Showing 601 - 620 results of 679 for search '"fluid dynamics"', query time: 0.06s Refine Results
  1. 601

    Machine learning-driven analysis of heat transfer in chemically reactive fluid flow considering Soret-Dufour effects by Shazia Habib, Saleem Nasir, Zeeshan Khan, Abdallah S. Berrouk, Waseem, Saeed Islam

    Published 2025-01-01
    “…Methodology: It employs a sophisticated Gaussian Neural Network and Hybrid Cuckoo Search to mimic complex fluid dynamics accurately, ensuring efficient computation and solution precision. …”
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    Article
  2. 602

    Magnetohydrodynamic Peristaltic Propulsion of Casson Nanofluids With Slip Effects Over Heterogeneous Rough Channel by Hanumesh Vaidya, Fateh Mebarek‐Oudina, Rakesh Kumar, C. Rajashekhar, Kerehalli Vinayaka Prasad, Sangeeta Kalal, Kottakkaran Sooppy Nisar

    Published 2025-01-01
    “…Modeling surface roughness adds a new dimension for examining fluid dynamics, which is essential for understanding phenomena like drag force, heat transfer, and mass transfer. …”
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  3. 603

    Super Typhoons Simulation: A Comparison of WRF and Empirical Parameterized Models for High Wind Speeds by Haihua Fu, Yan Wang, Yanshuang Xie, Chenghan Luo, Shaoping Shang, Zhigang He, Guomei Wei

    Published 2025-01-01
    “…Current typhoon modeling primarily falls into two categories: (1) complex simulations based on fluid dynamics and thermodynamics, and (2) empirical parameterized models. …”
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  4. 604
  5. 605

    A Novel Version of HPM Coupled with the PSEM Method for Solving the Blasius Problem by Uriel Filobello-Nino, Hector Vazquez-Leal, Jesus Huerta-Chua, Victor Manuel Jimenez-Fernandez, Mario Alberto Sandoval-Hernandez, Enrique Delgado-Alvarado, Victor Manuel Tlapa-Carrera

    Published 2021-01-01
    “…This work studies the nonlinear differential equation that models the Blasius problem (BP) which is of great importance in fluid dynamics. The aim is to obtain an approximate analytical expression that adequately describes the phenomenon considered. …”
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  6. 606

    Optimal Revascularization Strategy on Medina 0,1,0 Left Main Bifurcation Lesions in Type 2 Diabetes by Xuwei Zheng, Hongyu Peng, Donghui Zhao, Qin Ma, Kun Fu, Guo Chen, Qian Fan, Jinghua Liu

    Published 2016-01-01
    “…We use idealized left main bifurcation models and computational fluid dynamics analysis to evaluate hemodynamic parameters which are known to affect the risk of restenosis and thrombosis at stented bifurcation. …”
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  7. 607

    3D modelling and simulation of thermal effects and dispersion of particles carrying infectious respiratory agents in a railway transport coach by Patrick Armand, Jérémie Tâche

    Published 2025-01-01
    “…In the first part of our research, we used Computational Fluid Dynamics (CFD) to model and simulate in 3D the transport and dispersion of particles from 1 µm to 1 mm in the turbulent flow generated by the ventilation of the railway coach. …”
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    Article
  8. 608

    Engineered testbeds for investigating syringe injection performance in human factors studies by Andrew Pack, Sabrina Su, Frank A. Drews, Amrish Chourasia, Kevin Cluff, Joy Guerrieri, Jungkyu Kim

    Published 2025-06-01
    “…This unexpected pattern likely resulted from complex fluid dynamics in the 27-gauge needle. Testing of both systems confirmed that fluidic resistance control through viscosity and resistance effectively captured injection profiles. …”
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    Article
  9. 609

    Modelling for deriving management plan for production and environment of marine fish cage farm by Woo Sung Jung, Sok Jin Hong, Sang Pil Yoon, Dae In Lee, Won Chan Lee, Dong Myung Kim

    Published 2024-12-01
    “…The hydrodynamic model utilized Environmental Fluid Dynamics Code. The fish growth model was developed specifically for this study’s purpose. …”
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    Article
  10. 610

    Perturbations in Microbial Communities at Hydrothermal Vents of Panarea Island (Aeolian Islands, Italy) by Annamaria Gallo, Fabio Sposito, Manfredi Longo, Gianluca Lazzaro, Cinzia Giuseppina Caruso, Sabina Morici, Sergio Scirè Scappuzzo, Slobodanka Radovic, Valeria Villanova, Luca Vecchioni, Marco Arculeo, Rosa Alduina

