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    • 41. 发明申请
    • Systems, Devices, and Methods for Automated Sample Thawing
    • 自动样品解冻的系统,设备和方法
    • US20150334774A1
    • 2015-11-19
    • US14712120
    • 2015-05-14
    • BioCision, LLC
    • Brian SchryverDavid Shannon
    • H05B1/02G01K7/22B01L7/00G01K3/10
    • The present invention generally relates to thawing a cryogenically frozen sample. The systems, devices, and methods may be used to heat a sample holder, the sample holder configured to receive a sample container holding the frozen sample. A sample thaw start time may be identified by measuring a temperature of the sample container and/or a temperature of the sample. A sample thaw end time may be calculated as a function of the sample thaw start time. In some embodiments, the same thaw start time may be identified by a significant change in a first derivative of a warming curve of recorded temperature measurements. The sample end time may be calculated by adding a constant to the sample thaw start time. The constant may be the average sample thaw time per the sample container.
    • 本发明一般涉及解冻低温冷冻样品。 系统,装置和方法可以用于加热样品保持器,样品保持器被构造成接收容纳冷冻样品的样品容器。 可以通过测量样品容器的温度和/或样品的温度来识别样品解冻开始时间。 可以根据样品解冻开始时间的函数计算样品解冻结束时间。 在一些实施例中,可以通过记录的温度测量的加温曲线的一阶导数的显着变化来识别相同的解冻开始时间。 可以通过向样品解冻开始时间添加常数来计算样品结束时间。 常数可以是每个样品容器的平均样品解冻时间。
    • 42. 发明申请
    • TEMPERATURE PREDICTION SYSTEM AND METHOD THEREOF
    • 温度预测系统及其方法
    • US20150300888A1
    • 2015-10-22
    • US14257992
    • 2014-04-21
    • NATIONAL TAIWAN UNIVERSITY
    • Kun-Chih CHENAn-Yeu WUHuai-Ting LI
    • G01K3/10G01K7/22
    • G01K7/42
    • A temperature prediction system and method thereof use sensors to sense the temperature at a plurality of times, thereby calculating an actual temperature difference between the current time and the previous time. According to the result of actual temperature difference, an adaptive filter is used to predict a predicted temperature difference at a future time and to add the temperature of the current time and the predicted temperature difference to render a predicted temperature. By calculating the difference between the temperature at the next time and the predicted temperature at the next time, the filter parameter of the adaptive filter is adjusted. This mechanism helps improving the accuracy in temperature predictions.
    • 温度预测系统及其方法使用传感器来多次感测温度,从而计算当前时间和之前时间之间的实际温差。 根据实际温差的结果,使用自适应滤波器预测未来时间的预测温差,并将当前时间的温度和预测的温差相加以呈现预测温度。 通过计算下一次的温度与下一次的预测温度的差,调整自适应滤波器的滤波器参数。 这种机制有助于提高温度预测的准确性。
    • 43. 发明申请
    • Diagnostic System and Method for Metallurgical Reactor Cooling Elements
    • 冶金反应堆冷却元件的诊断系统和方法
    • US20120166107A1
    • 2012-06-28
    • US13153184
    • 2011-06-03
    • Terry GerritsenAloysius Henry Gunnewiek
    • Terry GerritsenAloysius Henry Gunnewiek
    • G06F15/00G01K7/00G01K3/10G01K13/00G01K11/32G06F11/32G01K7/16G01F1/00
    • C21B7/103C21B7/24C21B2300/04C21C2005/5288C21C2300/06F27B3/24F27D9/00F27D21/00F27D21/0014Y02P10/216Y02P10/286
    • Aspects of the invention relate generally to diagnostic methods and systems for determining the operating condition and performance of a cooling element in a metallurgical reactor during operation of the reactor. In a system aspect, the system comprises sensing means, processing means and display means. The sensing means is located in or approximate the cooling element for sensing operating conditions of the cooling element. The processing means is in communication with the sensing means for receiving data corresponding to the sensed operating conditions and for processing the data to determine a relative condition indicator of the cooling element. The display means is in communication with the processing means and displays the relative condition indicator to a user of the diagnostic system. The display means can display a first, second or third state representative of the relative health indicator. The first state corresponds to an operational state of the cooling element, in which the cooling element may be operated normally. The second state corresponds to a cautionary operational state of the cooling element, in which the cooling element should be operated under caution. The third state corresponds to a non-operational state of the cooling element, in which the cooling element should cease operation or not initiate operation.
