会员体验
专利管家(专利管理)
工作空间(专利管理)
风险监控(情报监控)
数据分析(专利分析)
侵权分析(诉讼无效)
联系我们
交流群
官方交流:
QQ群: 891211   
微信请扫码    >>>
现在联系顾问~
热词
    • 22. 发明申请
    • PLUNGER LIFT WITH CHEMICAL INJECTION
    • 具有化学注射剂的提升器
    • US20110024130A1
    • 2011-02-03
    • US12841226
    • 2010-07-22
    • David Barry
    • David Barry
    • E21B43/00E21B47/10
    • E21B43/121E21B43/25E21B47/10
    • A method and system operates a well having an outer casing, a tubing positioned inside the outer casing, and a plunger moveable within the tubing to periodically draw out a liquid slug. A chemical to slug size ratio is set by the operator. Thereafter, the gas flow rate is monitored and the well is shut-in when the gas flow rate drops below a predetermined threshold. After well shut-in, a calculated amount of chemical foaming agent is injected. The size of the liquid slug is calculated and then the well is opened, drawing the plunger and liquid slug up to the surface. The calculated amount of chemical foaming agent is calculated based on one or more previous liquid slug size determinations and the set chemical to slug size ratio.
    • 方法和系统操作具有外壳,定位在外壳内部的管和可在管内移动以便周期性地抽出液体塞的柱塞的井。 操作人员设定了一种化学lug尺寸比例。 此后,当气体流速下降到预定阈值以下时,监测气体流量并关闭井。 充分关闭后,注入计算量的化学发泡剂。 计算出液体块的尺寸,然后打开井,将柱塞和液体块塞拉到表面。 化学发泡剂的计算量基于一个或多个先前的液体团块尺寸确定和设定的化学与团块尺寸比来计算。
    • 24. 发明授权
    • Method of displaying the status of an asset using an external status asset monitor
    • 使用外部状态资产监视器显示资产状态的方法
    • US07835807B2
    • 2010-11-16
    • US12270601
    • 2008-11-13
    • Richard W. Vesel
    • Richard W. Vesel
    • G05B15/00G06F15/16
    • G05B23/0216G05B23/0267
    • A system and method of monitoring assets of an enterprise using a stand-alone software system and a process automation software system are provided. The stand-alone system is operable to generate a web page about a condition of the asset and to transmit data items for the condition in a single data string. The data items include a status of the condition and a URL of the web page. The process automation system includes a human system interface (HSI). An asset monitor in the process automation system is operable to monitor the status of the condition and the HSI is operable to display the data items and the web page from the stand-alone system.
    • 提供了使用独立软件系统和过程自动化软件系统监控企业资产的系统和方法。 独立系统可操作地生成关于资产的条件的网页,并且在单个数据串中传送条件的数据项。 数据项包括条件的状态和网页的URL。 过程自动化系统包括人机界面(HSI)。 过程自动化系统中的资产监视器可操作以监视状态的状态,并且HSI可操作以从独立系统显示数据项和网页。
    • 25. 发明申请
    • METHOD OF DISPLAYING THE STATUS OF AN ASSET USING AN EXTERNAL STATUS ASSET MONITOR
    • 使用外部状态资产监视器显示资产状态的方法
    • US20090134994A1
    • 2009-05-28
    • US12270601
    • 2008-11-13
    • Richard W. Vesel
    • Richard W. Vesel
    • G08B23/00
    • G05B23/0216G05B23/0267
    • The present invention is directed to a system and method of monitoring assets of an enterprise using a stand-alone software system and a process automation software system. The stand-alone software system is operable to generate a web page about a condition of the asset and to transmit data items for the condition in a single data string. The data items include a status of the condition and a URL of the web page. The process automation software system includes a human system interface (HSI) and a generic asset monitor having a changeable condition table. The generic asset monitor may be modified to create a custom asset monitor specific to the asset. The custom asset monitor is operable to monitor the status of the condition and the HSI is operable to display the data items and the web page from the stand-alone software system.
    • 本发明涉及使用独立软件系统和过程自动化软件系统来监视企业的资产的系统和方法。 独立软件系统可操作地生成关于资产的条件的网页,并且在单个数据串中传送条件的数据项。 数据项包括条件的状态和网页的URL。 过程自动化软件系统包括人机系统接口(HSI)和具有可变条件表的通用资产监视器。 可以修改通用资产监视器以创建特定于资产的自定义资产监视。 自定义资产监视器可操作以监视条件的状态,并且HSI可操作以从独立的软件系统显示数据项和网页。
    • 28. 发明授权
    • Method of washing a contaminant from a surface via a robotic arm
    • 通过机器手臂从表面清洗污染物的方法
    • US07194334B2
    • 2007-03-20
    • US11405656
    • 2006-04-17
    • Stephen J. Laski
    • Stephen J. Laski
    • G06F19/00
    • B08B3/024B08B3/14B25J9/0018G05B2219/45013
    • A robotic wash cell including a six-axis robotic arm and end effector equipped with nozzles that spray unheated, solvent free, pure water at high-pressure to clean or debur objects by maintaining the nozzles in close proximity and substantially normal to each surface being cleaned or edge being deburred. The robotic cell wash is particularly useful for cleaning contaminants such as oil and grease from items having more complex shapes. The six-axis robotic arm positions the nozzles and their sprays substantially normal to each surface being cleaned or deburred. The nozzles produce a multi-zone spray pattern with a continuous effective cleaning zone. A water recycling and pressurizing system collects the used water, separates out the oil and grease contaminants to a level of about 5 ppm, and pressurizes the pure water to about 3,000 psi for washing operations or about 6,000 psi for deburring operations.
