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    • 61. 发明授权
    • Method and apparatus for vapor signature with heat differential
    • 用热差异进行气相识别的方法和装置
    • US08746036B2
    • 2014-06-10
    • US13862502
    • 2013-04-15
    • Klaus DimmlerThomas Moss, III
    • Klaus DimmlerThomas Moss, III
    • G01N7/00
    • G01N27/14G01N27/414G01N27/4148G01N33/00G01N33/0009
    • A method for sensing analyte. The method includes the steps of sensing one or more parameters in reaction to the presence of one or more analytes and outputting a current therefrom in accordance with level of the sensed parameter by each of a plurality of sensors, each of the plurality of sensors being provided in one or more sensor array columns, selectively heating one or more of the sensor array columns by a heating element, and receiving an output current from one of the plurality of sensors from each of the plurality of sensor arrays by a Voltage Controlled Oscillator (VCO) arranged in a VCO array. The method further includes the steps of generating an output oscillation frequency by each VCO in accordance with the level of the received output current, and counting a number of oscillations over a predetermined time received from each of the plurality of VCOs in the VCO array by a plurality of counters arranged in a counter array.
    • 一种感测分析物的方法。 该方法包括以下步骤:响应于一种或多种分析物的存在而检测一个或多个参数,并根据多个传感器中的每一个传感器的感测参数的电平输出电流,多个传感器中的每一个被提供 在一个或多个传感器阵列列中,通过加热元件选择性地加热一个或多个传感器阵列,并且通过压控振荡器(VCO)从多个传感器阵列中的每一个接收来自多个传感器中的一个的输出电流 )排列在VCO阵列中。 该方法还包括以下步骤:根据接收到的输出电流的电平,通过每个VCO产生输出振荡频率,并且在由VCO阵列中的多个VCO中的每一个接收的预定时间内计数一个振荡次数 多个计数器布置在计数器阵列中。
    • 63. 发明授权
    • Gas sensor
    • 气体传感器
    • US08650933B2
    • 2014-02-18
    • US13078401
    • 2011-04-01
    • Yasuhiro FujitaTakayoshi Atsumi
    • Yasuhiro FujitaTakayoshi Atsumi
    • G01N7/00
    • G01N27/4077G01N33/0009
    • A gas sensor, including a cylindrical outer tube; and a seal member disposed in the outer tube, the seal member including: a lead wire insert hole and an atmosphere communication hole extending in an axial direction thereof. The gas sensor further includes: a protection portion which covers the atmosphere communication hole from the rear end of the gas sensor in the axial direction, the protection portion having a protrusion which protrudes toward a rear side of the gas sensor, and has an opening smaller than an opening of the atmosphere communication hole, wherein the protrusion is disposed at a further front end side of the rear end surface of the seal member.
    • 气体传感器,包括圆柱形外管; 以及设置在所述外管中的密封构件,所述密封构件包括:引线插入孔和沿其轴向延伸的大气连通孔。 所述气体传感器还包括:保护部,其从所述气体传感器的后端沿轴向覆盖所述大气连通孔,所述保护部具有朝向所述气体传感器的后侧突出的突起,并且具有较小的开口 比大气连通孔的开口,其中突起设置在密封构件的后端表面的另一前端侧。
    • 66. 发明授权
    • Device to indicate critical corrosion of a metallic structure
    • 指示金属结构的临界腐蚀的装置
    • US08578781B2
    • 2013-11-12
    • US13255132
    • 2010-04-19
    • Anders Dahlström
    • Anders Dahlström
    • G01L7/00G01N33/00G01N7/00G01N17/00G01M3/02
    • G01N17/04
    • The present invention relates to a device to indicate a predetermined critical corrosion of a metallic structure located in soil, water or concrete environment. The device comprises a probe that has a closed tubular container intended to contain a pressurized medium, and that has a wall thickness t that corresponds to the predetermined critical corrosion. A protective coating is arranged essentially over the entire outside of the container with the exception of a surface that is intended to be subjected to corrosion attack. The container is allowed to corrode so that the container becomes perforated, whereupon the pressure of the pressurized medium falls. The pressure change is measured by means of a pressure gauge, and in this way, information is obtained about the fact that the corrosion has reached the predetermined critical level.
