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首页> 外文期刊>Geoscientific Model Development Discussions >The Detailed Emissions Scaling, Isolation, and Diagnostic (DESID) module in the Community Multiscale Air Quality (CMAQ) modeling system version 5.3.2
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The Detailed Emissions Scaling, Isolation, and Diagnostic (DESID) module in the Community Multiscale Air Quality (CMAQ) modeling system version 5.3.2

机译:社区多尺度空气质量(CMAQ)建模系统5.3.2中的详细排放缩放,隔离和诊断(DESID)模块

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摘要

Air quality modeling for research and regulatory applications often involves executing many emissions sensitivity cases to quantify impacts of hypothetical scenarios, estimate source contributions, or quantify uncertainties. Despite the prevalence of this task, conventional approaches for perturbing emissions in chemical transport models like the Community Multiscale Air Quality (CMAQ) model require extensive offline creation and finalization of alternative emissions input files. This workflow is often time-consuming, error-prone, inconsistent among model users, difficult to document, and dependent on increased hard disk resources. The Detailed Emissions Scaling, Isolation, and Diagnostic (DESID) module, a component of CMAQv5.3 and beyond, addresses these limitations by performing these modifications online during the air quality simulation. Further, the model contains an Emission Control Interface which allows users to prescribe both simple and highly complex emissions scaling operations with control over individual or multiple chemical species, emissions sources, and spatial areas of interest. DESID further enhances the transparency of its operations with extensive error-checking and optional gridded output of processed emission fields. These new features are of high value to many air quality applications including routine perturbation studies, atmospheric chemistry research, and coupling with external models (e.g., energy system models, reduced-form models).
机译:用于研究和监管应用的空气质量型号往往涉及执行许多排放敏感性情况,以量化假设情景,估算源贡献或量化不确定性的影响。尽管这项任务的普遍性,但常规方法对于社区多尺度空气质量(CMAQ)模型等化学传输模型中的排放方法需要广泛的离线创建和最终确定替代排放输入文件。此工作流程通常是耗时的,容易出错,模型用户之间的不一致,难以记录,并依赖于增加的硬盘资源。详细的排放缩放,隔离和诊断(DESID)模块,CMAQV5.3及更大的组件,通过在空气质量模拟期间在线进行这些修改来解决这些限制。此外,该模型包含排放控制界面,其允许用户规定简单且高度复杂的排放缩放操作,以控制个人或多种化学物种,排放来源和感兴趣的空间区域。 DESID进一步增强了其操作的透明度,并以大量的错误检查和可选的已加工发射字段的网格输出。这些新功能具有高价值,包括许多空气质量应用,包括常规扰动研究,大气化学研究和与外部模型的耦合(例如,能量系统模型,减少模型)。

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