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Mid-latitude atmospheric boundary layer electricity: A study by using a tethered balloon platform

机译:中纬度大气边界层电:使用系绳球囊平台进行研究

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摘要

In this study, we used a tethered balloon equipped with an instrumented platform to examine the altitude distribution of principal quantities of the lowest atmospheric region of the global electric circuit (GEC), radon volumetric activity, and aerosol particles concentration. Altitude soundings covered approximately 0.5 km of the lowest atmosphere and were accompanied by simultaneous ground-based measurements. This method of spaced observations allowed us to analyze the spatial and temporal changes in electrical quantities of the atmospheric boundary layer (ABL) more deeply than was possible before. Using successive balloon ascents and descents as well as holding the platform at certain heights, long-lived space charge layers were discovered and the rate of change of charge in atmospheric columns of various thickness was estimated. A charge density of small ions was determined to be enclosed in a range from -20 pC m(-3) to 30 pC m(-3) reaching the highest values with rare exceptions directly at the earth's surface. It was found that the electric field vertical profiles tend a decrease during the day most pronounced in the lower 100 m. Similar behavior is also demonstrated by radon and aerosol particle concentration profiles. Based on the results of soundings, columnar electrical resistance, electric potential, and electromotive force acting in the ABL in fair-weather conditions are quantified. These estimates show the significant contribution of the ABL to the GEC, which must be taken into account when considering it.
机译:在这项研究中,我们使用配备有仪表平台的系绳气球来检查全球电路(GEC),氡容积活动和气溶胶颗粒浓度的最低大气区域的主要数量的高度分布。高度探测覆盖最低大气约0.5公里,并伴随着同时基于地面测量。这种间隔观测方法使我们可以分析大气边界层(ABL)的电量的空间和时间变化比以前更深入。使用连续的气球升级和下降以及在一定高度处保持平台,发现了长寿命的空间电荷层,估计了各种厚度的大气柱中的电荷变化率。测定小离子的电荷密度封闭在-20pcm(-3)至30pc m(-3)的范围内,达到最高值,在地球表面上直接罕见。发现电场垂直型材倾向于在100米下方最明显的日期下降。氡和气溶胶颗粒浓度谱还证明了类似的行为。基于在公平天气条件下的探测结果,柱状电阻,电位和在ABL中作用的电动势。这些估计显示ABL到GEC的重大贡献,在考虑它时必须考虑到。

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