Improve Oil Coking for Turbocharged Engine by using Electric Water Pump
碩士 === 國立臺北科技大學 === 車輛工程系所 === 102 === Energy crisis and environmental protection have been the most important issues these days. Many countries had already set up relevant legislations to achieve the goal of zero-emission and to decrease the fuel consumption. However, there is still much improvemen...
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ndltd-TW-102TIT051620012019-05-15T21:14:18Z http://ndltd.ncl.edu.tw/handle/84bf82 Improve Oil Coking for Turbocharged Engine by using Electric Water Pump 應用電子水泵技術改善渦輪增壓引擎機油碳化問題 Tao-Ming Wang 王道明 碩士 國立臺北科技大學 車輛工程系所 102 Energy crisis and environmental protection have been the most important issues these days. Many countries had already set up relevant legislations to achieve the goal of zero-emission and to decrease the fuel consumption. However, there is still much improvement needed in terms of conventional combustion engine. The technology of turbocharger can improve the intake efficiency and the engine power, but it may cause the engine oil to degraded and insufficient the lubrication system by the high temperature above 250℃ when the engine stops. The purpose of this paper is to overcome the high temperature issues from turbocharger bearings when engine stops, by utilizing an additional smaller Electric Water Pump (EWP) in the cooling system, it only operates when the coolant is over heating or when the engine stops to prevent the oil from degrading. The system''s layout, operating time and duration are investigated in this paper to obtain optimal performance. The primarily experiment results show that the proposed layout and control strategy had effectively lowered the temperature from 225℃ to 112℃ relative to the conventional one. 蔡國隆 2014 學位論文 ; thesis 74 zh-TW |
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碩士 === 國立臺北科技大學 === 車輛工程系所 === 102 === Energy crisis and environmental protection have been the most important issues these days. Many countries had already set up relevant legislations to achieve the goal of zero-emission and to decrease the fuel consumption. However, there is still much improvement needed in terms of conventional combustion engine. The technology of turbocharger can improve the intake efficiency and the engine power, but it may cause the engine oil to degraded and insufficient the lubrication system by the high temperature above 250℃ when the engine stops.
The purpose of this paper is to overcome the high temperature issues from turbocharger bearings when engine stops, by utilizing an additional smaller Electric Water Pump (EWP) in the cooling system, it only operates when the coolant is over heating or when the engine stops to prevent the oil from degrading. The system''s layout, operating time and duration are investigated in this paper to obtain optimal performance. The primarily experiment results show that the proposed layout and control strategy had effectively lowered the temperature from 225℃ to 112℃ relative to the conventional one.
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蔡國隆 |
author_facet |
蔡國隆 Tao-Ming Wang 王道明 |
author |
Tao-Ming Wang 王道明 |
spellingShingle |
Tao-Ming Wang 王道明 Improve Oil Coking for Turbocharged Engine by using Electric Water Pump |
author_sort |
Tao-Ming Wang |
title |
Improve Oil Coking for Turbocharged Engine by using Electric Water Pump |
title_short |
Improve Oil Coking for Turbocharged Engine by using Electric Water Pump |
title_full |
Improve Oil Coking for Turbocharged Engine by using Electric Water Pump |
title_fullStr |
Improve Oil Coking for Turbocharged Engine by using Electric Water Pump |
title_full_unstemmed |
Improve Oil Coking for Turbocharged Engine by using Electric Water Pump |
title_sort |
improve oil coking for turbocharged engine by using electric water pump |
publishDate |
2014 |
url |
http://ndltd.ncl.edu.tw/handle/84bf82 |
work_keys_str_mv |
AT taomingwang improveoilcokingforturbochargedenginebyusingelectricwaterpump AT wángdàomíng improveoilcokingforturbochargedenginebyusingelectricwaterpump AT taomingwang yīngyòngdiànzishuǐbèngjìshùgǎishànwōlúnzēngyāyǐnqíngjīyóutànhuàwèntí AT wángdàomíng yīngyòngdiànzishuǐbèngjìshùgǎishànwōlúnzēngyāyǐnqíngjīyóutànhuàwèntí |
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