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The spread F Experiment (SpreadFEx): Program overview and first results

机译:传播F实验(SpreadFEx):程序概述和初步结果

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We performed an extensive experimental campaign (the spread F Experiment, or SpreadFEx) from September to November 2005 to attempt to define the role of neutral atmosphere dynamics, specifically wave motions propagating Upward from the lower atmosphere. in seeding equatorial spread F and plasma bubbles extending to higher altitudes. Campaign measurements focused on the Brazilian sector and included ground-based optical, radar, digisonde, and GPS measurements at a number of fixed and temporary sites. Related data on convection and plasma bubble structures were also collected by GOES 12 and file GUVI instrument aboard the TIMED Satellite. Initial results Of Our analyses of SpreadFEx and related data indicate 1) extensive gravity wave (GW) activity apparently linked to deep convection predominantly to the west of our measurement sites. 2) the presence of small-scale GW activity confined to lower altitudes, 3) larger-scale GW activity apparently penetrating to much higher altitudes suggested by electron density and TEC fluctuations in the E and F regions, 4) substantial GW amplitudes implied by digisonde electron densities, and 5) apparent direct links of these perturbations in the lower F region to spread F and plasma bubbles extending to much higher altitudes. Related efforts with correlative data are defining 6) the occurrence and locations of deep convection, 7) the spatial and temporal evolutions of plasma bubbles. the 8) 2D (height-resolved) structures of plasma bubbles. and 9) the expected propagation of GWs and tides from the lower atmosphere into the thermosphere and ionosphere.
机译:2005年9月至2005年11月,我们进行了广泛的实验(扩散F实验或SpreadFEx),以试图确定中性大气动力学的作用,特别是从低空向上传播的波动。在播种赤道传播F和血浆气泡延伸到更高的高度。运动测量的重点是巴西部门,包括在多个固定和临时站点进行的地面光学,雷达,数字地标和GPS测量。对流和等离子气泡结构的相关数据也由GOES 12和定时卫星上的GUVI仪器收集。我们对SpreadFEx和相关数据进行分析的初步结果表明:1)广泛的重力波(GW)活动显然与深对流有关,主要是在我们测量地点的西部。 2)小范围的GW活动存在于较低的高度,3)较大的GW活动明显渗透到E和F区的电子密度和TEC波动所暗示的更高的高度,4)digisonde暗示了很大的GW振幅电子密度,以及5)这些扰动在较低F区域中的明显直接联系,以使F和等离子气泡扩散到更高的高度。与相关数据相关的努力定义了6)深对流的发生和位置,7)等离子体气泡的时空演化。 8)等离子气泡的二维(高度分解)结构。 9)预期的GWs和潮汐将从低层大气传播到热层和电离层。

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