An experimental investigation on the effects of surface gravity waves on the water evaporation rate in different air flow regimes
نویسنده:
, , , , ,سال
: 2013
چکیده: Estimating rate of evaporation from undisturbed water surfaces to moving and quiet air has been the topic a vast number of research activities. The obvious presence of various shapes of gravity waves on the water body surfaces was the motivation of this experimental investigation. In this investigation experimental measurements have been done to quantify evaporation rate from wavy water surfaces in free, mixed and forced convection regimes. The effects of a wide range of surface gravity waves from low steepness, round shaped crest with slow celerity, to steep and very slight spilling crest waves, on the water evaporation rate have been investigated. A wide range of Gr/Re2(0.01≤Gr/Re2≤100) was achieved by applying different air flow velocities on a large heated wave flume equipped with a wind tunnel. Results reveal that wave motion on the water surface increase the rate of evaporation for all air flow regimes. For free convection, due to the effect of wave motion for pumping rotational airflows at the wave troughs and the dominant effect of natural convection for the air flow advection, the maximum evaporation increment percentage from wavy water surface is about 70 %. For mixed and forced convection, water evaporation rate increment is more sensitive to the air flow velocity for the appearance of very slight spilling on the steep wave crests and the leeward air flow structures
کلیدواژه(گان): evaporation
کالکشن
:
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آمار بازدید
An experimental investigation on the effects of surface gravity waves on the water evaporation rate in different air flow regimes
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contributor author | امین جودت | en |
contributor author | محمد مقیمان | en |
contributor author | گلشاد شیرخانی | en |
contributor author | amin jodat | fa |
contributor author | Mohammad Moghiman | fa |
contributor author | Golshad Shirkhani | fa |
date accessioned | 2020-06-06T13:14:39Z | |
date available | 2020-06-06T13:14:39Z | |
date issued | 2013 | |
identifier uri | https://libsearch.um.ac.ir:443/fum/handle/fum/3347342 | |
description abstract | Estimating rate of evaporation from undisturbed water surfaces to moving and quiet air has been the topic a vast number of research activities. The obvious presence of various shapes of gravity waves on the water body surfaces was the motivation of this experimental investigation. In this investigation experimental measurements have been done to quantify evaporation rate from wavy water surfaces in free, mixed and forced convection regimes. The effects of a wide range of surface gravity waves from low steepness, round shaped crest with slow celerity, to steep and very slight spilling crest waves, on the water evaporation rate have been investigated. A wide range of Gr/Re2(0.01≤Gr/Re2≤100) was achieved by applying different air flow velocities on a large heated wave flume equipped with a wind tunnel. Results reveal that wave motion on the water surface increase the rate of evaporation for all air flow regimes. For free convection, due to the effect of wave motion for pumping rotational airflows at the wave troughs and the dominant effect of natural convection for the air flow advection, the maximum evaporation increment percentage from wavy water surface is about 70 %. For mixed and forced convection, water evaporation rate increment is more sensitive to the air flow velocity for the appearance of very slight spilling on the steep wave crests and the leeward air flow structures | en |
language | English | |
title | An experimental investigation on the effects of surface gravity waves on the water evaporation rate in different air flow regimes | en |
type | Journal Paper | |
contenttype | External Fulltext | |
subject keywords | evaporation | en |
journal title | Heat and Mass Transfer | fa |
pages | 1823-1830 | |
journal volume | 49 | |
journal issue | 12 | |
identifier link | https://profdoc.um.ac.ir/paper-abstract-1036739.html | |
identifier articleid | 1036739 |