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Temperature-Compensated Cone Penetration Test Mini-Cone Using Fiber Optic Sensors

机译:使用光纤传感器的温度补偿锥体穿透测试迷你锥体

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The mechanical properties obtained by using a strain gauge are influenced by the temperature change that occurs due to the electrical resistance change of the strain gauge and cable. The temperature change, which occurs during cone penetration testing, can produce an unreliable cone tip resistance. Several types of cone penetrometers with diameters ranging from 1 to 7 mm are developed by using fiber Bragg grating (FBG) sensors for the temperature compensation. The design concerns include the configuration, active and temperature sensor installation, and calibration. FBG active sensors monitor both the tip resistance and the temperature change, while the FBG temperature transducer only measures the temperature change. The experimental studies show that the tip resistance estimated by strain gauges is affected by the temperature change in both full and half Wheatstone bridges, but the tip resistance determined by the FBG sensors is independent of the temperature change. The tip resistances determined by the strain gauges and the FBG sensors are reliable after the temperature is compensated for. This study demonstrates that by using FBG sensors, cone penetrometers produce a more reliable cone tip resistance.
机译:通过使用应变仪获得的机械性能受应变仪和电缆电阻变化引起的温度变化的影响。锥孔穿透测试期间发生的温度变化会产生不可靠的锥头电阻。通过使用光纤布拉格光栅(FBG)传感器进行温度补偿,开发了几种直径范围为1到7 mm的锥形透孔计。设计关注点包括配置,有源和温度传感器安装以及校准。 FBG有源传感器同时监视尖端电阻和温度变化,而FBG温度传感器仅测量温度变化。实验研究表明,应变仪估计的尖端电阻受惠斯通电桥和半惠斯通电桥中温度变化的影响,但FBG传感器确定的尖端电阻与温度变化无关。在补偿温度后,由应变仪和FBG传感器确定的尖端电阻是可靠的。这项研究表明,通过使用FBG传感器,锥形渗透仪可产生更可靠的锥形尖端电阻。

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