Rapid Adaptive Optimization Model for Atmospheric Chemistry (ROMAC) v1.0

  • Jiangyong Li
  • , Chunlin Zhang
  • , Wenlong Zhao
  • , Shijie Han
  • , Yu Wang
  • , Hao Wang
  • , Boguang Wang

Research output: Journal article publicationJournal articleAcademic researchpeer-review

Abstract

The Rapid Adaptive Optimization Model for Atmospheric Chemistry (ROMAC) is a flexible and computationally efficient photochemical box model. Its unique adaptive dynamic optimization module allows for the dynamic and rapid estimation of the impact of chemical and physical processes on pollutant concentration. ROMAC outperforms traditional box models in evaluating the influence of physical processes on pollutant concentrations. Its ability to quantify the effects of chemical and physical processes on pollutant concentrations has been confirmed through chamber and field observation cases. Since the development of a variable-step and variable-order numerical solver that eliminates the need for Jacobian matrix processing, the computational efficiency of ROMAC has seen a marked improvement with only a marginal increase in error. Specifically, the computational efficiency has improved by 96 % when compared to several established box models, such as F0AM and AtChem. Moreover, the solver maintains a discrepancy of less than 0.1 % when its results are compared with those obtained from a high-precision solver in AtChem.

Original languageEnglish
Pages (from-to)6049-6066
Number of pages18
JournalGeoscientific Model Development
Volume16
Issue number21
DOIs
Publication statusPublished - 30 Oct 2023

ASJC Scopus subject areas

  • Modelling and Simulation
  • General Earth and Planetary Sciences

Fingerprint

Dive into the research topics of 'Rapid Adaptive Optimization Model for Atmospheric Chemistry (ROMAC) v1.0'. Together they form a unique fingerprint.

Cite this