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戈壁地区折射率结构常数高度分布的统计特性 被引量:2

Statistical characteristics of vertical profile of refractive index structure parameter in gobi area
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摘要 通过以系留气球和探空气球为平台的方式,搭载温度脉动仪在戈壁地区对大气折射率结构常数开展长期测量。对获取的实验数据开展统计分析,探讨了在白天与夜间折射率结构常数的平均情况、高度分布、偏度与峰度、季节的强弱特性等四个方面的内容,结果表明:在测量地区,随高度分布的大气折射率结构常数在白天和夜间的算术平均值和对数平均值的比值会有较大的差异,并且白天和夜间的对数平均值和标准差系数随高度分布各有其特点,表现在随高度整体减小的同时会有起伏出现,尤其是夜间;白天和夜间的偏度与峰度主要表现出右偏和尖峰特性,在高度分布上有所不同;季节变化对湍流的强弱分布产生明显影响,集中体现在中性湍流和弱湍流分布情况随高度发生交互变化。 Using the platforms of captive balloon and sounding balloon equipped with micro-temperature sensors,atmospheric refractive index structure parameter(C2n)had been measured in arid area for a long time.A statistical analysis based on experimental data of atmospheric refractive index structure parameter was carried out about the average C2 nin daytime and nighttime,distribution of standard deviation on height,skewness and kurtosis,as well as the strength characteristics of seasonal variation.The obtained results show that there is a great difference on the ratio of arithmetic mean and logarithmic mean between day and night,the logarithmic mean value and standard deviation coefficient of C2 nin daytime and nighttime generally decrease with height while they fluctuate at the same height,especially in nighttime;the difference of the right skewed and leptokurtic characteristics between day and night were indicated for different heights;seasonal changes have significant impact on the strength of turbulence distribution,as for the median turbulence and weak turbulence distribution change interactively at different height.
出处 《强激光与粒子束》 EI CAS CSCD 北大核心 2016年第2期13-18,共6页 High Power Laser and Particle Beams
基金 国家自然科学基金项目(41475001) 中国科学院知识创新方向性项目(KJCX2-EW-N07)
关键词 折射率结构常数 温度脉动仪 偏度 峰度 refractive index structure parameter micro-thermal meter skewness kurtosis
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  • 1翁宁泉,曾宗泳,肖黎明,龚知本.大气光学湍流测量中平均时间和原始数据的筛选[J].强激光与粒子束,2004,16(9):1101-1105. 被引量:9
  • 2孙刚,翁宁泉,肖黎明,马成胜.不同地区大气折射率结构常数分布特性及分析[J].强激光与粒子束,2005,17(4):485-490. 被引量:19
  • 3[2]Fried D L.Optical resolution through a randomly inhomogeneous medium[J].J.Opt.Soc.Am.,1966,56:1372-1379. 被引量:1
  • 4[6]Beland Robert R.Propagation through atmospheric optical turbulence[C].Fredercick G.Smith IR/E-O System Handbook[M].SPIE,Bellingham,USA,Optical Engineering Press,1993. 被引量:1
  • 5[7]Fante R L.Electromagnetic Beam Propagation in Turbulence Media[J].IEEE,1980,68(11):1424. 被引量:1
  • 6[2]Robert R,Beland.Propagation through atmospheric optical turbulence[C].SPIE,Optical Engineering Press,1993. 被引量:1
  • 7[3]Barletti R,Cepatelli G.Mean verical profile of atmospheric turbulence relevant for astronomical seeing[J].J.Opt.Soc.Am.,1976,66(12):127-128. 被引量:1
  • 8Beland R R. Propagation through Atmospheric Optical Turbulence, IE/E-O System Handbook [M]. Vol.2. Smith F G, Editor, SPIE Optical Engineering Press, 1993. 被引量:1
  • 9Baxletti R, Cepatelli G, Patern5 L, eta/. Mean verical profile of atmospheric turbulence relevant for astronomical seeing [J]. J. Opt. Soc. Am., 1976, 66(12): 127-128:. 被引量:1
  • 10Barletti R,Ceppatelli R.Balloon-borne radiosonde for the measurement of the atmospheric thermal structure coefficient[J].Rev Sci Instrsum,1974,45(12):1 563-1 565. 被引量:1

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