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AN INTEGRATION METHOD WITH FITTING CUBIC SPLINE FUNCTIONS TO A NUMERICAL MODEL OF 2ND-ORDER SPACE-TIME DIFFERENTIAL REMAINDER——FOR AN IDEAL GLOBAL SIMULATION CASE WITH PRIMITIVE ATMOSPHERIC EQUATIONS
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作者 辜旭赞 张兵 王明欢 《Journal of Tropical Meteorology》 SCIE 2013年第4期388-396,共9页
In this paper,the forecasting equations of a 2nd-order space-time differential remainder are deduced from the Navier-Stokes primitive equations and Eulerian operator by Taylor-series expansion.Here we introduce a cubi... In this paper,the forecasting equations of a 2nd-order space-time differential remainder are deduced from the Navier-Stokes primitive equations and Eulerian operator by Taylor-series expansion.Here we introduce a cubic spline numerical model(Spline Model for short),which is with a quasi-Lagrangian time-split integration scheme of fitting cubic spline/bicubic surface to all physical variable fields in the atmospheric equations on spherical discrete latitude-longitude mesh.A new algorithm of"fitting cubic spline—time step integration—fitting cubic spline—……"is developed to determine their first-and2nd-order derivatives and their upstream points for time discrete integral to the governing equations in Spline Model.And the cubic spline function and its mathematical polarities are also discussed to understand the Spline Model’s mathematical foundation of numerical analysis.It is pointed out that the Spline Model has mathematical laws of"convergence"of the cubic spline functions contracting to the original functions as well as its 1st-order and 2nd-order derivatives.The"optimality"of the 2nd-order derivative of the cubic spline functions is optimal approximation to that of the original functions.In addition,a Hermite bicubic patch is equivalent to operate on a grid for a 2nd-order derivative variable field.Besides,the slopes and curvatures of a central difference are identified respectively,with a smoothing coefficient of 1/3,three-point smoothing of that of a cubic spline.Then the slopes and curvatures of a central difference are calculated from the smoothing coefficient 1/3 and three-point smoothing of that of a cubic spline,respectively.Furthermore,a global simulation case of adiabatic,non-frictional and"incompressible"model atmosphere is shown with the quasi-Lagrangian time integration by using a global Spline Model,whose initial condition comes from the NCEP reanalysis data,along with quasi-uniform latitude-longitude grids and the so-called"shallow atmosphere"Navier-Stokes primitive equations in the spherical coordinates.The Spline Model,which adopted the Navier-Stokes primitive equations and quasi-Lagrangian time-split integration scheme,provides an initial ideal case of global atmospheric circulation.In addition,considering the essentially non-linear atmospheric motions,the Spline Model could judge reasonably well simple points of any smoothed variable field according to its fitting spline curvatures that must conform to its physical interpretation. 展开更多
关键词 NUMERICAL forecast and NUMERICAL SIMULATION 2nd-order space-time differential remainder NUMERICAL model cubic spline functions Navier-Stokes PRIMITIVE equations quasi-Lagrangian time-split integration scheme global SIMULATION case
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基于三次插值函数算法的时间积分方案与二阶时空余差数值模式——以原始大气运动方程与理想全球模拟个例为例 被引量:3
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作者 辜旭赞 张兵 王明欢 《热带气象学报》 CSCD 北大核心 2011年第5期669-678,共10页
从大气运动原始方程和欧拉算符出发,用泰勒级数展开,给出二阶时空微商余项预报方程。进而讨论用三次插值函数——双三次曲面拟合求上游点的准拉格朗日时间积分方案与相应的二阶时空余差数值模式——"双三次模式"。则双三次模... 从大气运动原始方程和欧拉算符出发,用泰勒级数展开,给出二阶时空微商余项预报方程。进而讨论用三次插值函数——双三次曲面拟合求上游点的准拉格朗日时间积分方案与相应的二阶时空余差数值模式——"双三次模式"。则双三次模式是通过实现各个大气物理量场的二阶可导,从而可对预报方程做空间非线性("三次")时间离散积分,成为"双三次曲面拟合——时间步积分——双三次曲面拟合——……"一种新算法数值模式。讨论双三次数值模式的数学基础:三次插值函数及其数值分析极性定律用于数值模式。指出:双三次模式和谱模式都具有数学"收敛性";而Coons双三次曲面具有对变量场拟合二阶可导"最优性";和Hermite双三次曲面片具有对网格变量场二阶可导运算"等价性"。又指出:有限差分模式的中央差近似斜率和曲率,分别是三次样条斜率和曲率作"三点平滑"。双三次模式适合采用原始大气运动方程,适合采用准拉格朗日时间积分方案,并给出一个理想全球模拟个例。因大气运动本质上是非线性的,理论上可按变量场双三次曲面曲率判断,以采用符合物理诠释的局域或单点平滑,以保持模式时间积分稳定性。且未来容易实现全球多重/时变套网格双三次数值模式。 展开更多
关键词 数值预报与模拟 二阶时空余差数值模式 三次插值函数 Navier-Stokes大气运动方程组 准拉格朗日时间积分 欧拉向前差分时间积分 全球模拟个例
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三次样条函数(格式)准拉格朗日积分方案Ⅰ——准均匀经纬网格样条格式准拉格朗日平流方案与理想场试验 被引量:1
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作者 辜旭赞 赵军 唐永兰 《暴雨灾害》 2016年第6期554-565,共12页
研究经纬网格三次样条函数(样条格式)变换准拉格朗日平流方案,推导给出样条格式准拉格朗日预报方程通式,设计一种准均匀经纬网格,对气压、气温、风及广义牛顿力(加速度)场做"经纬网格-准均匀经纬网格"双三次曲面拟合,实现各... 研究经纬网格三次样条函数(样条格式)变换准拉格朗日平流方案,推导给出样条格式准拉格朗日预报方程通式,设计一种准均匀经纬网格,对气压、气温、风及广义牛顿力(加速度)场做"经纬网格-准均匀经纬网格"双三次曲面拟合,实现各个变量场在球面上的二阶可导,从而显式迭代插值求得上游点路径与预报变量值,上游点气块被限定在具备样条格式的斜率、曲率和挠率之变量场上运动。为验证样条格式求经纬网格上游点的可行性,采用了国际上通行、有效的一套理想场试验方案:平衡流试验、过极地气流试验和Rossby-Haurwitz波试验,用以检验经纬网格样条格式准拉格朗日平流方案的可行性、一致性、精确性及程序正确性。理想场试验表明,样条格式求上游点预报误差来源于三次样条函数"2阶空间余差"数学误差和上游点路径达不到精确轨迹的截断误差,其累积(积分)误差使得波动振幅变平,而波动位相传播无误差,且误差具有收敛性、球面对称性和单调有界性,同时证明,三次样条函数变换能够解决极区经纬网格点过密和极点奇异的经典问题。 展开更多
关键词 三次样条函数 准均匀经纬网格 二阶时空离散预报方程 准拉格朗日平流 理想场试验
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