    • 本发明的方面一般涉及用于确定在反应器操作期间的冶金反应器中的冷却元件的操作条件和性能的诊断方法和系统。 在系统方面,系统包括感测装置,处理装置和显示装置。 感测装置位于或接近冷却元件,用于感测冷却元件的操作条件。 处理装置与感测装置通信,用于接收对应于感测到的操作条件的数据,并且用于处理数据以确定冷却元件的相对状况指示符。 显示装置与处理装置通信并将相对状况指示符显示给诊断系统的用户。 显示装置可以显示代表相对健康指示器的第一,第二或第三状态。 第一状态对应于冷却元件的操作状态,其中冷却元件可以正常操作。 第二状态对应于冷却元件的警戒操作状态,其中冷却元件应小心操作。 第三状态对应于冷却元件的非操作状态,其中冷却元件应停止操作或不启动操作。
    • 46. 发明授权
    • Infrared electronic thermometer and method for measuring temperature
    • 红外线电子温度计和温度测量方法
    • US4797840A
    • 1989-01-10
    • US9181
    • 1987-01-20
    • Jacob Fraden
    • Jacob Fraden
    • G01J5/00G01J5/04G01J5/06G01J5/08G01J5/34G01K13/00G01J5/18G01K3/10
    • G01J5/04G01J5/0022G01J5/0025G01J5/02G01J5/025G01J5/049G01J5/06G01J5/08G01J5/0809G01J5/0818G01J5/0834G01J5/34G01J5/524G01J2005/0048G01J2005/065G01J2005/068
    • An electronic infrared thermometer is disclosed comprising a housing forming an interior chamber, a pyroelectric sensor mounted within the chamber for sensing temperature change and generating an indicative electrical signal, means for directing infrared radiation from the object to be measured to the pyroelectric sensor, a shutter assembly for controlling the passing of infrared radiation to the pyroelectric sensor, an ambient temperature sensor for sensing ambient temperature within the interior chamber and generating an electrical signal indicative thereof, an electrical circuit for processing the electrical signals to calculate the temperature of the object to be measured, and an indicator for indicating the calculated temperature. The process for measuring the temperature of an object is also disclosed comprising shielding the pyroelectric sensor from infrared radiation from exterior to the thermometer housing, selectively exposing the pyroelectric sensor to infrared radiation substantially solely from the object to be measured to generate a first electrical signal related to the absolute temperature of the object to be measured, sensing the ambient temperature of the pyroelectric sensor and generating a second electrical signal proportional thereto, and electrically processing the first and second electrical signals to calculate the temperature of the object to be measured.
    • PCT No.PCT / US86 / 00782 Sec。 371日期1987年1月20日 102(e)1987年1月20日PCT PCT申请日1986年4月15日PCT公布。 公开号WO86 / 06163 公开了一种电子红外线温度计,其包括形成内室的壳体,安装在室内的热电传感器,用于感测温度变化并产生指示性电信号,用于引导来自待测物体的红外辐射的装置 到热释电传感器,用于控制红外辐射通过热释电传感器的快门组件,用于感测内室内的环境温度并产生指示其的电信号的环境温度传感器,用于处理电信号以计算 要测量的物体的温度,以及用于指示计算出的温度的指示器。 还公开了用于测量物体的温度的过程,包括将热电传感器从外部到温度计壳体的红外辐射屏蔽,基本上仅仅从被测量对象将热电传感器选择性地暴露于红外辐射以产生相关的第一电信号 测量待测物体的绝对温度,感测热释电传感器的环境温度并产生与其成比例的第二电信号,并对第一和第二电信号进行电处理,以计算被测物体的温度。
    • 47. 发明授权
    • System, apparatus, and method for detecting and controlling surge in a
turbo compressor
    • 用于检测和控制涡轮压缩机的浪涌的系统,装置和方法
    • US4594051A
    • 1986-06-10
    • US609705
    • 1984-05-14
    • John R. Gaston
    • John R. Gaston
    • F04D27/02G01K3/10G05D23/22F01D21/12F04B49/00G01K13/02
    • F04D27/001F04D27/0292G01K3/10G05D23/1928G05D23/22
    • A surge detection system for a compressor having a gas inlet and a gas outlet and experiencing rapid temperature changes in said gas inlet during surges, said detector comprising first and second thermocouples having different temperature response times, Tf and Ts respectively, and producing an electrical output proportional to said rapid temperature change occurring during a surge, means for mounting said first and second thermocouples in said compressor gas inlet such that both thermocouples are subject to the same temperature changes, means for electrically coupling said thermocouples to algebraically sum said electrical outputs, Tf-Ts to represent the rapid change in temperature occurring between said thermocouples, and means coupled to said thermocouples for converting said algebraically summed outputs, Tf-Ts, to control signals representing the number, intensity and duration of said surges.
    • 一种用于压缩机的浪涌检测系统,具有气体入口和气体出口,并且在浪涌期间经历所述气体入口中的快速温度变化,所述检测器包括分别具有不同温度响应时间Tf和Ts的第一和第二热电偶,并产生电输出 与在浪涌期间发生的所述快速温度变化成比例的装置,用于将所述第一和第二热电偶安装在所述压缩机气体入口中以使得两个热电偶经受相同温度变化的装置,用于将所述热电偶电耦合到所述电气输出的代数和 - 表示在所述热电偶之间发生的温度的快速变化,以及耦合到所述热电偶的装置,用于将所述代数求和的输出Tf-Ts转换成表示所述浪涌的数量,强度和持续时间的控制信号。