Shear strength of light weight concrete elements model based on deep neural network and COVID-19 optimization.

Publication date: May 19, 2026

Predicting the shear strength of concrete elements is a complex challenge influenced by numerous factors, with the type of concrete playing a decisive role in structural performance. Lightweight concrete, offering a superior strength-to-weight ratio and improved thermal properties compared to conventional weight concrete, has gained increasing adoption in structural applications. This study proposes a deep neural network (DNN) model optimized using the COVID-19 optimization algorithm to predict the shear strength of lightweight concrete elements. The optimization process determines the optimal initial weights and biases of the DNN, enhancing convergence and accuracy. The proposed model was evaluated against three international design codes-ACI, EC2, and JSCE-using experimental datasets. Results show that the COVID-19-optimized DNN closely simulates and tracks actual shear strength values, even in highly nonlinear data regions (e. g., samples 90-120), where traditional models produce larger deviations. Quantitatively, the proposed DNN achieved the lowest average error (0. 692) compared to the higher errors from ACI, EC2, and JSCE models. These findings demonstrate the model’s superior predictive capability and its potential to enhance design accuracy for lightweight concrete structures.

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Concepts Keywords
Concrete Algorithms
Covid Construction Materials
International COVID-19
Predictive COVID-19 optimization
Deep neural network
Humans
Neural Networks, Computer
SARS-CoV-2
Shear Strength
Shear strength

Semantics

Type Source Name
disease MESH COVID-19
drug DRUGBANK Coenzyme M
disease MESH image
disease MESH CAP
drug DRUGBANK Aspartame
drug DRUGBANK Elm
drug DRUGBANK Tricyclazole
drug DRUGBANK Flunarizine
disease MESH face
drug DRUGBANK Methionine
disease MESH death
disease MESH reinfection
disease MESH infection
drug DRUGBANK Pentaerythritol tetranitrate
disease MESH MAE
drug DRUGBANK Phenindione
drug DRUGBANK Isosorbide Mononitrate
drug DRUGBANK Nonoxynol-9
pathway REACTOME Reproduction
disease MESH included

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