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首页> 外文期刊>Journal of Geophysical Research, D. Atmospheres: JGR >An examination of summertime cyclone transport processes during Intercontinental Chemical Transport Experiment (INTEX-A)
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An examination of summertime cyclone transport processes during Intercontinental Chemical Transport Experiment (INTEX-A)

机译:洲际化学品运输实验(INTEX-A)期间夏季气旋运输过程的检查

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Warm conveyor belts (WCBs) are important mechanisms for transporting pollution during the cool season. These airstreams distribute surface emissions throughout the troposphere, playing a major role in the long-range transport of chemical species. Previous efforts to understand the lofting of WCBs have not investigated the relative importance of vertical forcing. In this study, we use fine resolution model-derived meteorological data, air parcel trajectories, flux calculations, and a diagnostic package for weather systems to perform a focused investigation of WCBs during the warm season INTEX-A period. Lifting and transport mechanisms during INTEX-A are compared to a well-documented cool season WCB case in the literature. Results show that weak, midlatitude cyclones are capable of producing vertical transport as great or greater than much stronger cyclones. An analysis of forcing terms contributing to vertical motion reveals that the Laplacian of latent heat release is the primary contributor to vertical motion during some cases of INTEX-A. The latent heating term is found to be greatest in areas of deep convection. This convection allows weak cyclones to produce WCB-like transport. WCB pathways are similar for the cases studied. In each example, air which originates far south of the low in the warm sector ascends to the north and joins the upper level westerly flow northeast of the low center. Although the transport pathways are similar, the forcing mechanism and location of maximum vertical transport are found to exhibit strong case-to-case variability. When cyclone-scale dynamics are relatively weak, widespread deep convection, especially south of the cyclone's center, is necessary to produce transport resembling a WCB.
机译:温暖的传送带(WCB)是在凉爽的季节输送污染的重要机制。这些气流在整个对流层中分布表面排放物,在化学物质的远程运输中起着重要作用。先前了解WCB放样的工作尚未调查垂直强制的相对重要性。在这项研究中,我们使用源自高分辨率模型的气象数据,包裹轨迹,通量计算以及天气系统的诊断包,来对暖季INTEX-A期间的WCB进行重点研究。在文献中,将INTEX-A期间的举升和运输机制与文献充分记录的凉季WCB案例进行了比较。结果表明,弱,中纬度气旋能够产生比强气旋更大或更强的垂直传输。对引起垂直运动的强迫项的分析表明,在INTEX-A的某些情况下,潜热释放的拉普拉斯算子是垂直运动的主要贡献者。在深对流地区,潜热期被认为是最大的。这种对流使弱旋风产生类似WCB的运输。对于所研究的案例,WCB途径相似。在每个示例中,起源于暖区低端的最南端的空气上升到北部,并与低端中心的东北方向进入高层西风流。尽管运输途径相似,但发现最大垂直运输的强迫机制和位置表现出明显的个案差异。当气旋尺度的动力学相对较弱时,必须产生广泛的深对流,特别是在气旋中心以南,以产生类似于WCB的运输。

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