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Keywords: wind turbine
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Proceedings Papers

Proc. ASME. IMECE2021, Volume 8B: Energy, V08BT08A037, November 1–5, 2021
Paper No: IMECE2021-72201
... the experimental values and evaluated as to any discrepancies and validation of the experimental results. wind turbine Savonius turbine hybrid vehicles renewable energies Eolo wind power double wind turbine electric vehicles Colombian engineering CFD Proceedings of the ASME 2021 International...
Proceedings Papers

Proc. ASME. IMECE2021, Volume 8B: Energy, V08BT08A019, November 1–5, 2021
Paper No: IMECE2021-67485
... Axis Wind Turbines (SVAWT) have several advantages for certain geographical conditions attracting designers to research them. The present study introduces the Response Surface Methodology (RSM) as a tool for evaluating multiple SVAWT configurations and estimating the influence of rotor geometric...
Proceedings Papers

Proc. ASME. IMECE2021, Volume 8B: Energy, V08BT08A039, November 1–5, 2021
Paper No: IMECE2021-73401
... power density (WPD) of 147.79 W/m 2 . A horizontal axis wind turbine of 30 kW capacity was designed and optimized using Harp_Opt software which works on a multi-objective genetic algorithm. The blade sections (airfoils) were designed using an in-house multi-objective genetic algorithm code...
Proceedings Papers

Proc. ASME. IMECE2021, Volume 4: Advances in Aerospace Technology, V004T04A003, November 1–5, 2021
Paper No: IMECE2021-68989
...Abstract Abstract To reduce the environmental pollution and introduce new form of energy source, the popularity of harvesting energy from wind is increasing day by day. Wind turbines blades are growing longer, as increasing blade length is one of the best ways to produce more wind energy per...
Proceedings Papers

Proc. ASME. IMECE2021, Volume 7B: Dynamics, Vibration, and Control, V07BT07A055, November 1–5, 2021
Paper No: IMECE2021-73362
...Proceedings of the ASME 2021 International Mechanical Engineering Congress and Exposition IMECE2021 November 1-5, 2021, Virtual, Online IMECE2021-73362 STOCHASTIC DYNAMICS OF ROTATING WIND TURBINE BLADES INFLUENCED BY TURBULENCE AND AEROELASTIC UNCERTAINTIES: RECENT DEVELOPMENTS Luca Caracoglia1...
Proceedings Papers

Proc. ASME. IMECE2020, Volume 8: Energy, V008T08A062, November 16–19, 2020
Paper No: IMECE2020-24229
...), a wind turbine as primary resources and fuel cell, and a battery stack as backup and energy storage systems, while an electrolyzer is used to provide the required hydrogen in the fuel cell system. Feasibility analysis and unit sizing are conducted based on climatic data such as solar irradiance and wind...
Proceedings Papers

Proc. ASME. IMECE2020, Volume 8: Energy, V008T08A055, November 16–19, 2020
Paper No: IMECE2020-23406
... harvesting feasibility on Mars will be studied by employing the Mars Climate Database (MCD) model. In addition, this novel research provides a systematic approach for future energy harvesting projects on Mars. Moreover, it evaluates different potential wind turbine design concepts applicable for the Martian...
Proceedings Papers

Proc. ASME. IMECE2020, Volume 8: Energy, V008T08A056, November 16–19, 2020
Paper No: IMECE2020-23492
...Abstract Abstract Wind turbines can create turbulence and downstream wakes which can introduce generation losses of downstream impacted turbines. These downstream turbine-induced losses are due to two different conditions. The first is from power-producing rotating blades of upstream wind...
Proceedings Papers

Proc. ASME. IMECE2020, Volume 11: Heat Transfer and Thermal Engineering, V011T11A044, November 16–19, 2020
Paper No: IMECE2020-23230
...Abstract Abstract The phenomena of over-cooling commonly exist in data center thermal environment, resulting in a substantial waste of energy. Previous study has proposed a solution that implementing a wind turbine in a raised-floor data center by which the over-provisioned airflow can...
Proceedings Papers

Proc. ASME. IMECE2020, Volume 7B: Dynamics, Vibration, and Control, V07BT07A047, November 16–19, 2020
Paper No: IMECE2020-24619
...HIGH-FIDELITY STRUCTURAL ANALYSIS OF A 10 MW OFFSHORE FLOATING WIND TURBINE ROTOR BLADE Reza Yaghmaie Mechanical and Aerospace Engineering Rutgers University 98 Brett Road, Piscataway, NJ 08854, USA Onur Bilgen Mechanical and Aerospace Engineering Rutgers University 98 Brett Road, Piscataway, NJ...
Proceedings Papers

