模拟超级单体雷暴中流出浪涌产生的顺流涡度流的发展与特征研究

IF 2.8 3区 地球科学 Q3 METEOROLOGY & ATMOSPHERIC SCIENCES Monthly Weather Review Pub Date : 2023-10-02 DOI:10.1175/mwr-d-22-0309.1
Kevin T. Gray, Jeffrey W. Frame
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引用次数: 0

摘要

摘要沿流涡度流(SVCs)被假设可以增强超级单体雷暴中的低层中气旋,并可能增加龙卷风形成的可能性。最近的观察研究证实了超级细胞中SVCs的存在,数值模拟为进一步研究SVCs提供了可能。分析了19个具有不同中层切变方向的理想超级单体模拟,以确定SVC的形成和特征在风暴之间可能存在的差异。在我们的模拟中,SVCs在左侧辐合边界的冷侧发展,其上升气流相对位置部分取决于下降气流位置。在模拟过程中,或在类似龙卷风的漩涡(tlv)之前发生的svc与没有发生的svc之间,svc的震级、持续时间和平均深度没有显著差异。在SVC内部初始化的轨迹显示了两种主要气流,一种在SVC的大部分时间内流经,另一种起源于前侧翼的改良流入,然后与SVC合并。沿轨迹计算的涡度预算显示,第一气流的最大顺流涡度值明显大于第二气流。涡度预算还表明,水平向流涡度的扩展是高涡度的主要原因。TLV的形成不需要事先发展SVC;在模拟中,44%的tlv之前都有svc。当SVC发生时,53%的情况下会发生TLV,这表明并非所有SVC都会导致TLV的形成。
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Investigating the Development and Characteristics of Streamwise Vorticity Currents Produced by Outflow Surges in Simulated Supercell Thunderstorms
Abstract Streamwise vorticity currents (SVCs) have been hypothesized to enhance low-level mesocyclones within supercell thunderstorms and perhaps increase the likelihood of tornadogenesis. Recent observational studies have confirmed the existence of SVCs in supercells and numerical simulations have allowed for further investigation of SVCs. A suite of 19 idealized supercell simulations with varying midlevel shear orientations is analyzed to determine how SVC formation and characteristics may differ between storms. In our simulations, SVCs develop on the cold side of left-flank convergence boundaries and their updraft-relative positions are partially dependent on downdraft location. The magnitude, duration, and mean depth of SVCs do not differ significantly between simulations or between SVCs that precede tornado-like vortices (TLVs) and those that do not. Trajectories initialized within SVCs reveal two primary airstreams, one that flows through an SVC for the majority of its length, and another that originates in the modified inflow in the forward flank and then merges with the SVC. Vorticity budgets calculated along trajectories reveal that the first airstream exhibits significantly greater maximum streamwise vorticity magnitudes than the second airstream. The vorticity budgets also indicate that stretching of horizontal streamwise vorticity is the dominant contributor to the large values of streamwise vorticity within the SVCs. TLV formation does not require the development of an SVC beforehand; 44% of TLVs in the simulations are preceded by SVCs. When an SVC occurs, it is followed by a TLV 53% of the time, indicating not all SVCs lead to TLV formation.
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来源期刊
Monthly Weather Review
Monthly Weather Review 地学-气象与大气科学
CiteScore
6.40
自引率
12.50%
发文量
186
审稿时长
3-6 weeks
期刊介绍: Monthly Weather Review (MWR) (ISSN: 0027-0644; eISSN: 1520-0493) publishes research relevant to the analysis and prediction of observed atmospheric circulations and physics, including technique development, data assimilation, model validation, and relevant case studies. This research includes numerical and data assimilation techniques that apply to the atmosphere and/or ocean environments. MWR also addresses phenomena having seasonal and subseasonal time scales.
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