Numerical simulation of steam submerged jet and condensation

<b>[Objectives]</b> During the discharging of ship-used steam power,steam jet condensation was a common physical process. In order to fully grasp the fundamental physical phenomena within steam submerged jet and condensation under open space,CFD simulation with Mixture multiphase model w...

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Main Authors: Wang Guanghuai, Sun Lu, Wang Chang, Hao Rui, Wang Jianjun
Format: Article
Language:English
Published: Editorial Office of Chinese Journal of Ship Research 2019-08-01
Series:Zhongguo Jianchuan Yanjiu
Subjects:
Online Access:http://www.ship-research.com/EN/Y2019/V14/I4/135
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author Wang Guanghuai
Sun Lu
Wang Chang
Hao Rui
Wang Jianjun
author_facet Wang Guanghuai
Sun Lu
Wang Chang
Hao Rui
Wang Jianjun
author_sort Wang Guanghuai
collection DOAJ
description <b>[Objectives]</b> During the discharging of ship-used steam power,steam jet condensation was a common physical process. In order to fully grasp the fundamental physical phenomena within steam submerged jet and condensation under open space,CFD simulation with Mixture multiphase model was carried out.<b>[Methods]</b> With the experimental results,heat transfer model was modified. Vapor volume fraction 0.95 was regarded as the critical value to measure the length of plume. Spatial distribution of plume,velocity,temperature and pressure fields for steam submerged jet and condensation under different inlet pressure and condensed water temperature conditions were studied.<b>[Results]</b> Simulation results show that different initial state would affect the plume shapes. Within stable steam submerged jet and condensation,a relatively lower temperature area is appeared in the core of plume. Pressure distribution along the axial direction is present in a fluctuating form,verifies the existence of the expand-compress wave inside the plume,amplitude and spatial wavelength of the pressure fluctuation are increased with increasing inlet pressure.<b>[Conclusions]</b> Study in this paper could provide guidance for the optimal design of steam submerged jet and condensation.
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spelling doaj.art-23b7cb8fa129482b93e5a5f5a9f991c72022-12-21T23:32:51ZengEditorial Office of Chinese Journal of Ship ResearchZhongguo Jianchuan Yanjiu1673-31851673-31852019-08-0114413514210.19693/j.issn.1673-3185.01296201904019Numerical simulation of steam submerged jet and condensationWang Guanghuai0Sun Lu1Wang Chang2Hao Rui3Wang Jianjun4China Ship Development and Design Center, Wuhan 430064, ChinaChina Ship Development and Design Center, Wuhan 430064, ChinaChina Ship Development and Design Center, Wuhan 430064, ChinaChina Ship Development and Design Center, Wuhan 430064, ChinaCollege of Nuclear Science and Technology, Harbin Engineering University, Harbin 150001, China<b>[Objectives]</b> During the discharging of ship-used steam power,steam jet condensation was a common physical process. In order to fully grasp the fundamental physical phenomena within steam submerged jet and condensation under open space,CFD simulation with Mixture multiphase model was carried out.<b>[Methods]</b> With the experimental results,heat transfer model was modified. Vapor volume fraction 0.95 was regarded as the critical value to measure the length of plume. Spatial distribution of plume,velocity,temperature and pressure fields for steam submerged jet and condensation under different inlet pressure and condensed water temperature conditions were studied.<b>[Results]</b> Simulation results show that different initial state would affect the plume shapes. Within stable steam submerged jet and condensation,a relatively lower temperature area is appeared in the core of plume. Pressure distribution along the axial direction is present in a fluctuating form,verifies the existence of the expand-compress wave inside the plume,amplitude and spatial wavelength of the pressure fluctuation are increased with increasing inlet pressure.<b>[Conclusions]</b> Study in this paper could provide guidance for the optimal design of steam submerged jet and condensation.http://www.ship-research.com/EN/Y2019/V14/I4/135submerged jetsteam plumepressure shocknumerical simulation
spellingShingle Wang Guanghuai
Sun Lu
Wang Chang
Hao Rui
Wang Jianjun
Numerical simulation of steam submerged jet and condensation
Zhongguo Jianchuan Yanjiu
submerged jet
steam plume
pressure shock
numerical simulation
title Numerical simulation of steam submerged jet and condensation
title_full Numerical simulation of steam submerged jet and condensation
title_fullStr Numerical simulation of steam submerged jet and condensation
title_full_unstemmed Numerical simulation of steam submerged jet and condensation
title_short Numerical simulation of steam submerged jet and condensation
title_sort numerical simulation of steam submerged jet and condensation
topic submerged jet
steam plume
pressure shock
numerical simulation
url http://www.ship-research.com/EN/Y2019/V14/I4/135
work_keys_str_mv AT wangguanghuai numericalsimulationofsteamsubmergedjetandcondensation
AT sunlu numericalsimulationofsteamsubmergedjetandcondensation
AT wangchang numericalsimulationofsteamsubmergedjetandcondensation
AT haorui numericalsimulationofsteamsubmergedjetandcondensation
AT wangjianjun numericalsimulationofsteamsubmergedjetandcondensation