Artículos de revistas sobre el tema "Blade grid"
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Balalaiev, Anton, Kateryna Balalaieva, Maryna Pikul y Grygoriy Golembiyevskyy. "Власні частоти коливань композитної решітчастої дворядної лопатки вентилятора ТРДД". Aerospace Technic and Technology, n.º 4 (29 de agosto de 2024): 49–57. http://dx.doi.org/10.32620/aktt.2024.4.06.
Texto completoBohn, D. E. y N. Moritz. "Algebraic method for efficient adaption of structured grids to fluctuating geometries". Proceedings of the Institution of Mechanical Engineers, Part A: Journal of Power and Energy 219, n.º 4 (1 de junio de 2005): 303–14. http://dx.doi.org/10.1243/095765005x7619.
Texto completoProcházka, Pavel, Václav Uruba, Luděk Pešek y VÍtězslav Bula. "On the effect of moving blade grid on the flow field characteristics". EPJ Web of Conferences 180 (2018): 02086. http://dx.doi.org/10.1051/epjconf/201818002086.
Texto completoTuncer, I. H., S. Weber y W. Sanz. "Investigation of Periodic Boundary Conditions in Multipassage Cascade Flows Using Overset Grids". Journal of Turbomachinery 121, n.º 2 (1 de abril de 1999): 341–47. http://dx.doi.org/10.1115/1.2841320.
Texto completoZadeh, Saman Naghib, Matin Komeili y Marius Paraschivoiu. "MESH CONVERGENCE STUDY FOR 2-D STRAIGHT-BLADE VERTICAL AXIS WIND TURBINE SIMULATIONS AND ESTIMATION FOR 3-D SIMULATIONS". Transactions of the Canadian Society for Mechanical Engineering 38, n.º 4 (diciembre de 2014): 487–504. http://dx.doi.org/10.1139/tcsme-2014-0032.
Texto completoMarin, Ambroise, Emmanuel Denimal, Stéphane Guyot, Ludovic Journaux y Paul Molin. "A Robust Generic Method for Grid Detection in White Light Microscopy Malassez Blade Images in the Context of Cell Counting". Microscopy and Microanalysis 21, n.º 1 (16 de diciembre de 2014): 239–48. http://dx.doi.org/10.1017/s1431927614013671.
Texto completoAbdullah, Bestoon, Vadim Varsegov y Adolf Limansky. "CENTRIFUGAL COMPRESSOR HEAD CHARACTERISTIC OF A MICRO TURBOJET ENGINE BASED ON NUMERICAL SIMULATION". Perm National Research Polytechnic University Aerospace Engineering Bulletin, n.º 62 (2020): 5–11. http://dx.doi.org/10.15593/2224-9982/2020.62.01.
Texto completoVershkov, V. A., B. S. Kritsky y R. M. Mirgazov. "FEATURES OF MODELING THE FLOW AROUND THE HELICOPTER MAIN ROTOR TAKING INTO ACCOUNT ARBITRARY BLADES MOTION". Civil Aviation High TECHNOLOGIES 22, n.º 3 (29 de junio de 2019): 25–34. http://dx.doi.org/10.26467/2079-0619-2019-22-3-25-34.
Texto completoBahaghighat, Mahdi y Seyed Motamedi. "Vision inspection and monitoring of wind turbine farms in emerging smart grids". Facta universitatis - series: Electronics and Energetics 31, n.º 2 (2018): 287–301. http://dx.doi.org/10.2298/fuee1802287b.
Texto completoLi, Xue Feng, Xiu Quan Huang y Chao Liu. "Numerical Simulation Method for Fluid-Structure Interaction in Compressor Blades". Applied Mechanics and Materials 488-489 (enero de 2014): 914–17. http://dx.doi.org/10.4028/www.scientific.net/amm.488-489.914.
Texto completoXue, Dang Qin, De Yong Lv, Jia Xi Zhang y Shu Lin Hou. "The Optimization on Grid Division Methods of Blade Pump Blades Based on CFD". Applied Mechanics and Materials 635-637 (septiembre de 2014): 35–39. http://dx.doi.org/10.4028/www.scientific.net/amm.635-637.35.
Texto completoVershkov, V. A. "ALGORITHM OF MESH DEFORMATION FOR ACCOUNTING CYCLIC BLADE CONTROL AND BLADES FLAPPING IN THE PROBLEM OF HELICOPTER MAIN ROTOR MODELING". Civil Aviation High TECHNOLOGIES 22, n.º 2 (24 de abril de 2019): 62–74. http://dx.doi.org/10.26467/2079-0619-2019-22-2-62-74.
