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Mass conservative, positive definite integrator for atmospheric chemical dynamics

机译:质量保守的,正定积分器,用于大气化学动力学

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Air quality models compute the transformation of species in the atmosphere undergoing chemical and physical changes. The numerical algorithms used to predict these transformations should obey mass conservation and positive definiteness properties. Among all physical phenomena, the chemical kinetics solver provides the greatest challenge to attain these two properties. In general, most chemical kinetics solvers are mass conservative but not positive definite. In this article, a new numerical algorithm for the computation of chemical kinetics is presented. The integrator is called Split Single Reaction Integrator (SSRI). It is both mass conservative and positive definite. It solves each chemical reaction exactly and uses operator splitting techniques (symmetric split) to combine them into the entire system.rnThe method can be used within a host integrator to fix the negative concentrations while preserving the mass, or it can be used as a standalone integrator that guarantees positive definiteness and mass conservation. Numerical results show that the new integrator, used as a standalone integrator, is second order accurate and stable under large fixed time steps when other conventional integrators are unstable.
机译:空气质量模型计算发生化学和物理变化的大气中物种的转化。用于预测这些转换的数值算法应服从质量守恒和正定性。在所有物理现象中,化学动力学求解器为实现这两个特性提出了最大的挑战。通常,大多数化学动力学求解器是质量保守的,但不是正定的。在本文中,提出了一种用于化学动力学计算的新数值算法。该积分器称为拆分单反应积分器(SSRI)。它既是群众保守的又是肯定的。它可以精确地解决每个化学反应,并使用算子拆分技术(对称拆分)将它们组合到整个系统中。该方法可以在主机积分器中使用,以固定负浓度,同时保留质量,或者可以独立使用保证正定性和质量守恒的积分器。数值结果表明,当其他常规积分器不稳定时,用作独立积分器的新型积分器在较大的固定时间步长下具有二阶精度和稳定性。

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