New Dynamic Subgrid-Scale Heat Flux Models for Large-Eddy Simulation of Therman Convection based on the General Gradient Diffusion Hypothesis
I will be using this book for:

New Dynamic Subgrid-Scale Heat Flux Models for Large-Eddy Simulation of Therman Convection based on the General Gradient Diffusion Hypothesis

by J. Bergstrom

Engineering Physics Computational Modeling
1 Star 2 Star 3 Star 4 Star 5 Star
0.0 out of 5 stars (0 ratings)

Explore new dynamic subgrid-scale heat flux models for large-eddy simulation of thermal convection, rooted in the general gradient diffusion hypothesis. This work by J. Bergstrom enhances simulation accuracy for thermal flows, offering insights into adaptive modeling for fluid dynamics research and applications.

About This Book

This book presents innovative dynamic subgrid-scale heat flux models designed specifically for large-eddy simulation of thermal convection. The models are based on the general gradient diffusion hypothesis, providing a robust framework for simulating complex thermal flows.

Authored by J. Bergstrom, the content focuses on enhancing the accuracy of large-eddy simulations in capturing subgrid-scale phenomena in thermal convection scenarios. It explores the theoretical underpinnings and practical implementation of these models within computational fluid dynamics.

The approach integrates dynamic modeling techniques to adaptively adjust subgrid-scale parameters, improving the reliability of simulations for engineering and scientific applications involving heat transfer.

Readers will find detailed discussions on the hypothesis-driven development, making it a valuable resource for researchers in fluid mechanics and related fields.

Reviews

No reviews yet. Be the first to review this book!


Write a Review
I will be using this book for: