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- W996837669 abstract "Under the traditional framework of fluid dynamics,the problem of the numerical weatherprediction is often expressed as the deterministic initial value problem of the classical Newtonianmechanics.The atmosphere is.however,a many-body system,the methodology by which thesystem with two bodies could be precisely solved would cause bigger errors and problems whenhandling the many-body system by it.A kind of technique to incorporate “the irreversiblethermodynamic operators” into the numerical weather prediction models is.therefore,suggestingin this paper,to control the evolutionary direction of the many-body system according to theconstraining way of the second law of thermodynamics,and thus the forecasting accuracy of thenumerical weather prediction has been noticeably improved.For example,in the MM4 theaveraged relative root mean square error of the fields of the temperature,humidity,height andwhole wind velocity has decreased by about 13%,among which the averaged error of the 48 hforecasts has decreased by more than 20%.Since the technique to introduce the irreversablethermodynamic operator suggested in this paper is based on the physical law that describes thedissipativity and does not come from the computational consideration only.it is thus named as thephysical dissipative technique.In view of the universality of the principle incorporating theirreversible thermodynamics operators suggested in this paper for the fluid dynamics andatmospheric numerical models,the applications and generalization of this incorporating techniquewould produce a great impact on the field of geophysical fluid dynamics." @default.
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- W996837669 date "2002-01-01" @default.
- W996837669 modified "2023-09-24" @default.
- W996837669 title "PHYSICAL DISSIPATIVE TECHNIQUE AND ITS APPLICATION TO THE MM4" @default.
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