence rule wherein the pre-defined operation of the power station component at the variable output in accordance with a plurality of second characteristics is depicted, determination of the numbers of first and second characteristics that are generated during the actual operation of the power station, determination of the sum of the numbers of first and second characteristics, and assessment of the life cycle of the power station component using the determined sum.
    • 提供了一种用于确定电站组件的寿命周期的方法。 该方法包括以下步骤:在恒定输出处定义电站组件的生命周期的第一特性,在可变输出处定义电站组件的生命周期的第二特性,定义第一等价 规则作为来自实际时间参数的函数,第二等价规则的定义,其中描绘了根据多个第二特征的可变输出处的电站组件的预定义操作,确定第一和第二 在电站的实际操作期间产生的特性,确定第一和第二特性的数量的总和,以及使用确定的和来评估电站组件的使用寿命。