Radiation and Heat Transfer Researchfor The Interior of Vacuum Chamber

碩士 === 國立臺北科技大學 === 能源與冷凍空調工程系碩士班 === 97 === Because the thermal radiation vacuum freezing-drying method compares in the partial freezing and it has the advantage of fast merit; when collecting and reading related information, and some literature discusses to be the desired dry material by milk, and...

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Main Authors: Jia-Qi Chen, 陳嘉齊
Other Authors: Hong-Ping Cheng
Format: Others
Language:zh-TW
Published: 2009
Online Access:http://ndltd.ncl.edu.tw/handle/s8685s
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spelling ndltd-TW-097TIT057030562019-08-31T03:47:08Z http://ndltd.ncl.edu.tw/handle/s8685s Radiation and Heat Transfer Researchfor The Interior of Vacuum Chamber 真空腔體內部的輻射及熱傳研究 Jia-Qi Chen 陳嘉齊 碩士 國立臺北科技大學 能源與冷凍空調工程系碩士班 97 Because the thermal radiation vacuum freezing-drying method compares in the partial freezing and it has the advantage of fast merit; when collecting and reading related information, and some literature discusses to be the desired dry material by milk, and perform vacuum freeze-drying. Therefore the present paper depends on the literature to carry on vacuum chamber model of the experiment, and performs numerical simulation by CFD software, and observes heat transfer phenomenon of the internal vacuum chamber. By the simulation of different conditions, and making the following several conclusions: 1.knowing by the results, the heater and vial flask contacted area conduction to the sample base; But its contacted area''s size is really small regarding the sample base temperature''s influence. 2.In literature milk sample temperature distribution, only case 2.2 and case3.2 has its tendency. 3.Freeze milk sublimation latent heat for - 12542.5W/m3 4.The result and the literature data''s error, its possible reason for the actual freezing and drying process, because the mealy structure which the freeze milk will form dry to reduce the heat conduction. , but the analogue result its sample temperature may maintain at 63~64℃. Hong-Ping Cheng 鄭鴻斌 2009 學位論文 ; thesis 51 zh-TW
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description 碩士 === 國立臺北科技大學 === 能源與冷凍空調工程系碩士班 === 97 === Because the thermal radiation vacuum freezing-drying method compares in the partial freezing and it has the advantage of fast merit; when collecting and reading related information, and some literature discusses to be the desired dry material by milk, and perform vacuum freeze-drying. Therefore the present paper depends on the literature to carry on vacuum chamber model of the experiment, and performs numerical simulation by CFD software, and observes heat transfer phenomenon of the internal vacuum chamber. By the simulation of different conditions, and making the following several conclusions: 1.knowing by the results, the heater and vial flask contacted area conduction to the sample base; But its contacted area''s size is really small regarding the sample base temperature''s influence. 2.In literature milk sample temperature distribution, only case 2.2 and case3.2 has its tendency. 3.Freeze milk sublimation latent heat for - 12542.5W/m3 4.The result and the literature data''s error, its possible reason for the actual freezing and drying process, because the mealy structure which the freeze milk will form dry to reduce the heat conduction. , but the analogue result its sample temperature may maintain at 63~64℃.
author2 Hong-Ping Cheng
author_facet Hong-Ping Cheng
Jia-Qi Chen
陳嘉齊
author Jia-Qi Chen
陳嘉齊
spellingShingle Jia-Qi Chen
陳嘉齊
Radiation and Heat Transfer Researchfor The Interior of Vacuum Chamber
author_sort Jia-Qi Chen
title Radiation and Heat Transfer Researchfor The Interior of Vacuum Chamber
title_short Radiation and Heat Transfer Researchfor The Interior of Vacuum Chamber
title_full Radiation and Heat Transfer Researchfor The Interior of Vacuum Chamber
title_fullStr Radiation and Heat Transfer Researchfor The Interior of Vacuum Chamber
title_full_unstemmed Radiation and Heat Transfer Researchfor The Interior of Vacuum Chamber
title_sort radiation and heat transfer researchfor the interior of vacuum chamber
publishDate 2009
url http://ndltd.ncl.edu.tw/handle/s8685s
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