首页> 外文期刊>Journal of Climate >Tropical Cold-Point Tropopause: Climatology, Seasonal Cycle, and Intraseasonal Variability Derived from COSMIC GPS Radio Occultation Measurements
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Tropical Cold-Point Tropopause: Climatology, Seasonal Cycle, and Intraseasonal Variability Derived from COSMIC GPS Radio Occultation Measurements

机译:热带冷点河豚:从COSMIC GPS无线电掩星测量得出的气候学,季节性周期和季节内变化

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The finescale structure of the tropical cold-point tropopause (CPT) is examined using high-resolution temperature profiles derived from Constellation Observing System for Meteorology, Ionosphere and Climate (COSMIC) global positioning system (GPS) radio occultation measurements for 4 yr from September 2006 to August 2010. The climatology, seasonal cycle, and intraseasonal variability are analyzed for three CPT properties: temperature (T-CPT), pressure (P-CPT), and sharpness (S-CPT). Their relationships with tropospheric and stratospheric processes are also discussed. The climatological P-CPT is largely homogeneous in the deep tropics, whereas T-CPT and S-CPT exhibit local minima and maxima, respectively, at the equator in the vicinity of deep convection regions. All three CPT properties, however, show coherent seasonal cycle in the tropics; the CPT is colder, higher (lower in pressure), and sharper during boreal winter than during boreal summer. This seasonality is consistent with the seasonal cycle of tropical upwelling, which is largely driven by stratospheric and near-tropopause processes, although the amplitude of the seasonal cycle of T-CPT and S-CPT is modulated by tropospheric circulations. On intraseasonal time scales, P-CPT and T-CPT exhibit homogeneous variability in the deep tropics, whereas S-CPT shows pronounced local variability and seasonality. The wavenumber-frequency spectra reveal that intraseasonal variability of CPT properties is primarily controlled by Kelvin waves, with a nonnegligible contribution by Madden-Julian oscillation convection. The Kelvin waves, which are excited by deep convection but often propagate along the equator freely, explain the homogeneous P-CPT and T-CPT variabilities. On the other hand, the vertically tilted dipole of temperature anomalies, which is associated with convectively coupled equatorial waves, determines the local structure and seasonality of S-CPT variability.
机译:从2006年9月起对气象,电离层和气候星座观测系统(COSMIC)全球定位系统(GPS)无线电掩星测量得出的高分辨率温度廓线,检查了热带冷点对流层顶(CPT)的精细结构到2010年8月。分析了三种CPT属性的气候,季节周期和季节内变异性:温度(T-CPT),压力(P-CPT)和清晰度(S-CPT)。还讨论了它们与对流层和平流层过程的关系。在深热带地区,气候P-CPT在很大程度上是均匀的,而T-CPT和S-CPT在深对流区附近的赤道分别表现出局部的最小值和最大值。然而,CPT的所有三个特性在热带地区都显示出连贯的季节性周期。与北方夏季相比,北方北方的CPT更冷,更高(压力更低)和更锋利。尽管T-CPT和S-CPT的季节性周期的幅度受对流层环流的调节,但这种季节性与热带上升的季节周期是一致的,后者主要由平流层和近对流层顶过程驱动。在季节内时间尺度上,P-CPT和T-CPT在热带地区表现出均一的变化,而S-CPT显示出明显的局部变化和季节性。波数-频谱显示,CPT特性的季节内变化主要受开尔文波控制,马登-朱利安振荡对流的贡献不可忽略。开尔文波由深对流激发,但通常沿赤道自由传播,解释了均一的P-CPT和T-CPT变化。另一方面,与对流耦合的赤道波有关的温度异常的垂直倾斜偶极子确定了S-CPT变异性的局部结构和季节性。

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