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Impact of the inflow moisture on the evolution of a warm conveyor belt

机译:流入水分对温暖的传送带演变的影响

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This case study of a warm conveyor belt (WCB) event that was probed on a research flight during the THORPEX (The Observing-System Research and Predictability Experiment) Pacific Asian Regional Campaign (T-PARC) field experiment in 2008, investigates the sensitivity of the forecast of the WCB, the associated cyclone and the downstream waveguide to the moisture content in the inflow region of the WCB. By assimilating water vapour profiles of a differential absorption lidar (DIAL) into the European Centre for Medium Range Weather Forecasts (ECMWF) Integrated Forecasting System (IFS), the inflow moisture in the analysis fields is adjusted and humidity is reduced in a broad region around the flight track. The initial reduction of moisture in the WCB inflow affects the latent heat release along the WCB, as well as the potential vorticity (PV) production at lower levels. This change led to a substantially lower outflow height of the forecasted WCB. Further, the height of the tropopause was reduced up to 20 hPa, which caused a change in the jet stream wind speeds of up to 15% downstream. Although the impact on the developing surface cyclone was small, improvements of the PV structure as well as of the kinetic energy could be identified.
机译:此案例研究是在2008年THORPEX(观测系统研究和可预测性实验)太平洋亚洲区域运动(T-PARC)野外实验期间的一次研究飞行中对暖传送带(WCB)事件进行的案例研究,旨在调查WCB,相关的旋风分离器和下游波导对WCB流入区域中水分含量的预测。通过将差分吸收激光雷达(DIAL)的水蒸气剖面吸收到欧洲中距离天气预报中心(ECMWF)综合预报系统(IFS)中,可以调整分析区域中的流入水分,并在周围的宽广区域降低湿度飞行轨迹。 WCB流入中水分的初始减少会影响沿WCB释放的潜热以及较低水平的潜在涡度(PV)产生。这种变化导致预测的WCB的流出高度大大降低。此外,对流层顶的高度降低到20 hPa,这导致下游的射流风速变化高达15%。尽管对显影表面旋风的影响很小,但可以确定PV结构以及动能的改善。

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