The Study on the Effect of Using B20 Corn Oil Methyl Ester with Different Injection Pressure on DI Diesel Engine Performance

碩士 === 國立臺北科技大學 === 車輛工程系所 === 95 === The specific gravity, cetane number, dynamic viscosity, and the oxgen content of biodiesel was higher than fossil premium diesel, especially in higher specific gravity and dynamic viscosity causing the injection timing advanced so that effects engine performance...

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Main Authors: Shi-Ming Huang, 黃世明
Other Authors: 林百福
Format: Others
Language:zh-TW
Published: 2007
Online Access:http://ndltd.ncl.edu.tw/handle/yd87y9
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spelling ndltd-TW-095TIT051620172019-06-27T05:10:12Z http://ndltd.ncl.edu.tw/handle/yd87y9 The Study on the Effect of Using B20 Corn Oil Methyl Ester with Different Injection Pressure on DI Diesel Engine Performance B20玉米油甲酯使用不同的燃料噴射壓力對直噴式柴油引擎性能之影響 Shi-Ming Huang 黃世明 碩士 國立臺北科技大學 車輛工程系所 95 The specific gravity, cetane number, dynamic viscosity, and the oxgen content of biodiesel was higher than fossil premium diesel, especially in higher specific gravity and dynamic viscosity causing the injection timing advanced so that effects engine performance and the concentration of exhaust emission. In this study the diesel engine injection pressure was investigated based on B20 corn oil methyl ester blended fuel. The experimental results of diesel engine performance demonstrated that BSFC, the concentration of Smoke and HC is respectively decreased about 3.77%, 10.74% and 13.56% based on lower injection pressure than original engine but the concentration of NOx is increased about 4.69%. On the other hand, BSFC, the concentration of Smoke and HC emission is increased about 0.95%, 16.70% and 23.10%, respectively. Moreover, the concentration of NOx is decreased about 9.99%. Therefore, using higher specific gravity and dynamic viscosity of biodiesel is able to decrease fuel injection pressure properly. 林百福 2007 學位論文 ; thesis 155 zh-TW
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language zh-TW
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sources NDLTD
description 碩士 === 國立臺北科技大學 === 車輛工程系所 === 95 === The specific gravity, cetane number, dynamic viscosity, and the oxgen content of biodiesel was higher than fossil premium diesel, especially in higher specific gravity and dynamic viscosity causing the injection timing advanced so that effects engine performance and the concentration of exhaust emission. In this study the diesel engine injection pressure was investigated based on B20 corn oil methyl ester blended fuel. The experimental results of diesel engine performance demonstrated that BSFC, the concentration of Smoke and HC is respectively decreased about 3.77%, 10.74% and 13.56% based on lower injection pressure than original engine but the concentration of NOx is increased about 4.69%. On the other hand, BSFC, the concentration of Smoke and HC emission is increased about 0.95%, 16.70% and 23.10%, respectively. Moreover, the concentration of NOx is decreased about 9.99%. Therefore, using higher specific gravity and dynamic viscosity of biodiesel is able to decrease fuel injection pressure properly.
author2 林百福
author_facet 林百福
Shi-Ming Huang
黃世明
author Shi-Ming Huang
黃世明
spellingShingle Shi-Ming Huang
黃世明
The Study on the Effect of Using B20 Corn Oil Methyl Ester with Different Injection Pressure on DI Diesel Engine Performance
author_sort Shi-Ming Huang
title The Study on the Effect of Using B20 Corn Oil Methyl Ester with Different Injection Pressure on DI Diesel Engine Performance
title_short The Study on the Effect of Using B20 Corn Oil Methyl Ester with Different Injection Pressure on DI Diesel Engine Performance
title_full The Study on the Effect of Using B20 Corn Oil Methyl Ester with Different Injection Pressure on DI Diesel Engine Performance
title_fullStr The Study on the Effect of Using B20 Corn Oil Methyl Ester with Different Injection Pressure on DI Diesel Engine Performance
title_full_unstemmed The Study on the Effect of Using B20 Corn Oil Methyl Ester with Different Injection Pressure on DI Diesel Engine Performance
title_sort study on the effect of using b20 corn oil methyl ester with different injection pressure on di diesel engine performance
publishDate 2007
url http://ndltd.ncl.edu.tw/handle/yd87y9
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