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ITS » Undergraduate Theses » Teknik Mesin Ekstensi - S1
Posted by ansi@its.ac.id at 29/11/2010 16:02:58  •  3068 Views


SIMULASI PERANCANGAN ALAT PENUKAR KALOR KONDENSOR TIPE COMPACT DENGAN BAHASA PEMROGRAMAN DELPHI 7

SIMULATION OF COMPACT TYPE OF CONDENSER HEAT EXCHANGER DESIGN USING DELPHI 7 PROGRAMME LANGUAGE

Author :
FIRMANSYAH, MUHAMMAD DIAN ( 2101109602 )




ABSTRAK

Pemahaman terhadop Alat penukar kalor Heat Exchanger Kondensor fipe Compact yaitu Circular Tube Continuous Fin dan Circular Tube Circular Fin kurang maksimal mengingat keterbatasan kajiannya dolam mata kuliah Perpindohan Panas. Pemilihan penggunaan perangkat lunak sebagai alat bantu pengajaran menjadi pilihan yang tepat karena perangkat lunak dapat membantu memahami lebih cepat dan dapat menghemat waktu untuk menyelesaikan perhitungan yang panjang pengelolaan database serla proses iterasi yang berulang-ulang. Sehingga memudohkan perancang dolam merancang alat penukar kalor kondensor tipe compact heat exchangers sampai memperoleh hasil perancangan sesuai dengan standor yang ado. Alur pembuatan Perangkat Lunak ini melewafi beberapa tahapan Yaitu Study Literature Perancangan Sistem Proses Pengerjaan don Evaluasi yang bertujuan untuk mengetahui performance dari Perangkat Lunak tersebut. Perangkat Lunak ini dibuat dengan menggunakan Bahasa PemrograltUln Delphi 7. Pado penggunaan kondenser dengan mengunakan circular fin circluar fin dengan tipe Cf 8.72 mempunyai Koefisien perpindahan panas overall yang lebih besar dibanding dengan tipe lainnya karena mempunyai diameter dalam tube yang lebih kecil.Koefisien perpindahan panas overall terbesar diperoleh dengan menggunakan circular fin tife Cf 8.72 4 laluan dan refrigeran R22. Untuk Continous fin koefisien perpindahan panas overall terbesar diperoleh dengan menggunakan tipe 7.75-518 T 4 laluan dan Refrigeran R22.Intuk circular fin Overall effisiensi terbesar diperoleh dengan tipe Cf 8.72 c sedangkan untuk Continuous fin diperoleh dengan tipe 7.75-518 T.


ABSTRACT

The understanding of Compact type of condensor heat exchanger that consists of Circular Tube Contino us Fin and Circular Tube Circular Fin isnt maximal because of the limitation of study in Heat Transfer lesson. The using software as an education aid tool is the effective choice because the software can help to understand faster economize the time for finishing the calculation database organizing and repeating iteration process. So that making easy the projector to project the Compact type of condensor heat exchanger until getting the project result which is suitable with the available standard. The making of this software consists of some stages such as the literature of system project study the making and evaluation which purpose to know the performance of this software. The software is made of using Delphi 7 Programme Language. In using condensor with Cf 8. 72 type of circular fin has the bigger overall heat transfer coefficient than another type because of the smaller inside diameter. The biggest overall heat transfer coefficient is gotten by using Cf 8.72 type of circular fin 4 passes and refrigerant R22. And for continous fin the biggest overall heat transfer coefficient is gotten by using 7.75-58 T type 4 passes and refrigerant R22. For circular fin the biggerst overall efficiency is gotten by using Cf 8. 72 c type whereas for continous fin is gotten by using 7. 75-58 T type.



KeywordsOverall Heat Transfer; Delphi; Compact Heat Exchanger; Heat Transfer; Circular fin; Continous fin; The coefficient of convection; Perpindahan panas; Koefisien konveksi
 
Subject:  transmisi panas
Contributor
  1. Dr.Ir Prabowo, MEng
Date Create: 29/11/2010
Type: Text
Format: pdf
Language: Indonesian
Identifier: ITS-Undergraduate-3100005022301
Collection ID: 3100005022301
Call Number: RSM 621.402 5 Fir s


Source
Undergraduated Thesis, Mechanical Engineering, RSM 621.402 5 Fir s, 2005

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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




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  1.  ITS-Undergraduate-12788-2101109602-Abstract_id.pdf - 46 KB
  2.  ITS-Undergraduate-12788-2101109602-Abstract_en.pdf - 39 KB
  3.  ITS-Undergraduate-12788-2101109602-Conclusion.pdf - 35 KB




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