Theoretical assessment of evaporation rate of isolated water drop under the conditions of cooling tower of thermal power plant

গ্রন্থ-পঞ্জীর বিবরন
Parent link:MATEC Web of Conferences
Vol. 141 : Smart Grids 2017.— 2017.— [01015, 5 p.]
প্রধান লেখক: Shevelev S. A. Sergey Anatolievich
সংস্থা লেখক: Национальный исследовательский Томский политехнический университет (ТПУ) Энергетический институт (ЭНИН) Кафедра атомных и тепловых электростанций (АТЭС)
সংক্ষিপ্ত:Title screen
The purpose of the work is numerical modelling of heat and mass transfer at evaporation of water drops under the conditions which are typical for a modern chimney-type cooling tower of a thermal power plant. The dual task of heat and mass transfer with movable boundary at convective cooling and evaporation for a 'drop-humid air' system in a spherical coordinate system has been solved. It has been shown that there is a rapid decline of water evaporation rate at the initial stage of the process according to temperature decrease of its surface. It has been stated that the effect of evaporation rate decrease appears greatly in the area of small radiuses.
ভাষা:ইংরেজি
প্রকাশিত: 2017
বিষয়গুলি:
অনলাইন ব্যবহার করুন:https://doi.org/10.1051/matecconf/201714101015
http://earchive.tpu.ru/handle/11683/46004
বিন্যাস: বৈদ্যুতিক গ্রন্থের অধ্যায়
KOHA link:https://koha.lib.tpu.ru/cgi-bin/koha/opac-detail.pl?biblionumber=657263

MARC

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330 |a The purpose of the work is numerical modelling of heat and mass transfer at evaporation of water drops under the conditions which are typical for a modern chimney-type cooling tower of a thermal power plant. The dual task of heat and mass transfer with movable boundary at convective cooling and evaporation for a 'drop-humid air' system in a spherical coordinate system has been solved. It has been shown that there is a rapid decline of water evaporation rate at the initial stage of the process according to temperature decrease of its surface. It has been stated that the effect of evaporation rate decrease appears greatly in the area of small radiuses. 
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