    • 机器人洗涤池包括六轴机器人臂和末端执行器,其配备有喷嘴,其喷射高压下的未加热,无溶剂的纯净水以通过将喷嘴保持在接近且基本上垂直于被清洁的每个表面,以清洁或去除物体 或边缘被去毛刺。 机器人电池洗涤对于从具有更复杂形状的物品清洁污染物如油和油脂是特别有用的。 六轴机器手臂使喷嘴和喷雾器基本上垂直于要清洁或去毛刺的每个表面。 喷嘴产生具有连续有效清洁区域的多区域喷雾图案。 水循环和加压系统收集用过的水,将油和油污污染物分离出至约5ppm的水平,并将纯水加压至约3,000psi进行洗涤操作或约6,000psi用于去毛刺操作。
    • 29. 发明授权
    • High impedance fault detection
    • 高阻抗故障检测
    • US07069116B2
    • 2006-06-27
    • US10770270
    • 2004-02-02
    • Steven A. KunsmanIsmail I. JounyStephen Kaprielian
    • Steven A. KunsmanIsmail I. JounyStephen Kaprielian
    • G06F19/00H02H3/42G01R31/08
    • H02H1/0015G01R31/025H02H1/0092H02H3/05
    • An apparatus, system, and method for detecting high impedance faults in electrical power lines using a composite high impedance fault detection system having a voter logic that samples the logical outputs from a plurality of independent high impedance detection systems and determines a high impedance fault if any two of the plurality of independent high impedance detection systems indicates a high impedance fault. Preferably, the plurality of high impedance detection systems include a wavelet based high impedance fault detection system having a first logical output, a higher order statistics based high impedance fault detection system having a second logical output, and a neural net based high impedance fault detection system having a third logical output. Preferably, each of the plurality of high impedance fault detection systems includes an independent high impedance fault detection application that independently detects a high impedance fault on the electrical power line.
    • 一种用于使用复合高阻抗故障检测系统检测电力线中的高阻抗故障的装置,系统和方法,所述复合高阻抗故障检测系统具有从多个独立高阻抗检测系统对逻辑输出进行采样的选民逻辑,并且如果有的话,确定高阻抗故障 多个独立的高阻抗检测系统中的两个表示高阻抗故障。 优选地,多个高阻抗检测系统包括具有第一逻辑输出的基于小波的高阻抗故障检测系统,具有第二逻辑输出的基于高阶统计的高阻抗故障检测系统以及基于神经网络的高阻抗故障检测系统 具有第三逻辑输出。 优选地,多个高阻抗故障检测系统中的每一个包括独立地检测电力线路上的高阻抗故障的独立的高阻抗故障检测应用。
    • 30. 发明授权
    • Robotic wash cell using recycled pure water
    • 机器人洗涤池使用回收的纯水
    • US07054717B2
    • 2006-05-30
    • US10926855
    • 2004-08-26
    • Stephen J. Laski
    • Stephen J. Laski
    • G06F19/00
    • B08B3/024B08B3/14B25J9/0018G05B2219/45013
    • The present invention pertains to a robotic wash cell including a six-axis robotic arm and end effector equipped with nozzles that spray unheated, solvent free, pure water at high-pressure to clean or debur objects by maintaining the nozzles in close proximity and substantially normal to each surface being cleaned or edge being deburred. The robotic cell wash is particularly useful for cleaning contaminants such as oil and grease from items having more complex shapes. The six-axis robotic arm positions the nozzles and their sprays substantially normal to each surface being cleaned or deburred. The nozzles produce a multi-zone spray pattern with a continuous effective cleaning zone. A water recycling and pressurizing system collects the used water, separates out the oil and grease contaminants to a level of about 5 ppm, and pressurizes the pure water to about 3,000 psi for washing operations or about 6,000 psi for deburring operations.
    • 本发明涉及一种包括六轴机器人手臂和末端执行器的机器人洗涤池,其具有喷嘴,该喷嘴在高压下喷射未加热,无溶剂的纯净水以通过将喷嘴保持在接近和基本正常的状态 被清洁的每个表面或边缘被去毛刺。 机器人电池洗涤对于从具有更复杂形状的物品清洁污染物如油和油脂是特别有用的。 六轴机器手臂使喷嘴和喷雾器基本上垂直于要清洁或去毛刺的每个表面。 喷嘴产生具有连续有效清洁区域的多区域喷雾图案。 水循环和加压系统收集用过的水,将油和油污污染物分离出至约5ppm的水平,并将纯水加压至约3,000psi进行洗涤操作或约6,000psi用于去毛刺操作。