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Analysis of frequency-gas pressure characteristics of a quartz-crystal tuning fork with rough surfaces by turbulent flow model using fractal dimension

机译:湍流模型使用分形尺寸分析粗糙表面粗糙表面的频率 - 气压特性分析

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The frequency-gas pressure characteristics of a quartz-crystal tuning fork with rough surfaces that undergoes vibrating in flexural mode in N{sub}2 gas, was studied experimentally and theoretically. On the assumption that gas flow on a vibrating quartz-crystal tuning fork with rough surfaces is in transition from laminar flow to a mixed fluid state that can be regarded as turbulent flow, so that this turbulent flow increases surface friction resistance. The author derived a phenomenological frequency equation by extending the mixing length theory of turbulent flow on a vibrating plate proposed by L. Prandtl (1925). In this theory, the mixing length was extended to have fractal dimension. Two empirical constants involving in this theoretical frequency equation, indicating frequency-gas pressure characteristics, are obtained from the experimental results by the least-squares method. The theoretical equation obtained here shows better agreement with the experimental results than that previously obtained by P. E. Rouse et al (1953).
机译:通过实验和理论地研究了在N {} 2气体中经历抗弯曲模式振动的粗糙表面的石英晶型调谐叉的频率 - 气压特性。假设具有粗糙表面的振动石英晶叉上的气体流动从层流向移动到可以被视为湍流的混合流体状态,因此这种湍流增加了表面摩擦阻力。作者通过在L.Prandtl(1925)提出的振动板上延长湍流的混合长度理论来源于现象学频率方程。在本文中,混合长度延伸以具有分形尺寸。涉及在该理论频率方程中的两个经验常数,指示频率气体压力特性,通过最小二乘法从实验结果获得。这里获得的理论方程与实验结果更好地表达了比先前通过P. E.Rouse等(1953)获得的实验结果。

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