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HERMESv3, a stand-alone multi-scale atmospheric emission modelling framework – Part 2: The bottom–up module

机译:Hermesv3,独立多尺度大气排放建模框架 - 第2部分:自下而上模块

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We describe the bottom–up module of the High-Elective Resolution Modelling Emission System version 3 (HERMESv3), a Python-based and multi-scale modelling tool intended for the processing and computation of atmospheric emissions for air quality modelling. HERMESv3 is composed of two separate modules: the global_regional module and the bottom_up module. In a companion paper (Part?1, Guevara et al., 2019a) we presented the global_regional module. The bottom_up module described in this contribution is an emission model that estimates anthropogenic emissions at high spatial- (e.g. road link level,) and temporal- (hourly) resolution using state-of-the-art calculation methods that combine local activity and emission factors along with meteorological data. The model computes bottom–up emissions from point sources, road transport, residential and commercial combustion, other mobile sources, and agricultural activities. The computed pollutants include the main criteria pollutants (i.e. NOx, CO, NMVOCs (non-methane volatile organic compounds), SOx, NH3, PM10 and PM2.5) and greenhouse gases (i.e. CO2 and CH4, only related to combustion processes). Specific emission estimation methodologies are provided for each source and are mostly based on (but not limited to) the calculation methodologies reported by the European EMEP/EEA air pollutant emission inventory guidebook. Meteorologically dependent functions are also included to take into account the dynamical component of the emission processes. The model also provides several functionalities for automatically manipulating and performing spatial operations on georeferenced objects (shapefiles and raster files). The model is designed so that it can be applicable to any European country or region where the required input data are available. As in the case of the global_regional module, emissions can be estimated on several user-defined grids, mapped to multiple chemical mechanisms and adapted to the input requirements of different atmospheric chemistry models (CMAQ, WRF-Chem and MONARCH) as well as a street-level dispersion model (R-LINE). Specific emission outputs generated by the model are presented and discussed to illustrate its capabilities.
机译:我们描述了高选修分辨率建模排放系统版本3(HERMESV3)的自下而上模块,用于加工和计算空气质量建模的大气排放的Python基和多尺度建模工具。 Hermesv3由两个单独的模块组成:Global_Regional模块和底部模块。在伴侣论文中(部分?1,Guevara等,2019a)我们呈现了Global_Regional模块。本贡献中描述的底部模块是利用结合局部活动和排放因子的最新计算方法估计高空间(例如道路水平,)和时间 - (每小时)分辨率的发射模型。随着气象数据。该模型计算点源,公路运输,住宅和商业燃烧,其他移动来源和农业活动的自下而上的排放。计算的污染物包括主要标准污染物(即NOx,CO,NMVOCs(非甲烷挥发性有机化合物),SOX,NH 3,PM10和PM2.5)和温室气体(即CO 2和CH 4,仅与燃烧过程有关)。为每个来源提供特定的排放估计方法,主要基于(但不限于)欧洲EMEP / EEA空气污染物排放库存指南报告的计算方法。还包括气象学依赖功能,以考虑排放过程的动态分量。该模型还提供了几种功能,用于自动操作和在地理学对象(Shapefile和Raster文件)上执行空间操作。该模型的设计使其适用于所需输入数据的任何欧洲国家或地区。如在Global_Regional模块的情况下,可以在若干用户定义的网格上估计排放,映射到多种化学机制,并适应不同大气化学模型(CMAQ,WRF-CHEMARCH)以及街道的输入要求-Level色散模型(R线)。提出并讨论了模型生成的特定发射输出以说明其能力。

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