首页> 外文会议>Advances in Cryogenic Engineering Vol.45, Pt.B >CRYOGENIC PRESSURE CALIBRATION FACILITY USING A COLD FORCE REFERENCE
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CRYOGENIC PRESSURE CALIBRATION FACILITY USING A COLD FORCE REFERENCE

机译:使用冷力参考进行低温压力校准

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Presently various commercial cryogenic pressure sensors are being investigated for installation in the LHC collider, they will eventually be used to assess that the magnets are fully immersed in liquid and to monitor fast pressure transients. In the framework of this selection procedure, a cryogenic pressure calibration facility has been designed and built. It is based on a cryogenic primary pressure reference made of a bellows that converts the pressure into a force measurement. For that, a shaft transfers this force to a precision force transducer at room temperature. Knowing the liquid bath pressure and the surface area of the bellows, the pressure applied to the transducers under calibration is calculated; corrections due to thermal contraction are introduced. To avoid loss of force in the bellows wall, its length is maintained constant; a cold capacitive displacement sensor measures this. The calibration temperature covers 1.5 K to 4.2 K and the pressure 0 to 20 bar. In contrast with more classical techniques that refer to a pressure reference at room temperature, the method presented in this paper avoid errors due to the uncertainty on the hydrostatic head calculation, to thermoacoustic oscillations and to pressure variation caused by temperature drift along the sensing capillary.
机译:目前,正在研究将各种商用低温压力传感器安装在LHC对撞机中,它们最终将用于评估磁体是否完全浸入液体中并监视快速的压力瞬变。在此选择程序的框架内,已设计并建造了一个低温压力校准设备。它基于由波纹管制成的低温主压力基准,该基准将压力转换为力的测量值。为此,轴在室温下将该力传递给精密力传感器。知道液槽压力和波纹管的表面积,就可以计算出在校准下施加到传感器的压力;引入了由于热收缩引起的校正。为了避免波纹管壁中的力损失,其长度应保持恒定。冷电容位移传感器对此进行测量。校准温度为1.5 K至4.2 K,压力为0至20 bar。与参考室温下的压力参考的更经典的技术相比,本文提出的方法避免了由于静水压头计算的不确定性,热声振荡以及温度沿传感毛细管漂移引起的压力变化而引起的误差。

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