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Journal of Thermal Science and Engineering Applications  |  research-article
2018
Alfredo Iranzo, Antonio Salva, Jose Julio Guerra Macho, Gonzalo Barea and Javier Pino
J. Thermal Sci. Eng. Appl , (2018);  doi:10.1115/1.4042218

Journal of Pressure Vessel Technology  |  research-article
2018
James Williams, Addi-Neequie Stone, Ryan Reedy and Ali Gordon
J. Pressure Vessel Technol , (2018);  doi:10.1115/1.4042219

Journal of Pressure Vessel Technology  |  research-article
2018
Fumio Inada, Michiya Sakai, Ryo Morita, Ichiro Tamura, Shinichi Matsuura, Kiyoshi Saito and Yasuki Ohtori
J. Pressure Vessel Technol , (2018);  doi:10.1115/1.4042220

Journal of Nuclear Engineering and Radiation Science  |  Discussion
2018
Wu Chongzhi, Zhang Jindong, Wang Zongkui, Zhang Zengkui and Fu Shenqing
ASME J of Nuclear Rad Sci , (2018);  doi:10.1115/1.4042221

Journal of Turbomachinery  |  research-article
2018
Joshua Anderson, Dr. David G. Bogard, Dr. Tom Dyson and Zachary Webster
J. Turbomach , (2018);  doi:10.1115/1.4042210

Journal of Engineering for Gas Turbines and Power  |  research-article
2018
Kevin S. McElhaney and Robert Mischler
J. Eng. Gas Turbines Power 141, 052801 (2018) (10 pages);  doi:10.1115/1.4041037

Journal of Engineering for Gas Turbines and Power  |  research-article
2018
Lukas Schwerdt, Sebastian Willeke, Lars Panning-von Scheidt and Jörg Wallaschek
J. Eng. Gas Turbines Power 141, 052502 (2018) (7 pages);  doi:10.1115/1.4041071

Journal of Turbomachinery  |  research-article
2018
M. C. Keerthi and Abhijit Kushari
J. Turbomach , (2018);  doi:10.1115/1.4042214

Journal of Turbomachinery  |  research-article
2018
Kuahai Yu and Dr. Danesh K. Tafti
J. Turbomach , (2018);  doi:10.1115/1.4042215

Journal of Turbomachinery  |  research-article
2018
Michele Marconcini, Roberto Pacciani, Andrea Arnone, Vittorio Michelassi, Richard Pichler, Yaomin Zhao and Richard Sandberg
J. Turbomach , (2018);  doi:10.1115/1.4042208

Dynamics of Particles and Rigid Bodies: A Self-Learning Approach  |  Paper
2019
Mohammed F. Daqaq
Dynamics of Particles and Rigid Bodies: A Self-Learning Approach Dynamics of Rigid Bodies: Analytical Approach (2019) (22 pages);  doi:10.1115/1.861DPR_ch6

Dynamics of Particles and Rigid Bodies: A Self-Learning Approach  |  Paper
2019
Mohammed F. Daqaq
Dynamics of Particles and Rigid Bodies: A Self-Learning Approach Motion of Charged Bodies in an Electric Field (2019) (58 pages);  doi:10.1115/1.861DPR_ch8

Pipeline Pumping and Compression Systems: A Practical Approach, Third Edition  |  Paper
2018
PUBLIC ACCESS Front Matter
Kamal K. Botros and Thomas Van Hardeveld
Pipeline Pumping and Compression Systems: A Practical Approach, Third Edition Front Matter (2018) (18 pages);  doi:10.1115/1.861783_fm

Pipeline Pumping and Compression Systems: A Practical Approach, Third Edition  |  Paper
2018
Kamal K. Botros and Thomas Van Hardeveld
Pipeline Pumping and Compression Systems: A Practical Approach, Third Edition Introduction to Pipeline Systems (2018) (18 pages);  doi:10.1115/1.861783_ch1

Pipeline Pumping and Compression Systems: A Practical Approach, Third Edition  |  Paper
2018
Kamal K. Botros and Thomas Van Hardeveld
Pipeline Pumping and Compression Systems: A Practical Approach, Third Edition Design and Operation of Compressors (2018) (58 pages);  doi:10.1115/1.861783_ch6

