已出版的描述水蒸气连续吸收的科学图表系统化:III--2001-2020 年的出版物

IF 0.9 Q4 OPTICS
N. A. Lavrentiev, O. B. Rodimova, A. Z. Fazliev
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引用次数: 0

摘要

摘要--介绍了 2011-2020 年出版的有关水蒸气及其混合物连续吸收的图文资料。摘要表格介绍了不同光谱区间的吸收系数和透射函数的主要参数、吸收系数的温度依赖性以及水二聚体形成反应的平衡常数。此外,还指出了这一时期已出版著作中对连续吸收研究的特点。简明扼要地介绍了对引用图表质量的评估结果,并通过四个定性和定量属性对其进行了描述。介绍了三种引用程序,其中两种是计算机化的。介绍了估算引用图和被引用图之间差异的方法,以及对 "引用图和被引用图 "进行差异定量评估的实例。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Systematization of Published Scientific Graphics Characterizing the Water Vapor Continuum Absorption: III–Publications of 2001–2020

Systematization of Published Scientific Graphics Characterizing the Water Vapor Continuum Absorption: III–Publications of 2001–2020

Systematization of Published Scientific Graphics Characterizing the Water Vapor Continuum Absorption: III–Publications of 2001–2020

Graphical resources on the continuum absorption of water vapor and its mixtures published in 2011–2020 are described. Summary tables are presented that characterize the main parameters of the absorption coefficients and transmission functions in different spectral intervals, the temperature dependence of the absorption coefficient, and the equilibrium constant of the water dimer formation reaction. The features of the study of the continuum absorption in published works in this time interval are noted. In a concise form, the results of the assessment of the quality of the cited graphs are presented, which are described by four qualitative and quantitative attributes. Three citation procedures are characterized, two of which are computerized. A method for estimating the difference between the citing and cited plots and examples of pairs “citing and cited plots” with a quantitative assessment of the difference are presented.

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来源期刊
CiteScore
2.40
自引率
42.90%
发文量
84
期刊介绍: Atmospheric and Oceanic Optics  is an international peer reviewed journal that presents experimental and theoretical articles relevant to a wide range of problems of atmospheric and oceanic optics, ecology, and climate. The journal coverage includes: scattering and transfer of optical waves, spectroscopy of atmospheric gases, turbulent and nonlinear optical phenomena, adaptive optics, remote (ground-based, airborne, and spaceborne) sensing of the atmosphere and the surface, methods for solving of inverse problems, new equipment for optical investigations, development of computer programs and databases for optical studies. Thematic issues are devoted to the studies of atmospheric ozone, adaptive, nonlinear, and coherent optics, regional climate and environmental monitoring, and other subjects.
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