Numerical Analysis of Fluid Flow and Heat Transfer for Cloud Server Rack

碩士 === 國立臺灣海洋大學 === 輪機工程系 === 101 === According to the rapid development of network devices, the concept of the cloud is an important issue for many companies. Through the network sharing to compensate for general physical hard disk capacity constraints, many companies began to establish cloud equi...

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Main Authors: Lun-Kang Yuan, 袁倫康
Other Authors: Shun-Feng Tsai
Format: Others
Language:zh-TW
Published: 2013
Online Access:http://ndltd.ncl.edu.tw/handle/14529286961254601939
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spelling ndltd-TW-101NTOU54840232015-10-13T22:51:58Z http://ndltd.ncl.edu.tw/handle/14529286961254601939 Numerical Analysis of Fluid Flow and Heat Transfer for Cloud Server Rack 雲端伺服器機櫃流場與熱傳分析 Lun-Kang Yuan 袁倫康 碩士 國立臺灣海洋大學 輪機工程系 101 According to the rapid development of network devices, the concept of the cloud is an important issue for many companies. Through the network sharing to compensate for general physical hard disk capacity constraints, many companies began to establish cloud equipment. The purposes of this study accord to the needs of customers to design an all in one standard 20-foot container-type cloud devices. This thesis introduces the definition, benefits, trends, and the arrangement of the cloud system which can be broadly divided into structural, thermal, fire, electricity, monitoring and other system elements. Using the computational fluid dynamics software, ANSYS Fluent, simulate the authentic project analysis. Because the server inside the cabinet air-conditioning system, power supply unit and other sources of heat generated, the main purpose is analysis the thermal system to achieve the stable operation of the cabinet requirements. The computational domain adopt the structural orthogonal grid and analyze the flow field inside the server racks. Considering the server heat reject to the space of cabinet , verify that the selection and placement of the cooling system is sufficient to resolve so the device can emit heat. Shun-Feng Tsai 蔡順峯 2013 學位論文 ; thesis 38 zh-TW
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language zh-TW
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description 碩士 === 國立臺灣海洋大學 === 輪機工程系 === 101 === According to the rapid development of network devices, the concept of the cloud is an important issue for many companies. Through the network sharing to compensate for general physical hard disk capacity constraints, many companies began to establish cloud equipment. The purposes of this study accord to the needs of customers to design an all in one standard 20-foot container-type cloud devices. This thesis introduces the definition, benefits, trends, and the arrangement of the cloud system which can be broadly divided into structural, thermal, fire, electricity, monitoring and other system elements. Using the computational fluid dynamics software, ANSYS Fluent, simulate the authentic project analysis. Because the server inside the cabinet air-conditioning system, power supply unit and other sources of heat generated, the main purpose is analysis the thermal system to achieve the stable operation of the cabinet requirements. The computational domain adopt the structural orthogonal grid and analyze the flow field inside the server racks. Considering the server heat reject to the space of cabinet , verify that the selection and placement of the cooling system is sufficient to resolve so the device can emit heat.
author2 Shun-Feng Tsai
author_facet Shun-Feng Tsai
Lun-Kang Yuan
袁倫康
author Lun-Kang Yuan
袁倫康
spellingShingle Lun-Kang Yuan
袁倫康
Numerical Analysis of Fluid Flow and Heat Transfer for Cloud Server Rack
author_sort Lun-Kang Yuan
title Numerical Analysis of Fluid Flow and Heat Transfer for Cloud Server Rack
title_short Numerical Analysis of Fluid Flow and Heat Transfer for Cloud Server Rack
title_full Numerical Analysis of Fluid Flow and Heat Transfer for Cloud Server Rack
title_fullStr Numerical Analysis of Fluid Flow and Heat Transfer for Cloud Server Rack
title_full_unstemmed Numerical Analysis of Fluid Flow and Heat Transfer for Cloud Server Rack
title_sort numerical analysis of fluid flow and heat transfer for cloud server rack
publishDate 2013
url http://ndltd.ncl.edu.tw/handle/14529286961254601939
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