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Fluids Engineering
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Journal of Engineering for Gas Turbines and Power  |  research-article
2017
Kevin Prieur, Daniel Durox, Thierry Schuller and Sébastien Candel
J. Eng. Gas Turbines Power 140, 031503 (2017) (10 pages);  doi:10.1115/1.4037824

Journal of Turbomachinery  |  research-article
2017
Simon Jacobi and Budimir Rosic
J. Turbomach 140, 011002 (2017) (8 pages);  doi:10.1115/1.4037820

Journal of Energy Resources Technology  |  research-article
2017
Matthew J. Traum, Fatemeh Hadi and Muhammad K. Akbar
J. Energy Resour. Technol 140, 032005 (2017) (7 pages);  doi:10.1115/1.4037967

Journal of Engineering for Gas Turbines and Power  |  research-article
2017
Thierry Sibilli and Uyioghosa Igie
J. Eng. Gas Turbines Power 140, 032501 (2017) (8 pages);  doi:10.1115/1.4037861

Journal of Engineering for Gas Turbines and Power  |  research-article
2017
Budi Chandra, Kathy Simmons and Andrew Murphy
J. Eng. Gas Turbines Power 140, 032601 (2017) (9 pages);  doi:10.1115/1.4037871

Journal of Engineering for Gas Turbines and Power  |  research-article
2017
Pietro Rossi, Asad Raheem and Reza S. Abhari
J. Eng. Gas Turbines Power 140, 032602 (2017) (8 pages);  doi:10.1115/1.4037912

Journal of Engineering for Gas Turbines and Power  |  research-article
2017
Gbanaibolou Jombo, Jiri Pecinka, Suresh Sampath and David Mba
J. Eng. Gas Turbines Power 140, 032603 (2017) (7 pages);  doi:10.1115/1.4037913

Journal of Engineering for Gas Turbines and Power  |  research-article
2017
Alessandro Bianchini, Francesco Balduzzi, Giovanni Ferrara, Lorenzo Ferrari, Giacomo Persico, Vincenzo Dossena and Lorenzo Battisti
J. Eng. Gas Turbines Power 140, 032604 (2017) (9 pages);  doi:10.1115/1.4037906

Journal of Engineering for Gas Turbines and Power  |  research-article
2017
Christoph A. Schmalhofer, Peter Griebel and Manfred Aigner
J. Eng. Gas Turbines Power 140, 031502 (2017) (10 pages);  doi:10.1115/1.4037918

Journal of Engineering for Gas Turbines and Power  |  research-article
2017
Filippo Cangioli, Paolo Pennacchi, Giuseppe Vannini, Lorenzo Ciuchicchi, Andrea Vania, Steven Chatterton and Phuoc Vinh Dang
J. Eng. Gas Turbines Power 140, 032502 (2017) (10 pages);  doi:10.1115/1.4037919

Applications of Mathematical Heat Transfer and Fluid Flow Models in Engineering and Medicine  |  Paper
2017
OPEN ACCESS Front Matter
Applications of Mathematical Heat Transfer and Fluid Flow Models in Engineering and Medicine Front Matter (2017) (34 pages);  doi:10.1115/1.861MHT_fm

Applications of Mathematical Heat Transfer and Fluid Flow Models in Engineering and Medicine  |  Paper
2017
Abram S. Dorfman
Applications of Mathematical Heat Transfer and Fluid Flow Models in Engineering and Medicine Application of Conjugate Heat Transfer Models in External and Internal Flows (2017) (53 pages);  doi:10.1115/1.861MHT_ch3

Applications of Mathematical Heat Transfer and Fluid Flow Models in Engineering and Medicine  |  Paper
2017
Abram S. Dorfman
Applications of Mathematical Heat Transfer and Fluid Flow Models in Engineering and Medicine Specific Applications of Conjugate Heat Transfer Models (2017) (68 pages);  doi:10.1115/1.861MHT_ch4

Applications of Mathematical Heat Transfer and Fluid Flow Models in Engineering and Medicine  |  Paper
2017
Abram S. Dorfman
Applications of Mathematical Heat Transfer and Fluid Flow Models in Engineering and Medicine Two Advanced Methods (2017) (28 pages);  doi:10.1115/1.861MHT_ch5

Applications of Mathematical Heat Transfer and Fluid Flow Models in Engineering and Medicine  |  Paper
2017
Abram S. Dorfman
Applications of Mathematical Heat Transfer and Fluid Flow Models in Engineering and Medicine Applications of Fluid Flow Modern Models (2017) (42 pages);  doi:10.1115/1.861MHT_ch6

Applications of Mathematical Heat Transfer and Fluid Flow Models in Engineering and Medicine  |  Paper
2017
Abram S. Dorfman
Applications of Mathematical Heat Transfer and Fluid Flow Models in Engineering and Medicine Laminar Fluid Flow and Heat Transfer (2017) (34 pages);  doi:10.1115/1.861MHT_ch7

Applications of Mathematical Heat Transfer and Fluid Flow Models in Engineering and Medicine  |  Paper
2017
Abram S. Dorfman
Applications of Mathematical Heat Transfer and Fluid Flow Models in Engineering and Medicine Turbulent Fluid Flow and Heat Transfer (2017) (17 pages);  doi:10.1115/1.861MHT_ch8