Texto completoYang, Wei Min, Wen Juan Bai, Min Min Du y Ti Kun Shan. "The Meshing of the Fan Blade of Scenery Tower Power Generation Device". Key Engineering Materials 561 (julio de 2013): 688–91. http://dx.doi.org/10.4028/www.scientific.net/kem.561.688.
Texto completoPopova, Diana, Denis Popov y Nikita Samoylenko. "INVESTIGATION OF THE GRID MODEL AND TURBULENCE MODEL PARAMETERS INFLUENCE ON QUALITY OF TURBINE ROTOR BLADE TIP CLEARANCE AREA AERODYNAMIC PROCESSES MODELING". Perm National Research Polytechnic University Aerospace Engineering Bulletin, n.º 66 (2021): 67–78. http://dx.doi.org/10.15593/2224-9982/2021.66.07.
Texto completo., Sutrisno, Setyawan Bekti Wibowo y Sigit Iswahyudi. "Numerical Research on the Vortex Center on the Forward-Swept 3-D Wind Turbine Blades at Low Rotational Speed". Modern Applied Science 12, n.º 12 (16 de noviembre de 2018): 80. http://dx.doi.org/10.5539/mas.v12n12p80.
Texto completoSHEVKUN, NIKOLAY A. "Heat recovery plant: ways to improve energy efficiency". Agricultural Engineering, n.º 6 (2023): 4–9. http://dx.doi.org/10.26897/2687-1149-2023-6-4-9.
Texto completoRoy, Lalit, Kellis Kincaid, Roohany Mahmud y David W. MacPhee. "Double-Multiple Streamtube Analysis of a Flexible Vertical Axis Wind Turbine". Fluids 6, n.º 3 (13 de marzo de 2021): 118. http://dx.doi.org/10.3390/fluids6030118.
Texto completoSun, Da-Gang, Jin-Jun Guo, Yong Song, Bi-juan Yan, Zhan-Long Li y Hong-Ning Zhang. "Flutter stability analysis of a perforated damping blade for large wind turbines". Journal of Sandwich Structures & Materials 21, n.º 3 (28 de abril de 2017): 973–89. http://dx.doi.org/10.1177/1099636217705290.
Texto completoReese, Hauke, Chisachi Kato y Thomas H. Carolus. "Large Eddy Simulation of Acoustical Sources in a Low Pressure Axial-Flow Fan Encountering Highly Turbulent Inflow". Journal of Fluids Engineering 129, n.º 3 (5 de octubre de 2006): 263–72. http://dx.doi.org/10.1115/1.2427077.
Texto completoChen, S. H., A. H. Eastland y E. D. Jackson. "Unsteady Aerodynamic Analysis of Subsonic Oscillating Cascade". Journal of Turbomachinery 116, n.º 3 (1 de julio de 1994): 501–12. http://dx.doi.org/10.1115/1.2929439.
Texto completoAbras, Jennifer N., C. Eric Lynch y Marilyn J. Smith. "Computational Fluid Dynamics–Computational Structural Dynamics Rotor Coupling Using an Unstructured Reynolds-Averaged Navier–Stokes Methodology". Journal of the American Helicopter Society 57, n.º 1 (1 de enero de 2012): 1–14. http://dx.doi.org/10.4050/jahs.57.012001.
Texto completoZhong, B. y N. Qin. "Non-inertial multiblock Navier-Stokes calculation for hovering rotor flowfields using relative velocity approach". Aeronautical Journal 105, n.º 1049 (julio de 2001): 379–89. http://dx.doi.org/10.1017/s000192400001229x.
Texto completoBALIKOĞLU, Fatih, Tayfur Kerem Demircioğlu y Ali IŞIKTAŞ. "Mechanical Properties Of Sandwich Composites Used For Aerofoil Shell Structures Of Wind Turbine Blade". ICONTECH INTERNATIONAL JOURNAL 5, n.º 1 (28 de marzo de 2021): 26–37. http://dx.doi.org/10.46291/icontechvol5iss1pp26-37.
Texto completoZhou, Weidong, Zhimei Zhao, T. S. Lee y S. H. Winoto. "Investigation of Flow Through Centrifugal Pump Impellers Using Computational Fluid Dynamics". International Journal of Rotating Machinery 9, n.º 1 (2003): 49–61. http://dx.doi.org/10.1155/s1023621x0300006x.
