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    • 3. 发明申请
    • METHOD AND APPARATUS FOR FABRICATING SEPARATOR ASSEMBLY
    • 制造分离器装配的方法和装置
    • US20130292034A1
    • 2013-11-07
    • US13996715
    • 2011-12-07
    • Chen WangTodd Alan AndersonSu LuHua LiZhen LiuJie HuangAnubhav Kumar
    • Chen WangTodd Alan AndersonSu LuHua LiZhen LiuJie HuangAnubhav Kumar
    • B32B38/00
    • B32B38/00B01D63/10B01D63/103B01D65/003B01D2313/10B01D2313/12B01D2323/42
    • The present invention provides a method and apparatus for fabricating a separator assembly. The method comprises: providing a central core element comprising at least one concentrate exhaust conduit and at least one permeate exhaust conduit; disposing a first portion of a membrane stack assembly comprising a permeate carrier layer, a membrane layer, and a feed carrier layer within the central core element such that the concentrate exhaust conduit and permeate exhaust conduit are separated by the first portion of the membrane stack assembly; radially winding a second portion of the membrane stack assembly around the central core element; and sealing the wound assembly comprising two opposing end surfaces made of the membrane stack assembly by applying an adhesive on both end surfaces of the wound assembly; and applying a negative pressure inside the central core element so that the adhesive penetrates into the membrane stack assembly.
    • 本发明提供一种用于制造分离器组件的方法和装置。 该方法包括:提供包括至少一个浓缩物排出管道和至少一个渗透物排放导管的中心芯体元件; 在中心芯元件内设置包括渗透物载体层,膜层和进料载体层的膜堆叠组件的第一部分,使得浓缩物排出管道和渗透物排出管道被膜堆叠组件的第一部分分离 ; 围绕中心芯元件径向缠绕膜堆叠组件的第二部分; 并且通过在所述缠绕组件的两个端表面上施加粘合剂来密封包括由所述膜堆叠组件制成的两个相对端面的所述缠绕组件; 并且在中心芯元件内部施加负压,使得粘合剂渗透到膜堆叠组件中。
    • 5. 发明申请
    • System and method for broken rail and train detection
    • 断轨和列车检测系统及方法
    • US20080296441A1
    • 2008-12-04
    • US11809750
    • 2007-06-01
    • Todd Alan AndersonEmad Andarawis AndarawisJeffrey Michael Fries
    • Todd Alan AndersonEmad Andarawis AndarawisJeffrey Michael Fries
    • B61L23/04
    • B61L1/185B61L23/044
    • A rail break or rail vehicle detection system which includes a voltage source, capable of voltage source compensation, is coupled to each of a plurality of zones within a block of rail track devoid of insulated joints. A plurality of current sensors are provided, each coupled to a respective voltage source and configured to measure current flowing through the sensor in response to changing voltage patterns. Each current sensor is further configured in one embodiment to determine and compare signatures based on current measurements to a predetermined decision surface to detect the presence of a rail vehicle or rail break on a predetermined block of track. The voltage source or current sensor can be adapted to control voltage levels and polarity of each voltage source. A method of communicating the presence or absence of a rail break or rail vehicle employs an in-rail TDMA communication scheme to synchronize, test and communicate directly between the sensors without use of external controllers.
    • 包括能够进行电压源补偿的电压源的轨断路或轨道车辆检测系统耦合到没有绝缘接头的轨道轨道的多个区域中的每个区域。 提供多个电流传感器,每个电流传感器耦合到相应的电压源并且被配置为响应于变化的电压模式来测量流过传感器的电流。 在一个实施例中,进一步配置每个电流传感器以根据当前测量结果将签名与预定的判定表面进行比较,以检测轨道车辆或铁轨在预定轨道块上的存在。 电压源或电流传感器可以适用于控制每个电压源的电压电平和极性。 通信轨道交通工具的存在或不存在的方法采用轨内TDMA通信方案来在传感器之间直接同步,测试和通信而不使用外部控制器。
    • 6. 发明授权
    • System and method for detecting rail break or vehicle
    • 检测铁路车辆或车辆的系统和方法
    • US07226021B1
    • 2007-06-05
    • US11318970
    • 2005-12-27
    • Todd Alan AndersonKenneth Brakeley Welles, II
    • Todd Alan AndersonKenneth Brakeley Welles, II
    • B61L23/04B61L25/00G01R31/08
    • B61L23/044B61L1/181
    • A rail break or vehicle detection system includes a plurality of voltage sources, each coupled to one of the plurality of zones. A plurality of resistors are provided, each coupled in series with one of the plurality of voltage sources. A plurality of current sensors are provided, each coupled to one of the plurality of resistors and adapted to measure a first set of values and second set of values indicative of current flowing through the resistor. At least one control unit is adapted to receive input from the plurality of current sensors and to compare a difference between the second set of values and the first set of values to a predetermined threshold limit to detect presence of a rail vehicle on the block. The control unit is further adapted to switch a polarity of each voltage source.
    • 轨道断路或车辆检测系统包括多个电压源,每个电压源耦合到多个区域之一。 提供多个电阻器,每个电阻器与多个电压源中的一个串联耦合。 提供多个电流传感器,每个电流传感器分别耦合到多个电阻器中的一个并且适于测量指示电流流过电阻器的电流的第一组值和第二组值。 至少一个控制单元适于接收来自多个电流传感器的输入,并且将第二组值与第一组值之间的差值比较至预定阈值极限,以检测轨道车辆在该块上的存在。 控制单元还适于切换每个电压源的极性。
    • 10. 发明申请
    • APPARATUS AND METHOD FOR MONITORING OF INFRASTRUCTURE CONDITION
    • 用于监测基础设施条件的装置和方法
    • US20100004804A1
    • 2010-01-07
    • US12243112
    • 2008-10-01
    • Todd Alan AndersonNelson CorbyHarry Kirk Mathews, JR.Minesh ShahThomas Sebastian
    • Todd Alan AndersonNelson CorbyHarry Kirk Mathews, JR.Minesh ShahThomas Sebastian
    • B61K9/08
    • B61K9/08B61L23/042B61L25/025B61L27/0077B61L27/0088B61L2205/04
    • A system and method for vehicle-centric infrastructure monitoring system includes an inspection system mountable on a vehicle configured to travel over an expanse of rail track having a plurality of track blocks. The inspection system acquires track data for at least some track blocks along the expanse of rail track. The monitoring system also includes a positioning system to determine a location of the vehicle and generate location data indicative of an associated track block location, a communications device to transmit the track/location data to a remote location, and a centralized computing system positioned at the remote location to receive the transmitted track/location data. The centralized computing system is programmed to determine a current probability of a track condition for a track block and combine the current track condition probability with a previously determined cumulative track condition probability to provide an updated track condition probability for the track block.
    • 一种以车辆为中心的基础设施监视系统的系统和方法,包括可安装在车辆上的检查系统,其配置成在具有多个轨道块的一列轨道上移动。 检查系统获取沿轨道轨道的至少一些轨道块的轨道数据。 该监视系统还包括一个定位系统,用于确定车辆的位置并产生指示相关轨道块位置的位置数据,将轨道/位置数据发送到远程位置的通信设备,以及位于该位置处的集中式计算系统 远程位置接收发送的轨道/位置数据。 集中式计算系统被编程为确定轨道块的轨道条件的当前概率,并将当前轨道条件概率与先前确定的累积轨迹条件概率组合,以提供轨道块的更新的跟踪条件概率。