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首页> 外文期刊>Atmospheric chemistry and physics >Investigation of the wet removal rate of black carbon in East Asia: validation of a below- and in-cloud wet removal scheme in FLEXible PARTicle (FLEXPART) model v10.4
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Investigation of the wet removal rate of black carbon in East Asia: validation of a below- and in-cloud wet removal scheme in FLEXible PARTicle (FLEXPART) model v10.4

机译:柔性粒子(Flexpart)型号和云湿拆除方案验证柔性粒子(Flexpart)型号V10.4中的湿法去除方案验证

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Understanding the global distribution of atmospheric black carbon (BC) is essential for unveiling its climatic effect. However, there are still large uncertainties regarding the simulation of BC transport due to inadequate information about the removal process. We accessed the wet removal rate of BC in East Asia based on long-term measurements over the 2010–2016 period at three representative background sites (Baengnyeong and Gosan in South Korea and Noto in Japan). The average wet removal rate, represented by transport efficiency (TE), i.e., the fraction of undeposited BC particles during transport, was estimated to be 0.73 in East Asia from 2010 to 2016. According to the relationship between accumulated precipitation along trajectory and TE, the wet removal efficiency was lower in East and North China but higher in South Korea and Japan, implying the importance of the aging process and frequency of exposure to below- and in-cloud scavenging conditions during air mass transport. Moreover, the wet scavenging in winter and summer showed the highest and lowest efficiency, respectively, although the lowest removal efficiency in summer was primarily associated with a reduced BC aging process because the in-cloud scavenging condition was dominant. The average half-life and e-folding lifetime of BC were 2.8 and 7.1 d, respectively, which is similar to previous studies, but those values differed according to the geographical location and meteorological conditions of each site. Next, by comparing TE from the FLEXible PARTicle (FLEXPART) Lagrangian transport model (version?10.4), we diagnosed the scavenging coefficients (s?1) of the below- and in-cloud scavenging scheme implemented in FLEXPART. The overall median TE from FLEXPART (0.91) was overestimated compared to the measured value, implying the underestimation of wet scavenging coefficients in the model simulation. The median of the measured below-cloud scavenging coefficient showed a lower value than that calculated according to FLEXPART scheme by a factor of 1.7. On the other hand, the overall median of the calculated in-cloud scavenging coefficients from the FLEXPART scheme was highly underestimated by 1 order of magnitude, compared to the measured value. From an analysis of artificial neural networks, the convective available potential energy, which is well known as an indicator of vertical instability, should be considered in the in-cloud scavenging process to improve the representative regional difference in BC wet scavenging over East Asia. For the first time, this study suggests an effective and straightforward evaluation method for wet scavenging schemes (both below and in cloud), by introducing TE along with excluding effects from the inaccurate emission inventories.
机译:了解大气黑碳(BC)的全球分布对于揭示其气候效果至关重要。然而,由于关于去除过程的信息不足,仍然有关于BC传输的模拟的巨大不确定性。我们根据2010-2016期间的三个代表背景网站(韩国韩国诺托的Baengnyeong和Goosan)的长期测量,基于2010 - 2016年期间的长期测量,进入了东亚的湿式去除率。通过运输效率(TE)表示的平均湿式去除率,即运输过程中未结核的BC颗粒的一部分,从2010年到2016年估计在东亚的0.73。根据跨越轨迹和TE累积降水之间的关系。南朝鲜和日本的湿式去除效率较高,较高,暗示了在空气批量运输期间衰老过程和暴露于下云扫除条件的衰老过程和频率的重要性。此外,冬季和夏季的湿清除分别表现出最高和最低的效率,尽管夏季的最低除去效率主要与降低的BC老化过程相关,因为云扫处理条件是显性的。 BC的平均半衰期和E折叠寿命分别为2.8和7.1d,其与先前的研究类似,但这些值根据每个网站的地理位置和气象状况而不同。接下来,通过比较来自柔性粒子(Flexpart)拉格朗日传输模型(版本?10.4)的Te,我们诊断出在Flexpart中实施的下面和云扫除方案的清除系数(S-1)。与测量值相比,来自Flexpart(0.91)的整体中位数高估,暗示模型模拟中的湿清除系数的低估。测得的低于云清除系数的中值显示比根据FlexPart方案计算的较低值1.7的值。另一方面,与测量值相比,来自Flexpart方案的计算出的云扫描系数的整体中值从Flexpart方案中的一个大量低估了1个级。从人工神经网络的分析中,在云中清除过程中,应考虑对对流可用潜在能量,这是众所周知的垂直不稳定的指标,以改善东亚BC湿扫失通的代表区别区别。本研究首次提出了一种通过引入TE以及不准确的排放库存的效果,对湿清除方案(低于和云)进行有效和直接的评估方法。

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