The application of emulsifying head analysis by Solidworks Flow Simulation to improving flow field
碩士 === 國立臺北科技大學 === 製造科技研究所 === 105 === In the study, we set the emulsifying head of the emulsion machine as the research object. Firstly, we draw the model of the emulsifying head with Solidworks, and then apply the Solidworks Simulation package to run this flow field simulation. Then, we can get t...
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ndltd-TW-105TIT056210162019-05-15T23:53:22Z http://ndltd.ncl.edu.tw/handle/p9qqe8 The application of emulsifying head analysis by Solidworks Flow Simulation to improving flow field 應用SolidWorks Flow Simulation改良乳化頭之流場研究 Kuan-Yu Chen 陳冠宇 碩士 國立臺北科技大學 製造科技研究所 105 In the study, we set the emulsifying head of the emulsion machine as the research object. Firstly, we draw the model of the emulsifying head with Solidworks, and then apply the Solidworks Simulation package to run this flow field simulation. Then, we can get the results in the simulation. After getting the simulation results, we can use the hydrodynamic method to change the geometry of the model. After getting another result, we can compare the differences between the three models to find the best result. The specialties of this study is that we use the perspective of turbulent energy and turbulent dissipation. To confirm the results whether we expected the flow of the situation. And in the case of flux unchanged,we get geometric results of the better flow form. In the future, we can produce the better emulsifying head if we get better results. Then, we can enhance the competitiveness and commercial value of this product. Chin-Shu Wang 王金樹 2017 學位論文 ; thesis 83 zh-TW |
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碩士 === 國立臺北科技大學 === 製造科技研究所 === 105 === In the study, we set the emulsifying head of the emulsion machine as the research object. Firstly, we draw the model of the emulsifying head with Solidworks, and then apply the Solidworks Simulation package to run this flow field simulation. Then, we can get the results in the simulation. After getting the simulation results, we can use the hydrodynamic method to change the geometry of the model. After getting another result, we can compare the differences between the three models to find the best result.
The specialties of this study is that we use the perspective of turbulent energy and turbulent dissipation. To confirm the results whether we expected the flow of the situation. And in the case of flux unchanged,we get geometric results of the better flow form. In the future, we can produce the better emulsifying head if we get better results. Then, we can enhance the competitiveness and commercial value of this product.
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author2 |
Chin-Shu Wang |
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Chin-Shu Wang Kuan-Yu Chen 陳冠宇 |
author |
Kuan-Yu Chen 陳冠宇 |
spellingShingle |
Kuan-Yu Chen 陳冠宇 The application of emulsifying head analysis by Solidworks Flow Simulation to improving flow field |
author_sort |
Kuan-Yu Chen |
title |
The application of emulsifying head analysis by Solidworks Flow Simulation to improving flow field |
title_short |
The application of emulsifying head analysis by Solidworks Flow Simulation to improving flow field |
title_full |
The application of emulsifying head analysis by Solidworks Flow Simulation to improving flow field |
title_fullStr |
The application of emulsifying head analysis by Solidworks Flow Simulation to improving flow field |
title_full_unstemmed |
The application of emulsifying head analysis by Solidworks Flow Simulation to improving flow field |
title_sort |
application of emulsifying head analysis by solidworks flow simulation to improving flow field |
publishDate |
2017 |
url |
http://ndltd.ncl.edu.tw/handle/p9qqe8 |
work_keys_str_mv |
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