    Published 2025-01-01
    “…Our results demonstrated that the chemical–physical variations within this hydrothermal vent, such as temperature fluctuations, mineral content, and hydrothermal fluid dynamics, play a role in shaping the structure and diversity of microbial communities. …”
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  11. 611

    Nacre-mimetic alternating architecture of AgSnO2 contact: Highly-efficient synergistic enhancement of in-situ self-repairing erosion resistance and naturally evolving impact resis... by Changhu Xu, Kai Wen, Zhe Wang, Jun Wang, Hailin Lu, Zesen Mao, Tianci Mao, Chongqing Fan, Jun Li

    Published 2025-01-01
    “…The mechanistic link between microstructural evolution and dynamic erosion is studied through experiments combined with Computational Fluid Dynamics (CFD) and Finite Element Method (FEM) simulations. …”
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    Article
  12. 612

    MHD effect on peristaltic motion of Williamson fluid via porous channel with suction and injection by K. Chakradhar, K. Nandagopal, Vishnudasu Prashanthi, A. Parandhama, T. Somaiah, B.V. Sai Thrinath, Nainaru Tarakaramu, Ghulam Rasool, Dilsora Abduvalieva

    Published 2025-03-01
    “…The objective is to analyze how peristaltic motion affects heat transfer efficiency in such systems. The fluid dynamics are modeled under the assumptions of long wavelengths and small Reynolds numbers. …”
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  13. 613
  14. 614

    Gemelos digitales pulmonares by Ana Fernández-Tena, Carlos Arnedo, Guillaume Houzeaux, Beatriz Eguzkitza

    Published 2024-10-01
    “…DTs integrate clinical data, high-resolution images, and mathematical models to simulate respiratory mechanics, gas diffusion, and fluid dynamics in real time. This technology improves diagnosis, treatment planning, and disease progression monitoring. …”
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  15. 615

    Modeling of Blood Flow Dynamics in Rat Somatosensory Cortex by Stéphanie Battini, Nicola Cantarutti, Christos Kotsalos, Yann Roussel, Alessandro Cattabiani, Alexis Arnaudon, Cyrille Favreau, Stefano Antonel, Henry Markram, Daniel Keller

    Published 2024-12-01
    “…We developed a framework with three key components: coupling between the vasculature and synthesized astrocytic morphologies, a fluid dynamics model to compute flow in each vascular segment, and a stochastic process replicating the effect of astrocytic endfeet on vessel radii. …”
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  16. 616

    Experimental and numerical studies on thermal behavior and performance assessment of Al2O3/H2O nanofluids in microchannels for cooling solutions by An-Shik Yang, Yen-Ren Liao, Zhengtong Li, Chih-Yung Wen, Yee-Ting Lee

    Published 2025-01-01
    “…Theoretically, the computational fluid dynamics (CFD) simulations are performed using the three-dimensional (3D) single-phase and mixture models to determine the velocity, temperature and nanoparticle concentration distributions. …”
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    Article
  17. 617

    Comparison of Crushed-Zone Skin Factor for Cased and Perforated Wells Calculated with and without including a Tip-Crushed Zone Effect by Ekhwaiter Abobaker, Abadelhalim Elsanoose, Faisal Khan, Mohammad Azizur Rahman, Amer Aborig, Stephen Butt

    Published 2021-01-01
    “…The experimental test was carried out using a geotechnical radial flow set-up to measure the differential pressure in the perforation tunnel with a crushed zone. Computational fluid dynamics (CFD) software was used for simulating pressure gradient in a cylindrical perforation tunnel. …”
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  18. 618
  19. 619

    Numerical analysis of shell and tube heat exchanger with combination of different baffles by Muhammad Waleed, Syed Murawat Abbas Naqvi, Hammad Mustafa, Mohammed K. Al Mesfer, Mohd Danish, Kashif Irshad, Hasan Shahzad

    Published 2025-01-01
    “…The numerical study is based on computational fluid dynamics (CFD) to run and investigate 3-D turbulent flow in the STHXs and the thermal performances of two unique combinations of baffles. …”
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  20. 620

    Dataset of microscale atmospheric flow and pollutant concentration large-eddy simulations for varying mesoscale meteorological forcing in an idealized urban environmentZenodo by Eliott Lumet, Thomas Jaravel, Mélanie C. Rochoux

    Published 2025-02-01
    “…Assessing these risks requires the development of microscale meteorological models that quickly and accurately predict wind velocity and pollutant concentration with high resolution, as the heterogeneity of urban environments leads to complex wind patterns and strong pollutant concentration gradients. Computational Fluid Dynamics (CFD) has emerged as a powerful tool to address this challenge by providing obstacle-resolved flow and dispersion predictions. …”
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