LATTİCE BOLTZMANN METODU VE GRAFİK KARTLARIYLA PARALEL PROGRAMLAMA KULLANARAK MİKROKANALLARDA TEK FAZLI AKIŞ VE ISI TRANSFERİ ANALİZİ

Tamamlanmış Proje

TÜBİTAK (110M750)

PROJE SÜRESİ

Başlangıç Tarihi: 1 Şubat 2011
Tamamlanma Tarihi: 1 Mayıs 2012

ÖZET

Bu projede iki boyutlu mikro kanallarda akışkan akışı ve ısı transferi sayısal olarak incelenmiştir. Bu amaçla Lattice Boltzmann Method (LBM) 'e dayalı bir bilgisayar kodu geliştirilmiştir. Kod MATLAB ve Jacket yazılımı kullanılarak geliştirilmiştir ve Grafik İşleme Birimleri GPU'sunda paralel çalışabilme özelliğine sahiptir). Kod, mikro ve makro kanalların içindeki akış ve ısı transferini simüle etmek için kullanılır. Elde edilen hız profilleri ve Nusselt sayıları, literatürde mevcut Navier-Stokes bazlı analitik ve sayısal sonuçlarla karşılaştırılmış ve iyi eşleşmeler gözlenmiştir. Kayma akış rejimini kapsayan Knudsen sayı değerlerine sahip mikro kanal simülasyonlarında kayma hızı ve sıcaklık atlama sınırı koşulları kullanılır. Bir GPU'da çalışan gelişmiş kodun paralel versiyonunun hızı, seri çalışan CPU versiyonuyla karşılaştırılır ve yeterince büyük ağlar için hızın 10 katından daha fazla hız olduğu bildirilir.

Lattice Boltzmann Metodu ve Grafik Kartlarıyla Paralel Programlama Kullanarak Mikrokanallarda Tek Fazlı Akış ve Isı Transferi Analizi

