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A Regional Air Quality Model over the Kanto Region of Japan: The Effect of the Physics Parameterization on the Meteorological and Chemical Fields

机译:日本Kanto地区区域空气质量模型:物理参数化对气象和化学品的影响

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The effects of physics parameterization on meteorological and chemical fields were examined over the Kanto region of Japan using an air quality (AQ) model, which consists of two chemistry transport models: the global model CHASER and the regional model WRF/Chem. For hindcast experiments without a chemical module for June-July in 2005 and 2006, two non-local planetary boundary layer (PBL) schemes (Yonsei University YSU and NCEP GFS) showed a deeper PBL height and a stronger sea-breeze related with warmer surface temperature than for the observation and the local PBL scheme (Mellor-Yamada level 2.5). Two experiments with a chemical module for July–August in 2005 clarified that NCEP GFS scheme transported O3 plumes to higher altitudes above 2 km and also produced a higher concentration near the surface than for Mellor-Yamada scheme.
机译:使用空气质量(AQ)模型在日本的Kanto地区进行了物理化参数化对气象和化学领域的影响,该模型包括两个化学输送模型:全球模型追逐和区域模型WRF / Chem。对于没有化学模块的Hindcast实验,于2005年7月和2006年,2006年7月,两个非局部行星边界层(PBL)方案(Yonsei大学Ysu和NCEP GFS)表现出更深的PBL高度,并与较温暖的表面相关的海风更强大温度比观察和局部PBL方案(MELLOR-YAMADA LEVEL 2.5)。 2005年7月8日的化学模块的两项实验澄清说,NCEP GFS方案将O3羽毛运输到高于2公里的高度高度,并在表面附近产生更高的浓度,而不是Merlor-Yamada计划。

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