Optimization of the structural performance of buried reinforced concrete pipelines in cohesionless soils

O Alshboul, G Almasabha, A Shehadeh… - Materials, 2022 - mdpi.com
Pipelines are widely used to transport water, wastewater, and energy products. However,
the recently published American Society of Civil Engineers report revealed that the USA …

[HTML][HTML] Global vibration control of offshore wind turbines with a flexible monopile foundation using a pendulum-tuned mass damper: Risk mitigation and performance …

GB Colherinhas, MVG de Morais, F Petrini - Ocean Engineering, 2024 - Elsevier
This study investigates an optimized design approach for a passive-adaptive pendulum-
tuned mass damper (PTMD). The PTMD is used to mitigate structural vibrations in offshore …

Seismic response prediction of RC bridge piers through stacked long short-term memory network

O Yazdanpanah, M Chang, M Park, CY Kim - Structures, 2022 - Elsevier
This paper aims at addressing the prediction of the displacement time histories and
subsequently hysteresis curves of reinforced concrete bridge piers using a real-time hybrid …

Data generation framework for inverse modeling of nonlinear systems in structural dynamics applications

P Milicevic, O Altay - Acta Mechanica, 2024 - Springer
In structural dynamics, response modeling relies on parameters, which are to be identified
by experiments. However, for satisfactory results, the design of such experiments is …

Structural performance of buried reinforced concrete pipelines under deep embankment soil

G Almasabha, A Shehadeh, O Alshboul… - Construction …, 2023 - emerald.com
Purpose Buried pipelines under various soil embankment heights are cost-effective
alternatives to transporting liquid products. This paper aims to assist pipeline architects and …

[HTML][HTML] Optimal Design Formula for Tuned Mass Damper Based on an Analytical Solution of Interaction between Soil and Structure with Rigid Foundation Subjected …

L Jin, B Li, S Lin, G Li - Buildings, 2023 - mdpi.com
The tuned mass damper (TMD) is widely used for vibration mitigation, especially in high-rise
buildings where significant soil-structure interaction (SSI) effects are usually involved. This …

A semi-active toroidal TLCD for multidirectional vibration reduction of structures

J Zhang, H Ding, JT Wang - Smart Materials and Structures, 2022 - iopscience.iop.org
The toroidal tuned liquid column damper (TTLCD) is a recently developed device to mitigate
multidirectional vibrations of structures. In this paper, a semi-active TTLCD (S-TTLCD) …

Resilient seismic design of reinforced concrete framed buildings with metallic fuses including soil-structure interaction effects

A Tena-Colunga… - Soil Dynamics and …, 2023 - Elsevier
In this paper, the authors propose and validate a code-oriented, resilient design
methodology for reinforced concrete buildings with intermediate moment frames (RC-IMFs) …

Discussion on the accuracy of methods for determining interface force between numerical and physical substructures in shaking table-based real-time hybrid …

H Ding, JT Wang, J Zhang - Mechanical Systems and Signal Processing, 2025 - Elsevier
Real-time hybrid simulation (RTHS) is a developing experimental technology that combines
the advantages of numerical simulation and physical test. In RTHS, the interface force is a …

Multiscale fluid–structure coupled real-time hybrid simulation of monopile wind turbines with vibration control devices

H Ding, Z Zhang, J Wang, J Zhang, O Altay - Mechanical Systems and …, 2024 - Elsevier
Real-time hybrid simulation (RTHS) technique is an emerging method for investigating the
structural dynamic behavior. This technique combines the advantages of numerical …