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ITS » Undergraduate Theses » Teknik Fisika S1
Posted by dee@its.ac.id at 16/03/2011 12:38:07  •  2351 Views


PERANCANGAN GENERATOR DC MAGNET PERMANEN BARIUM FERIT PUTARAN RENDAH UNTUK APLIKASI LISTRIK TENAGA ANGIN MENGGUNAKAN FINITE ELEMENT METHODE MAGNETICS (FEMM) SOFTWARE

DESIGN OF GENERATOR DC BARRIUM FERITE PERMANENT MAGNET LOW SPEED FOR WIND POWER ELECTRICITY APPLICATION UTILIZES FINITE ELEMENT METHODE MAGNETICS (FEMM) SOFTWARE

Created by :
KRISTYANTO, RUDYANA  ( 2406100089 )



SubjectTenaga angin
Alt. Subject Wind-powered electric generation
KeywordGenerator DC
Axial
Radial
Magnet
Barrium Ferrite
FEMM.

Description:

Magnet merupakan salah satu komponen yang sangat penting dalam suatu Generator. Fungsinya adalah untuk menghasilkan fluks magnetik yang akan dipakai untuk membangkitkan ggl induksi pada kumparan yang telah dipasang. Untuk membangkitkan ggl induksi maka diperlukan perubahan jumlah fluks magnet yang mengenai kumparan Perubaha nfluks magnetik tersebut dilakukan dengan proses gerakan berputar. Dalam tugas akhir ini, dibuat perancangan model generator DC dengan menggunakan magnet permanen generator (PMG) Barrium Ferrit untuk aplikasi listrik tenaga angin. Perancangan dilakukan dengan simulasi menggunakan bantuan Finite Element Methode Magnetics (FEMM) software untuk mengetahui sebaran fluks magnetnya. Perancangan dilakukan untuk 2 model generator yaitu tipe Axial Fluks Magnetik (AFM) dan Radial Fluks Magnetik (RFM) Berdasarkan hasil pendesainan dan hasil simulasi, disimpulkan bahwa desain yang sesuai dengan keadaan dan kemampuan angin di Indonesia yang memilki kemampuan memutar turbin rata-rata pada 200-300 rpm adalah dengan menggunakan jumlah kutub 12 dan dipasang pada frekwensi tegangan 50 Hz. Untuk keadaan tersebut dihasilkan kisaran besaran tegangan keluaran yang berbeda untuk masing-masing desain, untuk tipe Axial Fluks Magnetic (AFM) tegangan keluaran yang dihasilkan berkisar 1,466 volt sedangkan untuk tipe Radial Fluks Magnetic (RFM) akan tegangan keluaran berkisar 9,327 volt.


Alt. Description

Magnet is one of component which momentously deep a Generator. Its function is subject to be result magnetic flux who will be used to arouse ggl induction on bobbin already being assembled. To arouse ggl induction therefore needful change totals magnetic flux that hit that change of fluks Magnetics bobbin did by pirouetting process. In this final task, made by generators model scheme DC by use of generator permanent magnet (PMG) Barrium Ferrit for electricity apllication wind power. Design of done with simulated utilize Finite Element Methode Magnetics help (FEMM) software to know spread its magnetic flux. Design of is done for 2 generator model which is type Axial Magnetic Flux (AFM) and Magnetic Flux Radial (RFM) Base modeling and simulation result, concluded that design that corresponds to situation and wind ability at Indonesian have one ability turns around turbine average on 200- 300 rpm is by use of pole amount 12 and be assembled on tension frequency 50 Hz. To the situation of bigger gyration resultant output tension that variably for each one design, for Axial type Magnetic Flux (AFM) resulting output tension ranging 1,466 volts whereas for Flux Radial type Magnetic (RFM) will ranging output tension 9,327 volts.

Contributor:
  1. Dyah Sawitri, ST., MT.
Date Create:03/08/2010
Type:Text
Format:pdf
Language:Indonesian
Identifier:ITS-Undergraduate-3100011041809
Collection ID:3100011041809
Call Number:RSF 621.312 136 Kri p


Source :
Undergraduate Thesis of Physics Engineering, RSF 621.312 136 Kri p, 2010

Coverage :
ITS Community

Rights :
Copyright @2010 by ITS Library. This publication is protected by copyright and per obtained from the ITS Library prior to any prohibited reproduction, storage in a re transmission in any form or by any means, electronic, mechanical, photocopying, reco For information regarding permission(s), write to ITS Library


Publication URL :
http://digilib.its.ac.id/perancangan-generator-dc-magnet-permanen-barium-ferit-putaran-rendah-untuk-aplikasi-listrik-tenaga-angin-menggunakan-finite-element-methode-magnetics-femm-software-13788.html




[ Free Download - Free for All ]

  1.  ITS-Undergraduate-13788-2406100089-Cover_id.pdf - 81 KB
  2.  ITS-Undergraduate-13788-2406100089-Cover_en.pdf - 81 KB
  3.  ITS-Undergraduate-13788-2406100089-Approval_Sheet.pdf - 115 KB
  4.  ITS-Undergraduate-13788-2406100089-Abstract_id.pdf - 112 KB
  5.  ITS-Undergraduate-13788-2406100089-Abstract_en.pdf - 112 KB
  6.  ITS-Undergraduate-13788-2406100089-Preface.pdf - 100 KB
  7.  ITS-Undergraduate-13788-2406100089-Table_of_Content.pdf - 84 KB
  8.  ITS-Undergraduate-13788-2406100089-Illustrations.pdf - 139 KB
  9.  ITS-Undergraduate-13788-2406100089-Tables.pdf - 83 KB
  10.  ITS-Undergraduate-13788-2406100089-Biography.pdf - 130 KB
  11.  ITS-Undergraduate-13788-2406100089-Chapter1.pdf - 143 KB
  12.  ITS-Undergraduate-13788-2406100089-Conclusion.pdf - 170 KB
  13.  ITS-Undergraduate-13788-2406100089-Bibliography.pdf - 156 KB
  14.  ITS-Undergraduate-13788-2406100089-Presentation1.pdf - 1207 KB
  15.  ITS-Undergraduate-13788-2406100089-Presentation2.pdf - 1198 KB

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  1. ITS-Undergraduate-13788-2406100089-Chapter2.pdf - 325 KB
  2. ITS-Undergraduate-13788-2406100089-Chapter3.pdf - 586 KB
  3. ITS-Undergraduate-13788-2406100089-Chapter4.pdf - 844 KB
  4. ITS-Undergraduate-13788-2406100089-Enclosure.pdf - 1435 KB
  5. ITS-Undergraduate-13788-2406100089-Paper.pdf - 1362 KB



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Axial , Barrium , Barrium Ferrite , DC , FEMM. , Ferrite , Generator , Generator DC , Magnet , Radial



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