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An efficient approach of aerosol thermodynamic equilibrium predictions by the HDMR method

机译:用HDMR方法预测气溶胶热力学平衡的有效方法

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In this paper, we develop a new and efficient approach for high dimensional atmospheric aerosol thermodynamic equilibrium predictions. The multi-phase and multi-component aerosol thermodynamic input-output systems are solved by the high dimensional model representation (HDMR) method combining with the moving multiple cut points. The developed approach improves the accuracy of numerical simulations for the general high dimensional input-output systems compared with the standard cut-HDMR method. It can simulate efficiently the atmospheric aerosol thermodynamic equilibrium problems in a large range of aerosol concentrations from 10~(-10) to 10~(-6) mol m~(-3). Numerical experiments show that the approach has great computational efficiency and the CPU-time of the approach is much less than that of ISORROPIA. The method does excellent performance in predicting high dimensional aerosol thermodynamic components as well as particulate matters (PMs).
机译:在本文中,我们为高维大气气溶胶热力学平衡预测开发了一种新的有效方法。通过高维模型表示(HDMR)方法结合移动的多个切点,解决了多相多组分气溶胶热力学输入输出系统。与标准cut-HDMR方法相比,所开发的方法提高了一般高维输入输出系统数值模拟的准确性。它可以有效地模拟从10〜(-10)mol至10〜(-6)mol m〜(-3)的大浓度范围内的大气气溶胶热力学平衡问题。数值实验表明,该方法具有很高的计算效率,其CPU时间比ISORROPIA少得多。该方法在预测高维气溶胶热力学成分以及颗粒物(PM)方面具有出色的性能。

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