固定支架對潛體流場實驗影響之數值模擬研究

碩士 === 國防大學中正理工學院 === 造船工程研究所 === 94 === About most of the model experiments of underwater submerged body, struts are usually used to fix the experimental model in the water tunnel experiment. However, the flow field during the experiment will be interfered by the strut or device of erecting in the...

Full description

Bibliographic Details
Main Authors: Tsai Tsung Chih, 蔡宗志
Other Authors: 劉宗龍
Format: Others
Language:zh-TW
Published: 2006
Online Access:http://ndltd.ncl.edu.tw/handle/08838608619807551982
id ndltd-TW-094CCIT0345005
record_format oai_dc
spelling ndltd-TW-094CCIT03450052015-10-13T10:34:48Z http://ndltd.ncl.edu.tw/handle/08838608619807551982 固定支架對潛體流場實驗影響之數值模擬研究 Tsai Tsung Chih 蔡宗志 碩士 國防大學中正理工學院 造船工程研究所 94 About most of the model experiments of underwater submerged body, struts are usually used to fix the experimental model in the water tunnel experiment. However, the flow field during the experiment will be interfered by the strut or device of erecting in the water tunnel. Although, so far using the theoretically method or correction factor could be employed to improve the above situation, the experimental results still remained some indefinable errors due to the interference. In this paper, a numerical tank with the similar conditions as the water tunnel of experiment would be built. It will be applied as a numerical tool to reveal the flow field around the submerged bodies, and analyze the disturbance flow field arised by the strut which was used to support them. Then in accordance with the results obtained by the numerical simulation, the interference by the strut could be estimated. In the paper, the research will focus on a streamlined torpedo model and the artificial-reefs, which could be applied to study the interference arised by the strut fixed on the submerged body. The finite volume method with a well-valid k−ε model and the volume of fluid method would be employed to fulfill the flow simulation with the free surface effect for a underwater submerged body. The numerical simulation would include six different cases, which would perform the flow computation for the submerged bodies with or without the struts. The numerical results could be used to analyze the extent of the strut which could interfer flow field. Furthermore, the result of numerical simulation could be employed to provide an important information for experimental design for the model experiment to reduce the error raised by the existence of body-supporting struts. 劉宗龍 2006 學位論文 ; thesis 71 zh-TW
collection NDLTD
language zh-TW
format Others
sources NDLTD
description 碩士 === 國防大學中正理工學院 === 造船工程研究所 === 94 === About most of the model experiments of underwater submerged body, struts are usually used to fix the experimental model in the water tunnel experiment. However, the flow field during the experiment will be interfered by the strut or device of erecting in the water tunnel. Although, so far using the theoretically method or correction factor could be employed to improve the above situation, the experimental results still remained some indefinable errors due to the interference. In this paper, a numerical tank with the similar conditions as the water tunnel of experiment would be built. It will be applied as a numerical tool to reveal the flow field around the submerged bodies, and analyze the disturbance flow field arised by the strut which was used to support them. Then in accordance with the results obtained by the numerical simulation, the interference by the strut could be estimated. In the paper, the research will focus on a streamlined torpedo model and the artificial-reefs, which could be applied to study the interference arised by the strut fixed on the submerged body. The finite volume method with a well-valid k−ε model and the volume of fluid method would be employed to fulfill the flow simulation with the free surface effect for a underwater submerged body. The numerical simulation would include six different cases, which would perform the flow computation for the submerged bodies with or without the struts. The numerical results could be used to analyze the extent of the strut which could interfer flow field. Furthermore, the result of numerical simulation could be employed to provide an important information for experimental design for the model experiment to reduce the error raised by the existence of body-supporting struts.
author2 劉宗龍
author_facet 劉宗龍
Tsai Tsung Chih
蔡宗志
author Tsai Tsung Chih
蔡宗志
spellingShingle Tsai Tsung Chih
蔡宗志
固定支架對潛體流場實驗影響之數值模擬研究
author_sort Tsai Tsung Chih
title 固定支架對潛體流場實驗影響之數值模擬研究
title_short 固定支架對潛體流場實驗影響之數值模擬研究
title_full 固定支架對潛體流場實驗影響之數值模擬研究
title_fullStr 固定支架對潛體流場實驗影響之數值模擬研究
title_full_unstemmed 固定支架對潛體流場實驗影響之數值模擬研究
title_sort 固定支架對潛體流場實驗影響之數值模擬研究
publishDate 2006
url http://ndltd.ncl.edu.tw/handle/08838608619807551982
work_keys_str_mv AT tsaitsungchih gùdìngzhījiàduìqiántǐliúchǎngshíyànyǐngxiǎngzhīshùzhímónǐyánjiū
AT càizōngzhì gùdìngzhījiàduìqiántǐliúchǎngshíyànyǐngxiǎngzhīshùzhímónǐyánjiū
_version_ 1716830559370477568