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Determination of Critical Reynolds Number for the Flow Near a Rotating Disk on the Basis of the Theory of Stochastic Equations and Equivalence of Measures

机译:基于随机方程理论和措施等同性的旋转盘附近的流动临界雷诺数的临界雷诺数

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摘要

The determination of the flow regime of liquid and gas in power plants is the most important design task. Performing the calculations based on modern calculation methods requires a priori knowledge of the initial and boundary conditions, which significantly affect the final results. The purpose of the article is to present the solution for the critical Reynolds number for the flow near a rotating disk on the basis of the theory of stochastic equations of continuum laws and equivalence of measures between random and deterministic motions. The determination of the analytical dependence for the critical Reynolds number is essential for the study of flow regimes and the thermal state of disks and blades in the design of gas and steam turbines. The result of the calculation with using the new formula shows that for the flow near a wall of rotating disk, the critical Reynolds number is 325,000, when the turbulent Reynolds is 5 ÷ 10 and the degree of turbulence is 0.01 ÷ 0.02. Therefore, the result of solution shows a satisfactory correspondence of the obtained analytical dependence for the critical Reynolds number with the experimental data.
机译:电厂中液体和气体流动制度的确定是最重要的设计任务。基于现代计算方法执行计算需要先验的初始和边界条件的知识,这显着影响了最终结果。本文的目的是基于连续管道的随机方程和随机和确定性运动之间的措施的随机方程理论,介绍旋转盘附近的临界雷诺数的临界雷诺数。确定关键雷诺数的分析依赖性对于气体和蒸汽涡轮机设计中的流动制度和磁盘和叶片的热状态是必不可少的。使用新公式的计算结果显示,对于旋转盘壁附近的流动,当湍流雷诺为5°10并且湍流程度为0.01‰0.02时,临界雷诺数为325,000。因此,解决方案的结果显示了与实验数据的临界雷诺数所获得的分析依赖性的令人满意的对应关系。

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