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Numerical tests of efficiency of the retrospective time integration scheme in the self-memory model
作者姓名:GU Xiangqian  YOU Xingtian  ZHU He  CAO Hongxing
作者单位:Chinese Academy of Meteorological Sciences, Beijing 100081, China,Training Center of China Meteorological Administration,Beijing 100081, China,Training Center of China Meteorological Administration,Beijing 100081, China,Chinese Academy of Meteorological Sciences, Beijing 100081, China
摘    要:A set of numerical tests was carried out to compare the retrospective time integral scheme in a self-memory model,whose dynamic kernel is the barotropical quasi-geostrophic model, with the ordinary centered difference scheme in the barotropical quasigeostrophic model. The Rossby-Haurwitz wave function was taken as the initial fields for both schemes. The results show that in comparison with the ordinary centered difference scheme, the retrospective time integral scheme reduces by 2 orders of magnitude the forecast error, and the forecast error increases very little with lengthening of the time-step. Therefore, the retrospective time integral scheme has advantages of improving the forecast accuracy, extending the predictable duration and reducing the computation amount.

关 键 词:numerical  tests    self-memory  model    retrospective  time  integral  scheme

Numerical tests of efficiency of the retrospective time integration scheme in the self-memory model
GU Xiangqian,YOU Xingtian,ZHU He,CAO Hongxing.Numerical tests of efficiency of the retrospective time integration scheme in the self-memory model[J].Progress in Natural Science,2004,14(9):833-836.
Authors:Gu Xiangqian  YOU Xingtian  Zhu He  Cao Hongxing
Institution:1. Chinese Academy of Meteorological Sciences, Beijing 100081, China
2. Training Center of China Meteorological Administration,Beijing 100081, China
Abstract:A set of numerical tests was carried out to compare the retrospective time integral scheme in a self-memory model,whose dynamic kernel is the barotropical quasi-geostrophic model, with the ordinary centered difference scheme in the barotropical quasigeostrophic model. The Rossby-Haurwitz wave function was taken as the initial fields for both schemes. The results show that in comparison with the ordinary centered difference scheme, the retrospective time integral scheme reduces by 2 orders of magnitude the forecast error, and the forecast error increases very little with lengthening of the time-step. Therefore, the retrospective time integral scheme has advantages of improving the forecast accuracy, extending the predictable duration and reducing the computation amount.
Keywords:numerical tests  self-memory model  retrospective time integral scheme
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