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Design and Performance Test of an Ocean Turbulent Kinetic Energy Dissipation Rate Measurement Probe

机译:海洋湍动能耗散率测量探头的设计与性能测试

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摘要

Ocean turbulent kinetic energy dissipation rate is an essential parameter in marine environmental monitoring. Numerous probes have been designed to measure the turbulent kinetic energy dissipation rate in the past, and most of them utilize piezoelectric ceramics as the sensing element. In this paper, an ocean turbulent kinetic energy dissipation rate measurement probe utilizing a microelectromechanical systems (MEMS) piezoresistor as the sensing element has been designed and tested. The triangle cantilever beam and piezoresistive sensor chip are the core components of the designed probe. The triangle cantilever beam acts as a velocity-force signal transfer element, the piezoresistive sensor chip acts as a force-electrical signal transfer element, and the piezoresistive sensor chip is bonded on the triangle cantilever beam. One end of the triangle cantilever beam is a nylon sensing head which contacts with fluid directly, and the other end of it is a printed circuit board which processes the electrical signal. A finite element method has been used to study the effect of the cantilever beam on probe performance. The Taguchi optimization methodology is applied to optimize the structure parameters of the cantilever beam. An orthogonal array, signal-to-noise ratio, and analysis of variance are studied to analyze the effect of these parameters. Through the use of the designed probe, we can acquire the fluid flow velocity, and to obtain the ocean turbulent dissipation rate, an attached signal processing system has been designed. To verify the performance of the designed probe, tests in the laboratory and in the Bohai Sea are designed and implemented. The test results show that the designed probe has a measurement range of 10−8–10−4 W/kg and a sensitivity of 3.91 × 10−4 (Vms2)/kg. The power spectrum calculated from the measured velocities shows good agreement with the Nasmyth spectrum. The comparative analysis between the designed probe in this paper and the commonly used PNS probe has also been completed. The designed probe can be a strong candidate in marine environmental monitoring.
机译:海洋湍动能耗散率是海洋环境监测中必不可少的参数。过去已经设计了许多探头来测量湍流动能的耗散率,并且大多数探头都使用压电陶瓷作为传感元件。本文设计并测试了一种以微机电系统(MEMS)压敏电阻作为传感元件的海洋湍流动能耗散率测量探头。三角形悬臂梁和压阻传感器芯片是设计探头的核心组件。三角形悬臂梁充当速度力信号传递元件,压阻传感器芯片充当力电信号传递元件,压阻传感器芯片粘接在三角形悬臂梁上。三角形悬臂梁的一端是尼龙传感头,它直接与流体接触,另一端是处理电信号的印刷电路板。有限元方法已用于研究悬臂梁对探头性能的影响。 Taguchi优化方法学用于优化悬臂梁的结构参数。研究了正交阵列,信噪比和方差分析,以分析这些参数的影响。通过使用设计的探头,我们可以获得流体流速,并获得海洋湍流耗散率,设计了一个附加的信号处理系统。为了验证所设计探针的性能,设计并实施了在实验室和渤海的测试。测试结果表明,所设计的探头的测量范围为10 −8 –10 −4 W / kg,灵敏度为3.91×10 −4 < / sup>(Vms 2 )/ kg。根据测得的速度计算出的功率谱与纳斯密斯谱具有很好的一致性。还完成了本文设计的探头与常用的PNS探头之间的比较分析。设计的探头可以在海洋环境监测中成为强有力的候选者。

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