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    A Comparative Study of the Conventional Poppet Valve and the Proposed Novel Independent Rotary Valve Configurations for Improving Efficiency of the Internal Combustion Engine

    Source: ASME Open Journal of Engineering:;2023:;volume( 002 )::page 21026-1
    Author:
    Javed, Hassan
    ,
    Fayyaz
    ,
    Waqas, Muhammad
    ,
    Jazim, Agha Muhammad
    ,
    Sharif, Muddassar
    ,
    Khan, Sikandar
    DOI: 10.1115/1.4062280
    Publisher: The American Society of Mechanical Engineers (ASME)
    Abstract: About nine million barrels of gasoline are consumed daily by automobile engines. Out of this, roughly 2.25 million barrels are effectively used by the engine to generate power, whereas the rest is wasted due to engine inefficiencies. There is a dire need to bring up a more efficient engine, since even an effort for a 1% increase in efficiency would result in savings of almost $6 million daily worldwide. In this study, first, a conventional poppet valve engine configuration for a 70cc engine was analyzed. Then, based on the engine efficiency contributing parameters, a novel Independent Rotary Valve (IRV) engine configuration was proposed. The proposed engine configuration was analyzed for the same 70cc engine. The LOTUS Engine software was used for the thermodynamic investigation of intake valve closing angle for getting maximum values of volumetric efficiency, brake power, and brake torque at different speeds and intake valve closing angles. It has been found that the proposed engine configuration resulted in approximately 1.165% increase in thermal efficiency by a decrease in air-fuel mixture pumping work. In addition, a 13% increase in volumetric efficiency, a 13% increase in brake torque, and an 18% increase in brake power were found, through the use of independent valve actuation. Also, an increase in mechanical efficiency is expected, due to the added simplicity of the proposed IRV as compared to the conventional poppet valve system. This increase has been verified analytically and by numerical modeling performed in ANSYS FLUENT. The proposed IRV engine configuration is thus a more efficient, more powerful, less complicated, more stable, and an environmentally safer engine.
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      A Comparative Study of the Conventional Poppet Valve and the Proposed Novel Independent Rotary Valve Configurations for Improving Efficiency of the Internal Combustion Engine

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    http://yetl.yabesh.ir/yetl1/handle/yetl/4291933
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    contributor authorJaved, Hassan
    contributor authorFayyaz
    contributor authorWaqas, Muhammad
    contributor authorJazim, Agha Muhammad
    contributor authorSharif, Muddassar
    contributor authorKhan, Sikandar
    date accessioned2023-08-16T18:25:16Z
    date available2023-08-16T18:25:16Z
    date copyright5/2/2023 12:00:00 AM
    date issued2023
    identifier issn2770-3495
    identifier otheraoje_2_021026.pdf
    identifier urihttp://yetl.yabesh.ir/yetl1/handle/yetl/4291933
    description abstractAbout nine million barrels of gasoline are consumed daily by automobile engines. Out of this, roughly 2.25 million barrels are effectively used by the engine to generate power, whereas the rest is wasted due to engine inefficiencies. There is a dire need to bring up a more efficient engine, since even an effort for a 1% increase in efficiency would result in savings of almost $6 million daily worldwide. In this study, first, a conventional poppet valve engine configuration for a 70cc engine was analyzed. Then, based on the engine efficiency contributing parameters, a novel Independent Rotary Valve (IRV) engine configuration was proposed. The proposed engine configuration was analyzed for the same 70cc engine. The LOTUS Engine software was used for the thermodynamic investigation of intake valve closing angle for getting maximum values of volumetric efficiency, brake power, and brake torque at different speeds and intake valve closing angles. It has been found that the proposed engine configuration resulted in approximately 1.165% increase in thermal efficiency by a decrease in air-fuel mixture pumping work. In addition, a 13% increase in volumetric efficiency, a 13% increase in brake torque, and an 18% increase in brake power were found, through the use of independent valve actuation. Also, an increase in mechanical efficiency is expected, due to the added simplicity of the proposed IRV as compared to the conventional poppet valve system. This increase has been verified analytically and by numerical modeling performed in ANSYS FLUENT. The proposed IRV engine configuration is thus a more efficient, more powerful, less complicated, more stable, and an environmentally safer engine.
    publisherThe American Society of Mechanical Engineers (ASME)
    titleA Comparative Study of the Conventional Poppet Valve and the Proposed Novel Independent Rotary Valve Configurations for Improving Efficiency of the Internal Combustion Engine
    typeJournal Paper
    journal volume2
    journal titleASME Open Journal of Engineering
    identifier doi10.1115/1.4062280
    journal fristpage21026-1
    journal lastpage21026-12
    page12
    treeASME Open Journal of Engineering:;2023:;volume( 002 )
    contenttypeFulltext
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