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Pulse cooled thermocouple system for high temperature measurement especially in combustion turbines

机译:脉冲冷却热电偶系统,用于高温测量,尤其是在燃气轮机中

摘要

A pulsed coolant thermocouple temperature measuring system is arranged to measure temperature above a limit operating temperature of the thermocouple includes a rake which is disposed across a hot gas path combustion turbine. Multiple thermocouple are disposed in respective channels in the rake to sense the temperature of hot gas from surplus which enter the thermocouple channels through respective sampling ports in the rake. The sample gas flows merge with a common channel and exhaust through a hot gas sample valve. When any of the thermocouples reaches a limit temperature, a coolant valve is opened as the hot gas valve is closed so as to drive coolant air into the common channel over the thermocouple through the thermocouple channels and the sampling ports into the hot gas path. A microcomputer receives and records the thermocouple signals and generates control signals to sequence the coolant and gas sample valves on and off as a function of the thermocouple temperature signals so the system is cycled through successive temperature reading periods without exceeding a predetermined temperature limit of the thermocouples. The microcomputer extrapolates the actual gas temperature as the endpoint temperature computed by a fast integrating method from the recorded thermocouple readings.
机译:脉冲冷却剂热电偶温度测量系统布置成测量高于热电偶的极限工作温度的温度,该温度包括跨过热气路径燃气轮机布置的耙子。多个热电偶设置在耙中的各个通道中,以感测来自多余气体的热气的温度,这些气体通过耙中的各个采样端口进入热电偶通道。样品气体流与公共通道合并,并通过热气体样品阀排出。当任何一个热电偶达到极限温度时,随着热气阀的关闭,冷却剂阀也将打开,以便通过热电偶通道和进样口将冷却剂空气驱动到热电偶上方的公共通道中,并将采样口送入热气路径。微型计算机接收并记录热电偶信号,并生成控制信号,以根据热电偶温度信号对冷却剂和气体采样阀的开和关进行排序,从而使系统在连续的温度读取周期内循环,而不会超过热电偶的预定温度极限。微型计算机根据记录的热电偶读数,通过快速积分法将实际气体温度推断为终点温度。

著录项

  • 公开/公告号US4480930A

    专利类型

  • 公开/公告日1984-11-06

    原文格式PDF

  • 申请/专利权人 WESTINGHOUSE ELECTRIC CORP.;

    申请/专利号US19830484786

  • 发明设计人 EGON A. DEZUBAY;KENNETH D. WEEKS;

    申请日1983-04-14

  • 分类号G01K1/16;G01K13/02;

  • 国家 US

  • 入库时间 2022-08-22 08:37:02

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