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Analysis of Mesovortex Characteristics, Behavior, and Interactions during the Second 30 June-1 July 2014 Midwestern Derecho Event

机译:2014年6月30日至7月1日中西部Derecho事件的中涡特征,行为和相互作用分析

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A pair of intense, derecho-producing quasi-linear convective systems (QLCSs) impacted northern Illinois and northern Indiana during the evening hours of 30 June through the predawn hours of 1 July 2014. The second QLCS trailed the first one by only 250 km and approximately 3 h, yet produced 29 confirmed tornadoes and numerous areas of nontornadic wind damage estimated to be caused by 30?40 m s?1 flow. Much of the damage from the second QLCS was associated with a series of 38 mesovortices, with up to 15 mesovortices ongoing simultaneously. Many complex behaviors were documented in the mesovortices, including: a binary (Fujiwhara) interaction, the splitting of a large mesovortex in two followed by prolific tornado production, cyclic mesovortexgenesis in the remains of a large mesovortex, and a satellite interaction of three small mesovortices around a larger parent mesovortex. A detailed radar analysis indicates no definitive differences between tornadic and nontornadic mesovortices. All observed mesovortices were cyclonic, indicating that either the vertical tilting of streamwise vorticity, generation of vortices via the release of horizontal shearing instability, or both were involved in mesovortex genesis.This paper examines the environment ahead of the second QLCS, the characteristics of the mesovortices produced, and the aforementioned complex interactions. It also discusses implications for mesovortex genesis and dynamics as well as operational considerations.
机译:在6月30日晚至2014年7月1日凌晨,一对强烈产生回声的准线性对流系统(QLCS)袭击了伊利诺伊州北部和印第安纳州北部。第二个QLCS落后第一个QFCS仅250公里,大约3小时后,仍产生了29次确诊的龙卷风,并估计由30?40 ms?1的气流造成了许多非隆起的风灾。第二个QLCS造成的大部分损害与一系列38个中涡有关,同时最多有15个中涡同时进行。在中涡中记录了许多复杂的行为,包括:二元(Fujiwhara)相互作用,将大中涡分成两部分,随后产生大量龙卷风,在大中涡的剩余部分中循环中涡发生,以及三个小中涡的卫星相互作用围绕较大的母体中涡。雷达的详细分析表明,隆鼻和非隆鼻中旋涡之间没有确定的差异。所有观察到的中涡都是气旋的,表明要么是沿流涡的垂直倾斜,要么是由于水平剪切不稳定性的释放而产生的涡,要么都参与了中涡的产生。本文研究了第二次QLCS之前的环境,特征产生中涡,以及上述复杂的相互作用。它还讨论了对中涡形成和动力学的影响以及操作注意事项。

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