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On the high-accuracy approach to flow simulation aroundthe airfoils by using vortex method

机译:用涡流法围绕翼型流动模拟的高精度方法

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Some problems connected to vortex methods development for 2D incompressible flow simulation around airfoils are discussed.In the numerical schemes and algorithms which are normally used in the vortex methods,the airfoil is approximated by a polygon consists of rectilinear panels,and the the vortex sheet intensity,which is placed on the airfoil surface line and simulates the airfoil's influence the flow,is assumed to be piecewise-constant or piecewise-linear function.The most accurate mathematical models and numerical algorithms,based on such approaches,provide the estimation for the order of the error between O(h)and O(h~2)for the average vortex sheet intensity over the panels(his the maximal panel length).In the present research a new approach is developed,where the vortex sheet intensity is assumed to be discontinuous piecewise-linear or piecewise-quadratic function and the curvature of the panels is taken into account.In order to compute the coefficients of the main system of the algebraic equations,the least squares method is used instead of commonly used no-through or no-slip conditions at separate control points or over the panels in the average.It is shown,that the developed approach is much more accurate in comparison with previously known ones: for some test problems(flows around a circular airfoil,an elliptical airfoil and Zhukovsky airfoil)it permits to obtain numerical solution which has error of order O(h~4).
机译:连接到涡流方法发展为围绕翼型2D不可压缩流动模拟的一些问题是discussed.In数值方法和算法,其通常在涡流方法中使用,所述翼型件由多边形近似由直线面板,和涡流片强度,其被放置在翼型件表面线和模拟翼型的影响力的流动,被假定为分段恒定或分段线性function.The最精确的数学模型和数值计算算法,根据这种方法,为订单提供估计之间的误差的O(h)和O(H〜2)的平均涡旋片强度比面板(他的最大面板长度)。在本研究一种新的方法进行显影,其中,所述涡流片强度被假定为是不连续的分段线性或分段二次函数和所述面板的曲率被取入account.In为了计算人的主系统的系数gebraic方程,最小二乘法来代替常用的无通或无滑移的在单独的控制点或在average.It面板条件所示,所开发的方法是比较精确得多与先前已知的的:对于一些测试问题(流动围绕圆形翼型,椭圆翼型和茹科夫斯基翼型)它允许获得的数值解,其具有顺序O(H〜4)的错误。

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