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Two-dimensional distribution of streamwise velocity in open channel flow using maximum entropy principle: Incorporation of additional constraints based on conservation laws

机译:基于最大熵原理的明渠水流速度二维分布:基于守恒定律的附加约束

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This study derived the vertical and transverse distribution of streamwise velocity in open channels using the information-theoretic concept involving the maximum entropy (MaxEnt) principle, moment constraints expressed by the conservation of mass, momentum, and energy and a hypothesis invoking the connection between probability and space domains through a generalized coordinate system. Explicit analytical solutions were obtained for velocity profiles using a non-perturbation approach along with Pade approximation. The convergence of the series solution was shown both theoretically and numerically. The Lagrange multipliers, arising through the application of MaxEnt principle, were obtained by minimizing a convex potential, and the quasi-Newton method along with BEGS scheme was applied for solving the unconstrained optimization problem. For applying the conservation laws, the momentum and energy coefficients were found to influence the velocity profile in a channel cross-section. With the expressions of these coefficients, the derived velocity equations were validated for a wide range of experimental and field data. (C) 2019 Elsevier B.V. All rights reserved.
机译:这项研究使用涉及最大熵(MaxEnt)原理,由质量,动量和能量守恒表示的力矩约束以及假设与概率之间的联系的假设的信息理论概念,得出明渠中水流速度的垂直和横向分布和空间域通过广义坐标系。使用非摄动方法以及Pade逼近,获得了速度曲线的显式解析解。理论上和数值上都表明了级数解的收敛性。通过最大化凸势来获得通过应用MaxEnt原理而产生的Lagrange乘数,并将拟牛顿法与BEGS方案一起用于解决无约束优化问题。为了应用守恒定律,发现动量和能量系数会影响通道横截面的速度分布。利用这些系数的表达式,可以针对各种实验和现场数据验证导出的速度方程。 (C)2019 Elsevier B.V.保留所有权利。

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