İLGİLİ YAYINLAR

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  • Çetin, B., Özer, M.B., Çağatay, E., Büyükkoçak, S. (2016). "An integrated acoustic and dielectrophoretic particle manipulation in a microfluidic device for particle wash and separation fabricated by mechanical machining", Biomicrofluidics, v.10 p.014112, Full Text, DOI: http://dx.doi.org/http://dx.doi.org/10.1063/1.4940431
  • Yavuz, C., Oliaei, S.N., Çetin, B., Yeşil-Çeliktaş, Ö. (2016). "Sterilization of PMMA microfluidic chips by various techniques and investigation of material characteristics", J. Supercrticial Fluids, v.107 p.114–121, Full Text, DOI: http://dx.doi.org/10.1016/j.supflu.2015.08.019
  • Çetin, B., Yıldırım, E., Akay, Ş. (2016). "Mikroakışkan Sistemlerin Üretimi", Mikroakışkan Teknolojilerin Temelleri ve Uygulamaları (Edited by Assoc. Prof. Ö. Yeşil-Çeliktaş)
  • Yavuz, C., Çetin, B., Yeşil-Çeliktaş, Ö. (2016). "Mikroakışkan Sistemlerin Sterilizasyonu", Mikroakışkan Teknolojilerin Temelleri ve Uygulamaları (Edited by Assoc. Prof. Ö. Yeşil-Çeliktaş)
  • Yeşil-Çeliktaş, Ö., Çetin, B., Yıldırım, E. (2016). "Mikroakışkan Sistemlere Yönelik Gelecek Tahminleri", Mikroakışkan Teknolojilerin Temelleri ve Uygulamaları (Edited by Assoc. Prof. Ö. Yeşil-Çeliktaş)
  • Zeinali, S., Çetin, B., Oliaei, S., Karpat, Y. (2015). "Fabrication of continuous flow microfluidics device with 3D electrode structures for high throughput DEP applications using mechanical machining", Electrophoresis, Special Issue on Dielectrophoresis, v.36(13) p.1432-1442, Full Text, DOI: http://dx.doi.org/10.1002/elps.201400486
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  • Karakaya, Z., Baranoðlu, B., Çetin, B., Yazýcý, A. (2015). "A parallel boundary element formulation for tracking multiple particle trajectories in Stoke's flow for microfluidic applications", CMES-Computer Modeling in Engineering and Science, v.104(3) p.227-249, Full Text
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  • Çetin, B., Salemmilani, R., D. Li (2015). "Ultrasonic pumps", Encyclopedia of Micro and Nanofluidics (2nd Edition), Springer p.3394-3397, Full Text, DOI: https://link.springer.com/referenceworkentry/10.1007%2F978-3-642-27758-0_1646-8
  • Çetin, B., Zeinali, S., Li, D. (2015). "Microfluidic Optical Devices", Encyclopedia of Micro and Nanofluidics (2nd Edition), Springer p.1980-1984, Full Text, DOI: https://link.springer.com/referenceworkentry/10.1007%2F978-3-642-27758-0_940-6
  • Çetin, B., Zeinali, S., Li, D. (2015). "Magnetic Pumps", Encyclopedia of Micro and Nanofluidics (2nd Edition) p.1690-1695, Full Text, DOI: https://link.springer.com/referenceworkentry/10.1007%2F978-3-642-27758-0_843-6
  • Çetin, B., Taze, S., Li, D. (2015). "Methods for Pressure Measurements", Encyclopedia of Micro and Nanofluidics (2nd Edition), Springer p.2828-2834, Full Text, DOI: https://link.springer.com/referenceworkentry/10.1007%2F978-3-642-27758-0_1296-7
  • Büyükkoçak, S., Özer, M.B., Çetin, B. (2015). "Microscale Acoustofluidics", Encyclopedia of Micro and Nanofluidics (2nd Edition), Springer p.2149-2158, Full Text, DOI: https://link.springer.com/referenceworkentry/10.1007%2F978-3-642-27758-0_1735-4
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  • Çetin, B., Özer, M.B., Solmaz, M.E. (2014). "Microfluidic bio-particle manipulation for biotechnology", Biochemical Engineering Journal, v.92 p.63-82, Full Text
  • Cole, K., Çetin, B., Brettmann, L. (2014). "Microchannel heat transfer with slip flow and wall effects", AIAA J. Thermophysics and Heat Transfer, v.28(3) p.455-462, Full Text, DOI: http://dx.doi.org/10.2514/1.T4267
  • Çetin, B., Aşık, M.D., Taze, S. (2014). "Design and fabrication of a microfluidic device for synthesis of chitosan nanoparticles", ASME J. Nanotechnology in Engineering and Medicine, v.4(3) p.031004, Full Text, DOI: http://dx.doi.org/10.1115/1.4026287
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  • Çetin, B., Travis, B.E., Li, D. (2008). "Analysis of the electro-viscous effects on pressure-driven liquid flow in a two-section heterogeneous microchannel", Electrochimica Acta, v.54 p.660-664, DOI: http://dx.doi.org/10.1016/j.electacta.2008.07.008
  • Çetin, B., Yuncu, H., Kakaç, S. (2006). "Gaseous flow in microconduits with viscous dissipation", Int. J. Transport Phenomena, v.8(4) p.297-315, Full Text
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  • Çetin, B., Li, D. (2008). "Temperature Gradient Generation and Control", Encyclopedia of Micro and Nanofluidics (1st Edition), Springer p.1993-1994, Full Text
  • Çetin, B., Li, D. (2008). "Methods for Pressure Measurements", Encyclopedia of Micro and Nanofluidics (1st Edition), Springer p.1743-1745, Full Text
  • Çetin, B., Li, D. (2008). "Magnetic Pumps", Encyclopedia of Micro and Nanofluidics (1st Edition), Springer p.1040-1043, Full Text
  • Çetin, B., Li, D. (2008). "Microfluidic Optical Devices", Encyclopedia of Micro and Nanofluidics (1st Edition), Springer p.1186-1187, Full Text
  • Çetin, B., Li, D. (2008). "Ultrasonic pumps", Encyclopedia of Micro and Nanofluidics (1st Edition), Springer p.2128-2129, Full Text