Texto completoBasson, A. y B. Lakshminarayana. "Numerical Simulation of Tip Clearance Effects in Turbomachinery". Journal of Turbomachinery 117, n.º 3 (1 de julio de 1995): 348–59. http://dx.doi.org/10.1115/1.2835668.
Texto completoAlhrshy, L. y C. Jauch. "A Resource-Efficient Design for a Flexible Hydraulic-Pneumatic Flywheel in Wind Turbine Blades". Journal of Physics: Conference Series 2265, n.º 3 (1 de mayo de 2022): 032018. http://dx.doi.org/10.1088/1742-6596/2265/3/032018.
Texto completoJamaluddin, Nur Syafiqah, Alper Celik, Kabilan Baskaran, Djamel Rezgui y Mahdi Azarpeyvand. "Experimental Analysis of Rotor Blade Noise in Edgewise Turbulence". Aerospace 10, n.º 6 (25 de mayo de 2023): 502. http://dx.doi.org/10.3390/aerospace10060502.
Texto completoClarke, Ryan W., Erik G. Rognerud, Allen Puente-Urbina, David Barnes, Paul Murdy, Michael L. McGraw, Jimmy M. Newkirk et al. "Manufacture and testing of biomass-derivable thermosets for wind blade recycling". Science 385, n.º 6711 (23 de agosto de 2024): 854–60. http://dx.doi.org/10.1126/science.adp5395.
Texto completoXu, Lianchen, Xiaohui Jin, Zhen Li, Wanquan Deng, Demin Liu y Xiaobing Liu. "Particle Image Velocimetry Test for the Inter-Blade Vortex in a Francis Turbine". Processes 9, n.º 11 (4 de noviembre de 2021): 1968. http://dx.doi.org/10.3390/pr9111968.
Texto completoZheng, M., L. Zhang, H. P. Teng, J. Hu y M. L. Hu. "Power efficiency of multi-blade drag typed VAWT by CFD simulation". International Review of Applied Sciences and Engineering 9, n.º 1 (junio de 2018): 25–29. http://dx.doi.org/10.1556/1848.2018.9.1.4.
Texto completoZhang, L. y J. C. Han. "Combined Effect of Free-Stream Turbulence and Unsteady Wake on Heat Transfer Coefficients From a Gas Turbine Blade". Journal of Heat Transfer 117, n.º 2 (1 de mayo de 1995): 296–302. http://dx.doi.org/10.1115/1.2822520.
Texto completoAllen, C. B. "CHIMERA volume grid generation within the EROS code". Proceedings of the Institution of Mechanical Engineers, Part G: Journal of Aerospace Engineering 214, n.º 3 (1 de marzo de 2000): 125–41. http://dx.doi.org/10.1243/0954410001531962.
Texto completoArnone, A. y R. C. Swanson. "A Navier–Stokes Solver for Turbomachinery Applications". Journal of Turbomachinery 115, n.º 2 (1 de abril de 1993): 305–13. http://dx.doi.org/10.1115/1.2929236.
Texto completoLi, Zheng, Wenda Zhang, Hao Dong y Yongsheng Tian. "Performance Analysis and Structure Optimization of a Nautilus Isometric Spiral Wind Turbine". Energies 13, n.º 1 (25 de diciembre de 2019): 120. http://dx.doi.org/10.3390/en13010120.
Texto completoDemeulenaere, A., O. Léonard y R. Van den Braembussche. "A two-dimensional Navier—Stokes inverse solver for compressor and turbine blade design". Proceedings of the Institution of Mechanical Engineers, Part A: Journal of Power and Energy 211, n.º 4 (1 de junio de 1997): 299–307. http://dx.doi.org/10.1243/0957650971537204.
Texto completoKulkarni, Siddharth Suhas, Craig Chapman, Hanifa Shah y David John Edwards. "A computational design method for bio-mimicked horizontal axis tidal turbines". International Journal of Building Pathology and Adaptation 36, n.º 2 (14 de mayo de 2018): 188–209. http://dx.doi.org/10.1108/ijbpa-06-2017-0029.
Texto completoShahsavari, A. y M. Nili-Ahmadabadi. "Investigation of an innovative non-free vortex aerodynamic procedure to design a single-stage transonic compressor". Proceedings of the Institution of Mechanical Engineers, Part G: Journal of Aerospace Engineering 232, n.º 11 (8 de junio de 2017): 2132–43. http://dx.doi.org/10.1177/0954410017710272.
