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Formation Mechanisms for Convection over the Ligurian Sea during MAP IOP-8

机译:MAP IOP-8期间利古里亚海对流的形成机制

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The dynamical impacts of an unusually strong stable layer that developed over the Po Valley and northern Ligurian Sea during Mesoscale Alpine Program (MAP) intensive observation period 8 (IOP-8) on the formation of convection over the Ligurian Sea are explored. Based on numerically simulated equivalent potential temperature, wind vectors, and by a trajectory analysis of parcels both beneath and above the stable layer, it is shown that the stable layer behaved as a material surface or "effective mountain" to the airstreams impinging on it from the south. Additional analyses show that the leading edge of the stable layer was collocated with maxima in upward motion and a strong positive moisture flux. Hence, it was further argued and demonstrated through inspection of soundings upstream of the cold dome and trajectory analyses that lifting by the stable layer enhanced convective activities over the Ligurian Sea. Finally, processes contributing to the maintenance of the stable layer during IOP-8 were explored. It was found that the differential advection of a warm, less stable air mass on top of a cooler, more stable air mass helped maintain the stable layer. The Ligurian Apennines made a secondary contribution to the stagnation of the cool air in the Po Valley by partially blocking this air mass from exiting the valley to the south.
机译:探索了在中尺度高山计划(MAP)密集观测期8(IOP-8)期间,波谷和利古里亚海北部形成的异常坚固的稳定层对利古里亚海对流形成的动力学影响。基于数值模拟的等效潜在温度,风向矢量,以及通过对稳定层下面和上方的地块进行的轨迹分析,表明稳定层表现为从其上撞击的气流的物质表面或“有效山脉”南方。进一步的分析表明,稳定层的前边缘与向上运动的最大值和强的正湿通量并置。因此,通过检查冷圆顶上游的测深和轨迹分析进一步论证和论证了稳定层的抬升增强了利古里亚海上空的对流活动。最后,探讨了有助于在IOP-8期间维护稳定层的过程。发现在较冷,较稳定的空气顶部上较热,较不稳定的空气质量的不同对流有助于保持稳定的层。利古里亚亚平宁山脉通过部分阻止这种空气团从山谷中流向南部,为凉爽的空气停滞做出了第二贡献。

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