    • 本发明涉及一种用于指示位于土壤,水或混凝土环境中的金属结构的预定临界腐蚀的装置。 该装置包括探针,其具有用于容纳加压介质的封闭管状容器,并且具有对应于预定临界腐蚀的壁厚t。 保护涂层基本上布置在容器的整个外部,除了要被腐蚀的表面之外。 允许容器腐蚀,使得容器被穿孔,由此加压介质的压力下降。 通过压力表测量压力变化,通过这种方式获得关于腐蚀达到预定临界水平的事实的信息。
    • 67. 发明申请
    • PROCESS FOR MONITORING THE POLYMERIZATION OF ETHYLENE OR ETHYLENE AND COMONOMERS IN A TUBULAR-REACTOR AT HIGH-PRESSURES
    • 用于监测高压管状反应器中乙烯或乙烯和共聚物聚合的方法
    • US20130274424A1
    • 2013-10-17
    • US13995829
    • 2011-12-19
    • Sebastian WeiandWolfgang GsellaVictor KuhneChristian-Ulrich SchmidtTom Zimmermann
    • Sebastian WeiandWolfgang GsellaVictor KuhneChristian-Ulrich SchmidtTom Zimmermann
    • C08F10/02G01N7/00
    • C08F10/02C08F110/02C08F210/02C08F210/16C08F2400/02G01N7/00C08F210/06C08F220/14C08F2/00C08F2/001
    • Process for monitoring the polymerization of ethylene or ethylene and comonomers in the presence of free-radical polymerization initiator at pressures in the range of from 160 MPa to 350 MPa and temperatures in the range of from 100° C. to 350° C. in a tubular reactor with one or more reaction zones, which is equipped with cooling jackets for cooling the tubular reactor with a cooling medium, comprising the steps of a) measuring as process parameters the temperature profile and the pressure of the reaction medium and the flow and temperature profile of the cooling medium along the reactor, b) monitoring the feeds of ethylene, if present comonomer, free-radical polymerization initiator and chain-transfer agent to all reaction zones, c) calculating, based on the measured process parameters and on a model for the polymerization process, concentrations for free-radical polymerization initiator, chain-transfer agent, ethylene and, if present, comonomers at at least so many positions along the reactor, that at least one calculation is carried out all 10 s for a volume unit flowing through the reactor, d) calculating, based on the measured process parameters and the calculated concentrations, the cooling power, the generation of heat, and the concentration of radicals, e) calculating, based on the calculated data of the cooling power, of the generation of heat, and of the concentration of radicals, the potential of a thermal runaway of the reaction mixture at the positions along the reactor which have the highest temperatures, and f) outputting an alarm signal if the calculated value for the potential of a thermal runaway exceeds a predefined value and process for polymerizing ethylene or ethylene and comonomers comprising such a monitoring process.
    • 在自由基聚合引发剂的存在下,在160MPa至350MPa的压力和100℃至350℃的温度范围内,监测乙烯或乙烯和共聚单体的聚合反应的方法, 具有一个或多个反应区的管式反应器,其配备有用于用冷却介质冷却管式反应器的冷却夹套,包括以下步骤:a)测量作为工艺参数的温度分布和反应介质的压力以及流动和温度 b)监测乙烯(如果存在的共聚单体,自由基聚合引发剂和链转移剂)进料到所有反应区的进料,c)根据测量的工艺参数和模型计算 对于聚合过程,自由基聚合引发剂,链转移剂,乙烯和(如果存在)共聚单体在至少这么多位置的浓度 反应器,对于流过反应堆的体积单位进行至少一次计算10秒,d)基于测量的过程参数和计算的浓度,计算冷却功率,产生热量和浓度 的自由基,e)基于计算的冷却功率的数据,计算出热的产生和自由基的浓度,反应混合物在沿着反应器的位置处的热失控的可能性为最高 温度,以及f)如果热失控潜力的计算值超过预定值,则输出报警信号,并且包括这样的监测过程的聚合乙烯或乙烯和共聚单体的方法。