Texto completoSun, Yan, Guohua Xu y Yongjie Shi. "Numerical Investigation of an Unsteady Blade Surface Blowing Method to Reduce Rotor Blade-Vortex Interaction Noise". International Journal of Aerospace Engineering 2022 (27 de agosto de 2022): 1–19. http://dx.doi.org/10.1155/2022/9647206.
Texto completoHenderson, Alan D., Gregory J. Walker y Jeremy D. Hughes. "The Influence of Turbulence on Wake Dispersion and Blade Row Interaction in an Axial Compressor". Journal of Turbomachinery 128, n.º 1 (1 de febrero de 2005): 150–57. http://dx.doi.org/10.1115/1.2098809.
Texto completoCong, Cong. "Decentralized control of vibrations in wind turbines using multiple active tuned mass dampers with stroke constraint". Advances in Mechanical Engineering 10, n.º 12 (diciembre de 2018): 168781401881675. http://dx.doi.org/10.1177/1687814018816756.
Texto completoHall, K. C. y C. B. Lorence. "Calculation of Three-Dimensional Unsteady Flows in Turbomachinery Using the Linearized Harmonic Euler Equations". Journal of Turbomachinery 115, n.º 4 (1 de octubre de 1993): 800–809. http://dx.doi.org/10.1115/1.2929318.
Texto completoYershov, Serhii V. y Viktor A. Yakovlev. "The Influence of Mesh Resolution on 3D RANS Flow Simulations in Turbomachinery Flow Parts". Journal of Mechanical Engineering 24, n.º 1 (30 de marzo de 2021): 13–27. http://dx.doi.org/10.15407/pmach2021.01.013.
Texto completoXiao, Zhongyun, Bin Mou, Xiong Jiang y Wei Han. "Computational Aeroelastic method for rotor based on MBDYN". International Journal of Modern Physics B 34, n.º 14n16 (1 de junio de 2020): 2040077. http://dx.doi.org/10.1142/s0217979220400779.
Texto completoEkkad, S. V., A. B. Mehendale, J. C. Han y C. P. Lee. "Combined Effect of Grid Turbulence and Unsteady Wake on Film Effectiveness and Heat Transfer Coefficient of a Gas Turbine Blade With Air and CO2 Film Injection". Journal of Turbomachinery 119, n.º 3 (1 de julio de 1997): 594–600. http://dx.doi.org/10.1115/1.2841163.
Texto completoAsim, Muhammad, Shoaib Muhammad, Muhammad Amjad, Muhammad Abdullah, M. A. Mujtaba, M. A. Kalam, Mohamed Mousa y Manzoore Elahi M. Soudagar. "Design and Parametric Optimization of the High-Speed Pico Waterwheel for Rural Electrification of Pakistan". Sustainability 14, n.º 11 (6 de junio de 2022): 6930. http://dx.doi.org/10.3390/su14116930.
Texto completoVerma, Shalini, Akshoy Ranjan Paul, Anuj Jain y Firoz Alam. "Numerical investigation of stall characteristics for winglet blade of a horizontal axis wind turbine". E3S Web of Conferences 321 (2021): 03004. http://dx.doi.org/10.1051/e3sconf/202132103004.
Texto completoJauch, Clemens. "Grid Services and Stress Reduction with a Flywheel in the Rotor of a Wind Turbine". Energies 14, n.º 9 (29 de abril de 2021): 2556. http://dx.doi.org/10.3390/en14092556.
Texto completoVahdati, M. y M. Imregun. "A Non-Linear Aeroelasticity Analysis of a Fan Blade Using Unstructured Dynamic Meshes". Proceedings of the Institution of Mechanical Engineers, Part C: Journal of Mechanical Engineering Science 210, n.º 6 (noviembre de 1996): 549–64. http://dx.doi.org/10.1243/pime_proc_1996_210_230_02.
Texto completoMadsen, Helge Aagaard, Torben Juul Larsen, Georg Raimund Pirrung, Ang Li y Frederik Zahle. "Implementation of the blade element momentum model on a polar grid and its aeroelastic load impact". Wind Energy Science 5, n.º 1 (2 de enero de 2020): 1–27. http://dx.doi.org/10.5194/wes-5-1-2020.
Texto completoCinnella, P., P. De Palma, G. Pascazio y M. Napolitano. "A Numerical Method for Turbomachinery Aeroelasticity". Journal of Turbomachinery 126, n.º 2 (1 de abril de 2004): 310–16. http://dx.doi.org/10.1115/1.1738122.
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