Applications of Mathematical Heat Transfer and Fluid Flow Models in Engineering and Medicine  |  Paper
2017
Abram S. Dorfman
Applications of Mathematical Heat Transfer and Fluid Flow Models in Engineering and Medicine Analytical and Numerical Methods in Fluid Flow and Heat Transfer (2017) (29 pages);  doi:10.1115/1.861MHT_ch9

Applications of Mathematical Heat Transfer and Fluid Flow Models in Engineering and Medicine  |  Paper
2017
Abram S. Dorfman
Applications of Mathematical Heat Transfer and Fluid Flow Models in Engineering and Medicine Application of Conjugate Heat Transfer Models in External and Internal Flows (2017) (53 pages);  doi:10.1115/1.861MHT_ch3

Applications of Mathematical Heat Transfer and Fluid Flow Models in Engineering and Medicine  |  Paper
2017
Abram S. Dorfman
Applications of Mathematical Heat Transfer and Fluid Flow Models in Engineering and Medicine Specific Applications of Conjugate Heat Transfer Models (2017) (68 pages);  doi:10.1115/1.861MHT_ch4

ASME 2017 International Pipeline Geotechnical Conference
2017
Martin Carnicero
IPG2017, pp. V001T01A003- (2017) 9 pages
doi:10.1115/IPG2017-2546

ASME 2017 International Pipeline Geotechnical Conference
2017
Francisco Oliveros, Emilio Hernández and Guillermo Soto
IPG2017, pp. V001T03A008- (2017) 6 pages
doi:10.1115/IPG2017-2541

Volume 1: Aerospace Heat Transfer; Computational Heat Transfer; Education; Environmental Heat Transfer; Fire and Combustion Systems; Gas Turbine Heat Transfer; Heat Transfer in Electronic Equipment; Heat Transfer in Energy Systems
2017
Bernardo Buonomo, Alessandra Diana, Oronzio Manca and Sergio Nardini
HT2017, pp. V001T01A003- (2017) 9 pages
doi:10.1115/HT2017-4986

Volume 1: Aerospace Heat Transfer; Computational Heat Transfer; Education; Environmental Heat Transfer; Fire and Combustion Systems; Gas Turbine Heat Transfer; Heat Transfer in Electronic Equipment; Heat Transfer in Energy Systems
2017
Mingkan Zhang and Omar Abdelaziz
HT2017, pp. V001T02A001- (2017) 9 pages
doi:10.1115/HT2017-4800

Volume 1: Aerospace Heat Transfer; Computational Heat Transfer; Education; Environmental Heat Transfer; Fire and Combustion Systems; Gas Turbine Heat Transfer; Heat Transfer in Electronic Equipment; Heat Transfer in Energy Systems
2017
Tao Ren, Michael F. Modest and Somesh Roy
HT2017, pp. V001T02A003- (2017) 10 pages
doi:10.1115/HT2017-4819

Volume 1: Aerospace Heat Transfer; Computational Heat Transfer; Education; Environmental Heat Transfer; Fire and Combustion Systems; Gas Turbine Heat Transfer; Heat Transfer in Electronic Equipment; Heat Transfer in Energy Systems
2017
M. Wasy Akhtar
HT2017, pp. V001T02A004- (2017) 9 pages
doi:10.1115/HT2017-4882

Volume 1: Aerospace Heat Transfer; Computational Heat Transfer; Education; Environmental Heat Transfer; Fire and Combustion Systems; Gas Turbine Heat Transfer; Heat Transfer in Electronic Equipment; Heat Transfer in Energy Systems
2017
Tariq Amin Khan, Wei Li, Zhengjiang Zhang, Jincai Du, Sadiq Amin Khan and Fu Liu
HT2017, pp. V001T02A005- (2017) 8 pages
doi:10.1115/HT2017-4904

Volume 1: Aerospace Heat Transfer; Computational Heat Transfer; Education; Environmental Heat Transfer; Fire and Combustion Systems; Gas Turbine Heat Transfer; Heat Transfer in Electronic Equipment; Heat Transfer in Energy Systems
2017
Dusan Spernjak, Robert Morgan, Ricardo Mejia Alvarez, John Bernardin and Stephen A. Ney
HT2017, pp. V001T02A008- (2017) 10 pages
doi:10.1115/HT2017-4990

Volume 1: Aerospace Heat Transfer; Computational Heat Transfer; Education; Environmental Heat Transfer; Fire and Combustion Systems; Gas Turbine Heat Transfer; Heat Transfer in Electronic Equipment; Heat Transfer in Energy Systems
2017
Sadhana Bhusal, Long Phan and Cheng-Xian Lin
HT2017, pp. V001T02A009- (2017) 7 pages
doi:10.1115/HT2017-5020

Volume 1: Aerospace Heat Transfer; Computational Heat Transfer; Education; Environmental Heat Transfer; Fire and Combustion Systems; Gas Turbine Heat Transfer; Heat Transfer in Electronic Equipment; Heat Transfer in Energy Systems
2017
Evaldas Greiciunas, Duncan Borman and Jonathan Summers
HT2017, pp. V001T02A011- (2017) 10 pages
doi:10.1115/HT2017-4957

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