実験力学
Print ISSN : 1346-4930
ISSN-L : 1346-4930
円管内等加速度流れの臨界レイノルズ数
中畑 佑介Charles W. KNISELY西原 一嘉佐々木 康井口 学
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2007 年 7 巻 2 号 p. 142-147

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Experimental investigation has been carried out to understand the transition to turbulence in constant-acceleration pipe flow. A fluid initially at rest in a circular pipe is accelerated at a constant acceleration. The transition to turbulence is judged on the basis of the output signal of a hot-wire anemometer or laser Doppler velocimetry in addition to flow visualization. The critical Reynolds number,Retr(=umD⁄v), is highly increased beyond that of approximately 3000 in steady pipe flows, where um is the cross-sectional mean velocity, D is the pipe diameter, and v is the kinematic viscosity of fluid. The following empirical equation is proposed for the critical Reynolds number.Retr=1.33[D(a⁄v2)1⁄3]1.86 where a is the acceleration.
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