论文标题
SuperCell低水平中环酮:流入和涡旋的起源
Supercell low-level mesocyclones: Origins of inflow and vorticity
论文作者
论文摘要
超级电池雷暴中低水平中环隆的发展经常通过在超级电池前侧面的斜压梯度沿斜压梯度的发展而产生风暴生成的流向涡度来解释。然而,环境的环境流动性(通常是通过风暴相关的螺旋性量化),尤其是在地面附近,特别擅长区分非龙和龙卷风超级细胞。这项研究在水平和垂直方面调查了流入空气中的超级电池低水平中环隆的起源是否可以帮助解释环境与暴风雨生成的涡度在低水平中cl旋旋转中的动态作用。超级电池的模拟是在自然界观察到的超级电池环境中常见的风轮廓初始初始化的,表明,绑定的低水平中环酮的空气主要源自未经扰动的环境环境,而不是沿着前向侧面,从非常靠近地面,通常是在大气中最低的200-400 m。鉴于近地环境空气包括大部分流入到低水平的中环隆上,这可能解释了在大气中最低的几百米处的环境流涡度的预测技能。低水平的中clone似乎不需要从向前侧面的额外水平涡度发展而大大增加。取而代之的是,低水平中环内垂直涡度的主要贡献是来自环境水平涡度。希望这项研究能够阐明超级细胞中低级中环酮的发展。
The development of low-level mesocyclones in supercell thunderstorms has often been explained via the development of storm-generated streamwise vorticity along a baroclinic gradient in the forward flank of supercells. However, the ambient streamwise vorticity of the environment (often quantified via storm-relative helicity), especially near the ground, is particularly skillful at discriminating between nontornadic and tornadic supercells. This study investigates whether the origins of the inflow air into supercell low-level mesocyclones, both horizontally and vertically, can help explain the dynamical role of environmental versus storm-generated vorticity in the development of low-level mesocyclone rotation. Simulations of supercells, initialized with wind profiles common to supercell environments observed in nature, show that the air bound for the low-level mesocyclone primarily originates from the undisturbed, ambient environment, rather than from along the forward flank, and from very close to the ground, often in the lowest 200 - 400 m of the atmosphere. Given that the near-ground environmental air comprises the bulk of the inflow into low-level mesocyclones, this likely explains the forecast skill of environmental streamwise vorticity in the lowest few hundred meters of the atmosphere. The low-level mesocyclone does not appear to require much augmentation from the development of additional horizontal vorticity in the forward flank. Instead, the dominant contributor to vertical vorticity within the low-level mesocyclone is from the environmental horizontal vorticity. This study hopefully clarifies the development of low-level mesocyclones in supercells.