Pipeline Pumping and Compression Systems: A Practical Approach, Third Edition  |  Paper
2018
Kamal K. Botros and Thomas Van Hardeveld
Pipeline Pumping and Compression Systems: A Practical Approach, Third Edition Performance of Compressors (2018) (42 pages);  doi:10.1115/1.861783_ch7

Pipeline Pumping and Compression Systems: A Practical Approach, Third Edition  |  Paper
2018
Kamal K. Botros and Thomas Van Hardeveld
Pipeline Pumping and Compression Systems: A Practical Approach, Third Edition Pump and Compressor Drivers (2018) (60 pages);  doi:10.1115/1.861783_ch8

Pipeline Pumping and Compression Systems: A Practical Approach, Third Edition  |  Paper
2018
Kamal K. Botros and Thomas Van Hardeveld
Pipeline Pumping and Compression Systems: A Practical Approach, Third Edition Dynamics of Centrifugal Compression Systems (2018) (92 pages);  doi:10.1115/1.861783_ch10

Pipeline Pumping and Compression Systems: A Practical Approach, Third Edition  |  Paper
2018
Kamal K. Botros and Thomas Van Hardeveld
Pipeline Pumping and Compression Systems: A Practical Approach, Third Edition Pulsation and Vibration Analysis of Compression and Pumping Systems (2018) (70 pages);  doi:10.1115/1.861783_ch11

Pipeline Pumping and Compression Systems: A Practical Approach, Third Edition  |  Paper
2018
Kamal K. Botros and Thomas Van Hardeveld
Pipeline Pumping and Compression Systems: A Practical Approach, Third Edition Environmental Issues Related to Compressor and Pump Stations (2018) (48 pages);  doi:10.1115/1.861783_ch13

Volume 1: Advances in Control Design Methods; Advances in Nonlinear Control; Advances in Robotics; Assistive and Rehabilitation Robotics; Automotive Dynamics and Emerging Powertrain Technologies; Automotive Systems; Bio Engineering Applications; Bio-Mechatronics and Physical Human Robot Interaction; Biomedical and Neural Systems; Biomedical and Neural Systems Modeling, Diagnostics, and Healthcare
2018
Shahin S. Nudehi, Ryan Newendyke, Dylan Antonides and Timothy Zange
DSCC2018, pp. V001T01A002- (2018) 6 pages
doi:10.1115/DSCC2018-8953

Volume 1: Advances in Control Design Methods; Advances in Nonlinear Control; Advances in Robotics; Assistive and Rehabilitation Robotics; Automotive Dynamics and Emerging Powertrain Technologies; Automotive Systems; Bio Engineering Applications; Bio-Mechatronics and Physical Human Robot Interaction; Biomedical and Neural Systems; Biomedical and Neural Systems Modeling, Diagnostics, and Healthcare
2018
Kentaro Takemura, Euisun Kim and Jun Ueda
DSCC2018, pp. V001T01A010- (2018) 8 pages
doi:10.1115/DSCC2018-9155

Volume 1: Advances in Control Design Methods; Advances in Nonlinear Control; Advances in Robotics; Assistive and Rehabilitation Robotics; Automotive Dynamics and Emerging Powertrain Technologies; Automotive Systems; Bio Engineering Applications; Bio-Mechatronics and Physical Human Robot Interaction; Biomedical and Neural Systems; Biomedical and Neural Systems Modeling, Diagnostics, and Healthcare
2018
Sahand Sadeghi, Blake D. Betsill, Phanindra Tallapragada and Suyi Li
DSCC2018, pp. V001T04A002- (2018) 10 pages
doi:10.1115/DSCC2018-8969

Volume 1: Advances in Control Design Methods; Advances in Nonlinear Control; Advances in Robotics; Assistive and Rehabilitation Robotics; Automotive Dynamics and Emerging Powertrain Technologies; Automotive Systems; Bio Engineering Applications; Bio-Mechatronics and Physical Human Robot Interaction; Biomedical and Neural Systems; Biomedical and Neural Systems Modeling, Diagnostics, and Healthcare
2018
Amin Ghorbanpour and Hanz Richter
DSCC2018, pp. V001T04A003- (2018) 10 pages
doi:10.1115/DSCC2018-8972

