activity
20202024
most citedOn the morphodynamics of a wide class of large-scale meandering rivers: Insights gained by coupling LES with sediment-dynamics

31 citations · 33 across the 6 of their papers we have counts for

collaborators

6 papers

physics.flu-dyn2024★ 1 cited

Toward ultra-efficient high-fidelity prediction of bed morphodynamics of large-scale meandering rivers using a novel LES-trained machine learning approach

Zexia Zhang, Mehrshad Gholami Anjiraki, Hossein Seyedzadeh +2

Flood-induced deformation of the bed topography of fluvial meandering rivers could lead to river bank displacement, structural failure of the infrastructures, and the propagation o…

physics.flu-dyn2024

Toward ultra-efficient high fidelity predictions of wind turbine wakes: Augmenting the accuracy of engineering models via LES-trained machine learning

Christian Santoni, Dichang Zhang, Zexia Zhang +3

This study proposes a novel machine learning (ML) methodology for the efficient and cost-effective prediction of high-fidelity three-dimensional velocity fields in the wake of util…

physics.geo-ph2022★ 31 cited

On the morphodynamics of a wide class of large-scale meandering rivers: Insights gained by coupling LES with sediment-dynamics

Ali Khosronejad, Ajay B. Limaye, Zexia Zhang +3

In meandering rivers, interactions between flow, sediment transport, and bed topography affect diverse processes, including bedform development and channel migration. Predicting ho…

physics.flu-dyn2021

Prediction of three-dimensional flood-flow past bridge piers in a large-scale meandering river using convolutional neural networks

Zexia Zhang, Kevin Flora1, Seokkoo Kang +2

The prediction of statistical properties of turbulent flow in large-scale rivers is important for river flow analysis. Large-eddy simulations (LESs) provide a powerful tool for suc…

physics.flu-dyn2021★ 1 cited

Three-dimensional realizations of flood flow in large-scale rivers using the neural fuzzy-based machine-learning algorithm

Zexia Zhang, Ajay B. Limaye, Ali Khosronejad

Machine learning methods have been extensively used to study the dynamics of complex fluid flows. One such algorithm, known as adaptive neural fuzzy inference system (ANFIS), can g…

physics.flu-dyn2020

Fluid dynamics simulations show that facial masks can suppress the spread of COVID-19 in indoor environments

Ali Khosronejad, Christian Santoni, Kevin Flora +4

The Coronavirus disease outbreak of 2019 has been causing significant loss of life and unprecedented economical loss throughout the world. Social distancing and face masks are wide…