Title of article
Infrared characteristic radiation of water condensation and freezing in connection with atmospheric phenomena; Part 3: Experimental data
Author/Authors
Tatartchenko، نويسنده , , V. and Liu، نويسنده , , Yifan and Chen، نويسنده , , Wenyuan and Smirnov، نويسنده , , P.، نويسنده ,
Issue Information
روزنامه با شماره پیاپی سال 2012
Pages
6
From page
218
To page
223
Abstract
This paper is the third one from the series of papers with the same titles published in this journal. The papers consider the infrared characteristic radiation (IRCR) during the first order phase transitions of water: crystallization, water vapor condensation, and water vapor deposition. Experimental results are analyzed in terms of their correspondence to the theoretical model. This model is based on the assertion that the particleʹs (atom, molecule, or cluster) transition from the higher energetic level in a metastable phase (vapor or liquid) to a lower level in a stable phase (liquid or crystal) produces an emission of one or more photons. The energy of these photons depends on the latent energy of the phase transition and the character of bonds formed by the particle in the new phase. For all investigated substances, this energy falls in the infrared range. Recorded in the atmosphere, numerous sources of the infrared radiation seem to be a result of crystallization, condensation and deposition of water during fog and cloud formation. The effect under investigation must play a very important role in atmospheric phenomena: it is one of the sources of Earthʹs cooling; formation of hailstorm clouds is accompanied by intensive IRCR that could be detected for process characterization and meteorological warnings. IRCR seems to be used for atmospheric energy accumulation and together with the wind, falling water, solar and geothermal energies makes available the fifth source of ecologically pure energy.
Keywords
First order phase transitions of water , Condensation , crystallization , Vapor deposition , Infrared radiation , Atmospheric phenomena
Journal title
EARTH-SCIENCE REVIEWS
Serial Year
2012
Journal title
EARTH-SCIENCE REVIEWS
Record number
2334744
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