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Variational methods of constructing monotone approximations for atmospheric chemistry models

机译:构造大气化学模型单调近似的变分方法

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摘要

A new method of constructing efficient monotone numerical schemes for solving direct, adjoint, and inverse atmospheric chemistry problems is presented. It is a synthesis of variational principles combined with splitting and decomposition methods and a constructive implementation of Euler integrating multipliers (EIM) bymeans of a local adjoint problem technique. To increase the efficiency of calculations, a method of decomposing the multicomponent substance transformation operators in terms of the mechanisms of reactions is also proposed. With analytical EIMs, the systems of stiff ODEs are decomposed and reduced to equivalent systems of integral equations solved by noniterative multistage algorithms of a given order of accuracy. An unconventional variational method of constructing mutually consistent algorithms for direct and adjoint problems and sensitivity studies for complex models with constraints is described.
机译:提出了一种构造有效的单调数值方案的新方法,用于解决直接,伴随和逆向的大气化学问题。它是变分原理与分解和分解方法相结合的综合,并且是通过局部伴随问题技术的欧拉积分乘数(EIM)的构造实现。为了提高计算效率,还提出了一种根据反应机理分解多组分物质转化算子的方法。使用解析EIM,可以将刚性ODE的系统分解并简化为等效方程组,该方程组由给定精度的非迭代多级算法求解。描述了构造直接和伴随问题的相互一致算法的非常规变分方法,以及对带有约束的复杂模型的敏感性研究。

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