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Development of Starting-Charging System Trainer for Diesel Engine and Gasoline Engine/ David Gienell Dela cruz...[and three others)]

By: Dela Cruz, David Gienell, authorContributor(s): Arsolon, Monching R., author | Armintia, Christian G., author | Badayos, Ryan, author | Ambayec, Josefino E., adviser | Santiago, Danilo G., criticMaterial type: TextTextPublisher: Rosario, Cavite : Cavite State University-CCAT Campus, 2018Description: xvi, 96 leaves : illustrations ; 28 cmSubject(s): Starting - Charging systems for Diesel and gasoline engine | Prototype, Engineering | Cost analysisLOC classification: UM TL272 | D48 2018Summary: ARMINTIA, CHRISTIAN G. ARSOLON, MONCHING R. DELA CRUZ, DAVID GIENELL. BADAYOS, RYAN, Development of Starting-Charging System Trainer for Diesel Engine and Gasoline Engine. Design Project. Bachelor of Science in Industrial Technology with specialization in Stationary Marine Technology. Cavite State University, Rosario Cavite May 2018. Adviser Mr. Josefino E. Ambayec. Technical critic: Mr. Danilo G. Santiago. The study was conducted from March 2016 to May 2018 at Cavite State University CCAT Campus in Stationary Marine Technology Building to develop and evaluate the starting-charging system trainer for diesel engine and gasoline engine. Specifically, the study aimed to 1.) design the starting-charging system trainer for diesel engine and gasoline engine. 2.) construct the starting-charging system trainer for diesel engine and gasoline engine. 3.) evaluate the performance of the prototype in terms of charging rate of alternator to the battery using AC motor, output voltage of the AC motor, compare AC motor and diesel in terms of charging rate and output. 4.) construct a learning elements. 5.) conduct a cost analysis for the of starting-charging system trainer for diesel engine and gasoline engine. The prototype was conducted with four (4) major parts; starting motor, AC motor, alternator and battery. Starter motor is a motor that converts electricity to mechanical work and also responsible to crank the flywheel. AC motor is an electric machine that converts electrical energy and that is responsible to start the alternator with the help of the fan belt. Alternator is an electrical generator that converts mechanical energy to electrical energy in the form of alternating current. Battery is a container consisting of one or more cells, in which chemical energy is converted into electricity and used as a source of power of the starting motor to crank the flywheel.
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Thesis/Manuscripts/Dissertations Thesis/Manuscripts/Dissertations Cavite State University - CCAT Campus
Thesis/Manuscript/Dissertation TH UM TL272 D48 2018 (Browse shelf) 1 copy Available T0005164

Undergraduate Thesis (BSIT)with Specialization in Stationary Marine Technology--Cavite State University-CCAT Campus, 2018.

Includes bibliographical references and appendices.

ARMINTIA, CHRISTIAN G. ARSOLON, MONCHING R. DELA CRUZ, DAVID GIENELL. BADAYOS, RYAN, Development of Starting-Charging System Trainer for Diesel Engine and Gasoline Engine. Design Project. Bachelor of Science in Industrial Technology with specialization in Stationary Marine Technology. Cavite State University, Rosario Cavite May 2018. Adviser Mr. Josefino E. Ambayec. Technical critic: Mr. Danilo G. Santiago.

The study was conducted from March 2016 to May 2018 at Cavite State University CCAT Campus in Stationary Marine Technology Building to develop and evaluate the starting-charging system trainer for diesel engine and gasoline engine. Specifically, the study aimed to 1.) design the starting-charging system trainer for diesel engine and gasoline engine. 2.) construct the starting-charging system trainer for diesel engine and gasoline engine. 3.) evaluate the performance of the prototype in terms of charging rate of alternator to the battery using AC motor, output voltage of the AC motor, compare AC motor and diesel in terms of charging rate and output. 4.) construct a learning elements. 5.) conduct a cost analysis for the of starting-charging system trainer for diesel engine and gasoline engine.

The prototype was conducted with four (4) major parts; starting motor, AC motor, alternator and battery. Starter motor is a motor that converts electricity to mechanical work and also responsible to crank the flywheel. AC motor is an electric machine that converts electrical energy and that is responsible to start the alternator with the help of the fan belt. Alternator is an electrical generator that converts mechanical energy to electrical energy in the form of alternating current. Battery is a container consisting of one or more cells, in which chemical energy is converted into electricity and used as a source of power of the starting motor to crank the flywheel.

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