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Katabatically Driven Cold Air Intrusions into a Basin Atmosphere

机译:Kataboic地将冷的空气入侵进入盆地气氛

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The interactions between a katabatic flow on a plain and a circular basin cut into the plain and surrounded by an elevated rim were examined during a 5-h steady-state period during the Second Meteor Crater Experiment (METCRAX II) to explain observed disturbances to the nocturnal basin atmosphere. The approaching katabatic flow split horizontally around Arizona's Meteor Crater below a dividing streamline while, above the dividing streamline, an; 50-m-deep stable layer on the plain was carried over the 30-50-m rim of the basin. A flow bifurcation occurred over or just upwind of the rim, with the lowest portion of the stable layer having negative buoyancy relative to the air within the crater pouring continuously over the crater's upwind rim and accelerating down the inner sidewall. The cold air intrusion was deepest and coldest over the direct upwind crater rim. Cold air penetration depths varied around the inner sidewall depending on the temperature deficit of the inflow relative to the ambient environment inside the crater. A shallow but extremely stable cold pool on the crater floor could not generally be penetrated by the inflow and a hydraulic jump-like feature formed on the lower sidewall as the flow approached the cold pool. The upper non-negatively buoyant portion of the stable layer was carried horizontally over the crater, forming a neutrally stratified, low-wind speed cavity or wake in the lee of the upwind rim that extended downward into the crater over the upwind sidewall.
机译:在第二次流星火山口实验(Metcrax II)的5-H稳定状态下,在5小时稳定状态下,检查平原上的Katabatic流程与圆形盆地的圆形盆地与升高的边缘包围的相互作用。(Metcrax II),以解释对此夜间盆地气氛。接近的Katabatic流量在亚利桑那州的流星陨石坑周围水平分开,而在分开的流线上,and;平原上的50平方米深的稳定层在盆地的30-50m缘上进行。在轮辋上发生或刚刚逆住的流动分叉,稳定层的最低部分具有负浮力,相对于火山口内的空气在火山口的挤压轮辋上连续倾倒并加速在内侧壁。冷空气入侵在直接挤压火山口轮辋上最深,最冷。根据进入火山口内的环境环境的流入的温度缺陷,冷空气穿透深度在内侧壁周围变化。火山口地板上的浅但极稳定的冷池通常不能通过流入和在下侧壁上形成的液压跳跃特征,因为流动接近冷水池。稳定层的上部非负浮力部分在火山口上水平携带,形成中性分层的,低风速腔或在挤压轮辋的lee中的唤醒,以在挤压侧壁上向下延伸到火山口中。

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