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Study on Sensitive Mechanism and Numerical Simulation of Fluid Gyroscope based on Thermal Expansion Flow Principle

机译:基于热膨胀流原理的流体陀螺仪敏感机理及数值模拟研究

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摘要

In this paper, a novel fluid gyroscope based on thermal expansion flow principle was reported. The structural design and sensitive principle were shown. The temperature field and fluid field inside the sensitive component were calculated using COMSOL. Calculation results indicate that temperature inside the sensitive component has a fluctuating growth and form a symmetrically distributed thermal expansion flow driven by 10Hz square wave. When angular rate is applied, the change of temperature difference between the detectors is caused by the flow deflection under the Coriolis force. In the range of ±3rad/s, temperature difference rate is 1.56×10-8K/rad/s.
机译:本文报道了一种基于热膨胀流原理的新型流体陀螺仪。显示了结构设计和敏感原理。使用COMSOL计算敏感组件内部的温度场和流体场。计算结果表明,敏感元件内部的温度具有波动增长,并形成由10Hz方波驱动的对称分布的热膨胀流。当施加角速率时,检测器之间的温差变化是由在科里奥利力作用下的流量偏转引起的。在±3rad / s的范围内,温差率为1.56×10 \ n -8 \ nK / rad / s。

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