Proc. ASME. IMECE2019, Volume 5: Engineering Education, V005T07A031, November 11–14, 2019
Paper No: IMECE2019-11751
...DATA COLLECTION AND ANALYSIS USING A WIND TURBINE AND A PHOTOVOLTAIC SOLAR PANEL Salim Azzouz Midwestern State University Wichita Falls, TX Johnny Blevins Tower Extrusions, Ltd. Olney, TX Tyler Thomas Hilti Plano, TX Makenzie Johnson PHCC Buda, TX Clarke O Connor Midwestern State University Wichita...
Proceedings Papers

Proc. ASME. IMECE2013, Volume 6A: Energy, V06AT07A095, November 15–21, 2013
Paper No: IMECE2013-66213
... As wind turbines are increasingly being adopted for meeting growing energy needs, their implementation for personal home use in the near future is imminent. There are very few studies conducted on these small-scale turbines in the one to two meter diameter range because the power generated...
Proceedings Papers

Proc. ASME. IMECE2013, Volume 6B: Energy, V06BT07A083, November 15–21, 2013
Paper No: IMECE2013-64598
... In this research, optimization of a wind turbine airfoil is done by Genetic Algorithm (GA) as optimization method, coupled with CFD (Computational Fluid Dynamics) and Artificial Neural Network (ANN). A pressure-based implicit procedure is used to solve the Navier-Stokes equations...
Proceedings Papers

Proc. ASME. IMECE2013, Volume 5: Education and Globalization, V005T05A023, November 15–21, 2013
Paper No: IMECE2013-65893
... 1 Copyright © 2013 by ASME A 3D WIND TURBINE SIMULATOR FOR AERODYNAMICS EDUCATION John Moreland1, Steve Dubec1,2, Tyamo Okosun1,3, Xiuling Wang2, Chenn Zhou1,2 1Center for Innovation through Visualization and Simulation (CIVS) Purdue University Calumet, Hammond, IN 46323 2Department of Mechanical...
Proceedings Papers

Proc. ASME. IMECE2013, Volume 6B: Energy, V06BT07A079, November 15–21, 2013
Paper No: IMECE2013-63473
... DYNAMIC ANALYSIS OF A GEARLESS WIND TURBINE COUPLED TO A DFIG Grant A. Ericson* The University of North Carolina at Charlotte Charlotte, NC 28223, USA Dr. Nilabh Srivastava The University of North Carolina at Charlotte Charlotte, NC 28223, USA ABSTRACT Most modern wind turbines use power...
Proceedings Papers

Proc. ASME. IMECE2011, Volume 4: Energy Systems Analysis, Thermodynamics and Sustainability; Combustion Science and Engineering; Nanoengineering for Energy, Parts A and B, 1259-1266, November 11–17, 2011
Paper No: IMECE2011-65011
... 1 Copyright © 2011 by ASME Proceedings of the 2011 ASME International Mechanical Engineering Congress and Exposition IMECE 2011 November 11-17, 2011, Denver, Colorado, USA IMECE 2011-65011 ACTIVE GEARING SYSTEM FOR WIND TURBINES Daniel McMullan, Anh Dao, Daniel Brooking, J. Mark Weller, and M...
Proceedings Papers

Proc. ASME. IMECE2011, Volume 4: Energy Systems Analysis, Thermodynamics and Sustainability; Combustion Science and Engineering; Nanoengineering for Energy, Parts A and B, 1111-1117, November 11–17, 2011
Paper No: IMECE2011-62145
... Diffuser-augmented composite material wind turbine design using CFD Jifeng Wang, Janusz Piechna, Blake Gower, Norbert Müller Turbomachinery Laboratory, Department of Mechanical Engineering, Michigan State University 2500 Engineering Building, East Lansing, MI 48824-1226, USA ABSTRACT A novel...
Proceedings Papers

Proc. ASME. IMECE2010, Volume 5: Energy Systems Analysis, Thermodynamics and Sustainability; NanoEngineering for Energy; Engineering to Address Climate Change, Parts A and B, 1171-1182, November 12–18, 2010
Paper No: IMECE2010-39995
... Wind Powered Deflector (WPD) was coined to describe the devices discussed herein. wind power wind turbine wind velocity wind augmentation wind enhancement wind deflector wind powered deflector WPD wind tunnel test duct constrained flow unconstrained flow 1 Copyright © 2010 by ASME...