首页> 外文期刊>Journal of the Meteorological Society of Japan >NHM-Chem, the Japan Meteorological Agency's Regional Meteorology-Chemistry Model: Model Evaluations toward the Consistent Predictions of the Chemical, Physical, and Optical Properties of Aerosols
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NHM-Chem, the Japan Meteorological Agency's Regional Meteorology-Chemistry Model: Model Evaluations toward the Consistent Predictions of the Chemical, Physical, and Optical Properties of Aerosols

机译:NHM-Chem,日本气象学机构的区域气象 - 化学模型:模型评估对气溶胶的化学,物理和光学性质的一致预测

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摘要

The model performance of a regional-scale meteorology-chemistry model (NHM-Chem) has been evaluated for the consistent predictions of the chemical, physical, and optical properties of aerosols. These properties are essentially important for the accurate assessment of air quality and health hazards, contamination of land and ocean ecosystems, and regional climate changes due to aerosol-cloud-radiation interaction processes. Currently, three optional methods are available: the five-category non-equilibrium method, the three-category non-equilibrium method, and the bulk equilibrium method. These three methods are suitable for the predictions of regional climate, air quality, and operational forecasts, respectively. In this paper, the simulated aerosol chemical, physical, and optical properties and their consistency were evaluated using various observation data in East Asia. The simulated mass, size, and deposition of SO_4~(2?) and NH_4~+ agreed well with the observations, whereas those of NO_3~?, sea salt, and dust needed improvement. The simulated surface mass concentration (PM10 and PM2.5) and spherical extinction coefficient agreed well with the observations. The simulated aerosol optical thickness (AOT) and dust extinction coefficient were significantly underestimated.
机译:已经评估了区域规模气象化学模型(NHM-CHEM)的模型性能,用于气溶胶的化学,物理和光学性质的一致预测。这些性质本质上是准确评估空气质量和健康危害,土地和海洋生态系统的污染,以及由于气溶胶云辐射相互作用过程的区域气候变化。目前,有三种可选方法可用:五类非平衡方法,三类非平衡方法,以及散装平衡法。这三种方法分别适用于区域气候,空气质量和运营预测的预测。本文使用东亚各种观察数据评估了模拟的气溶胶化学,物理和光学性质及其一致性。 SO_4〜(2?)和NH_4〜+的模拟质量,尺寸和沉积与观察结果吻合良好,而NO_3〜2,海盐和灰尘所需的改善。模拟表面质量浓度(PM10和PM2.5)和球形消光系数与观察结果很好。模拟的气溶胶光学厚度(AOT)和粉尘消光系数显着低估。

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