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首页> 外文期刊>Mathematical Problems in Engineering >Approximate Ad Hoc Parametric Solutions for Nonlinear First-Order PDEs Governing Two-Dimensional Steady Vector Fields
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Approximate Ad Hoc Parametric Solutions for Nonlinear First-Order PDEs Governing Two-Dimensional Steady Vector Fields

机译:控制二维稳态矢量场的非线性一阶PDE的近似Ad Hoc参数解

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摘要

Through a suitable ad hoc assumption, a nonlinear PDE governing a three-dimensional weak, irrotational, steady vector field is reduced to a system of two nonlinear ODEs: the first of which corresponds to the two-dimensional case, while the second involves also the third field component. By using several analytical tools as well as linear approximations based on the weakness of the field, the first equation is transformed to an Abel differential equation which is solved parametrically. Thus, we obtain the two components of the field as explicit functions of a parameter. The derived solution is applied to the two-dimensional small perturbation frictionless flow past solid surfaces with either sinusoidal or parabolic geometry, where the plane velocities are evaluated over the body's surface in the case of a subsonic flow.
机译:通过适当的临时假设,将支配三维弱无旋稳定矢量场的非线性PDE简化为两个非线性ODE的系统:第一个对应于二维情况,而第二个还涉及二维情况。第三部分。通过使用多种分析工具以及基于磁场弱点的线性逼近,将第一个方程式转换为Abel微分方程式,然后对其进行参数化求解。因此,我们获得了字段的两个部分作为参数的显式函数。推导的解决方案应用于通过具有正弦或抛物线形几何形状的固体表面的二维小扰动无摩擦流,其中在亚音速流的情况下,在身体表面上评估平面速度。

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  • 来源
    《Mathematical Problems in Engineering》 |2010年第3期|p.589-611|共23页
  • 作者

    M. P. Markakis;

  • 作者单位

    Department of Engineering Sciences, University of Patras, GR 26504, Greece;

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  • 正文语种 eng
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