Development Of Multi Duty Cycle Sequential Gated Pulse Frequency Generator For Resonant Electrolysis
For the sustainable future, the potential energy source, transforming method, energy cost per efficiency are inter-related and the development of the future energy plant is a long term research which involve validation of theory, prototyping and etc. No doubt that hydrogen fuel is one of the potenti...
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my.ump.umpir.15592018-01-16T06:00:56Z http://umpir.ump.edu.my/id/eprint/1559/ Development Of Multi Duty Cycle Sequential Gated Pulse Frequency Generator For Resonant Electrolysis Gan, Leong Ming R. A., Bakar TJ Mechanical engineering and machinery For the sustainable future, the potential energy source, transforming method, energy cost per efficiency are inter-related and the development of the future energy plant is a long term research which involve validation of theory, prototyping and etc. No doubt that hydrogen fuel is one of the potential energy carry but the harvesting of hydrogen from water is constraint by the Faraday’s law of electrolysis where the efficiency is restricted. Researched found that harvesting hydrogen fuel based on frequency method could achieve higher efficiency than the conventional method. Therefore, a specific frequency generator is proposed to study the effect of various frequency design and voltage input to the hydrogen fracturing process. The designed model is equipped with the pulse, gated pulse and sequential gated pulse features to enhance and optimize the fracturing rate. The detail design and development of the frequency generator is also discussed in the following section. 2010 Conference or Workshop Item PeerReviewed application/pdf en http://umpir.ump.edu.my/id/eprint/1559/1/48_NCMER_012.pdf Gan, Leong Ming and R. A., Bakar (2010) Development Of Multi Duty Cycle Sequential Gated Pulse Frequency Generator For Resonant Electrolysis. In: National Conference in Mechanical Engineering Research and Postgraduate Students (1st NCMER 2010), 26-27 May 2010 , FKM Conference Hall, UMP, Kuantan, Pahang, Malaysia. . |
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TJ Mechanical engineering and machinery Gan, Leong Ming R. A., Bakar Development Of Multi Duty Cycle Sequential Gated Pulse Frequency Generator For Resonant Electrolysis |
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For the sustainable future, the potential energy source, transforming method, energy cost per efficiency are inter-related and the development of the future energy plant is a long term research which involve validation of theory, prototyping and etc. No doubt that hydrogen fuel is one of the potential energy carry but the harvesting of hydrogen
from water is constraint by the Faraday’s law of electrolysis where the efficiency is restricted. Researched found that harvesting hydrogen fuel based on frequency method could achieve higher efficiency than the conventional method. Therefore, a specific frequency generator is proposed to study the effect of various frequency design and voltage input to the hydrogen fracturing process. The designed model is equipped with the pulse, gated pulse and sequential gated pulse features to enhance and optimize the fracturing rate. The detail design and development of the frequency generator is also discussed in the following section. |
format |
Conference or Workshop Item |
author |
Gan, Leong Ming R. A., Bakar |
author_facet |
Gan, Leong Ming R. A., Bakar |
author_sort |
Gan, Leong Ming |
title |
Development Of Multi Duty Cycle Sequential Gated Pulse Frequency Generator For Resonant Electrolysis
|
title_short |
Development Of Multi Duty Cycle Sequential Gated Pulse Frequency Generator For Resonant Electrolysis
|
title_full |
Development Of Multi Duty Cycle Sequential Gated Pulse Frequency Generator For Resonant Electrolysis
|
title_fullStr |
Development Of Multi Duty Cycle Sequential Gated Pulse Frequency Generator For Resonant Electrolysis
|
title_full_unstemmed |
Development Of Multi Duty Cycle Sequential Gated Pulse Frequency Generator For Resonant Electrolysis
|
title_sort |
development of multi duty cycle sequential gated pulse frequency generator for resonant electrolysis |
publishDate |
2010 |
url |
http://umpir.ump.edu.my/id/eprint/1559/1/48_NCMER_012.pdf http://umpir.ump.edu.my/id/eprint/1559/ |
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1643664432024256512 |
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13.211869 |