Volume 1: Advances in Control Design Methods; Advances in Nonlinear Control; Advances in Robotics; Assistive and Rehabilitation Robotics; Automotive Dynamics and Emerging Powertrain Technologies; Automotive Systems; Bio Engineering Applications; Bio-Mechatronics and Physical Human Robot Interaction; Biomedical and Neural Systems; Biomedical and Neural Systems Modeling, Diagnostics, and Healthcare
2018
Wenyu Zuo and Zheng Chen
DSCC2018, pp. V001T04A008- (2018) 9 pages
doi:10.1115/DSCC2018-9064

Volume 1: Advances in Control Design Methods; Advances in Nonlinear Control; Advances in Robotics; Assistive and Rehabilitation Robotics; Automotive Dynamics and Emerging Powertrain Technologies; Automotive Systems; Bio Engineering Applications; Bio-Mechatronics and Physical Human Robot Interaction; Biomedical and Neural Systems; Biomedical and Neural Systems Modeling, Diagnostics, and Healthcare
2018
Ravindra Singh Bisht, Pushparaj Mani Pathak and Saroj Kumar Panigrahi
DSCC2018, pp. V001T04A016- (2018) 10 pages
doi:10.1115/DSCC2018-9181

Volume 1: Advances in Control Design Methods; Advances in Nonlinear Control; Advances in Robotics; Assistive and Rehabilitation Robotics; Automotive Dynamics and Emerging Powertrain Technologies; Automotive Systems; Bio Engineering Applications; Bio-Mechatronics and Physical Human Robot Interaction; Biomedical and Neural Systems; Biomedical and Neural Systems Modeling, Diagnostics, and Healthcare
2018
Andrew Erwin, Nick Moser, Craig G. McDonald and Marcia K. O’Malley
DSCC2018, pp. V001T07A001- (2018) 8 pages
doi:10.1115/DSCC2018-8963

Volume 1: Advances in Control Design Methods; Advances in Nonlinear Control; Advances in Robotics; Assistive and Rehabilitation Robotics; Automotive Dynamics and Emerging Powertrain Technologies; Automotive Systems; Bio Engineering Applications; Bio-Mechatronics and Physical Human Robot Interaction; Biomedical and Neural Systems; Biomedical and Neural Systems Modeling, Diagnostics, and Healthcare
2018
Christian A. Cousin, Victor H. Duenas, Courtney A. Rouse and Warren E. Dixon
DSCC2018, pp. V001T07A003- (2018) 7 pages
doi:10.1115/DSCC2018-8989

Volume 1: Advances in Control Design Methods; Advances in Nonlinear Control; Advances in Robotics; Assistive and Rehabilitation Robotics; Automotive Dynamics and Emerging Powertrain Technologies; Automotive Systems; Bio Engineering Applications; Bio-Mechatronics and Physical Human Robot Interaction; Biomedical and Neural Systems; Biomedical and Neural Systems Modeling, Diagnostics, and Healthcare
2018
Courtney A. Rouse, Christian A. Cousin, Victor H. Duenas and Warren E. Dixon
DSCC2018, pp. V001T07A007- (2018) 8 pages
doi:10.1115/DSCC2018-9083

Volume 1: Advances in Control Design Methods; Advances in Nonlinear Control; Advances in Robotics; Assistive and Rehabilitation Robotics; Automotive Dynamics and Emerging Powertrain Technologies; Automotive Systems; Bio Engineering Applications; Bio-Mechatronics and Physical Human Robot Interaction; Biomedical and Neural Systems; Biomedical and Neural Systems Modeling, Diagnostics, and Healthcare
2018
Kai Wu, Milos Milacic, Alhadi Albousefi, Ming Kuang and Jing Sun
DSCC2018, pp. V001T09A003- (2018) 10 pages
doi:10.1115/DSCC2018-8995

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