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Gersena Banushi

Publications and source records attributed to Gersena Banushi.

2 recordsLinked to original sources

Dynamic analysis of free-free Timoshenko beams on elastic foundation under transverse transient ground deformation

Underground infrastructure such as pipelines and tunnels can be vulnerable to transient ground deformation (TGD) generated by earthquakes, traffic, and other vibration sources. Current design methods rely on simplified analytical models that idealize soil movement as a traveling sinusoidal wave, neglecting system inertia and relative soil-structure displacement. As shown in this study, such assumptions may be inadequate for large-diameter buried pipelines and tunnels, where accurate dynamic analysis under axial and transverse TGD is required. This paper introduces a new semi-analytical model for the dynamic response of buried Timoshenko beams on Winkler foundation subjected to transverse TGD. A closed-form solution of the governing differential equation shows that the vibration spectrum is divided into four parts, separated by three transition frequencies that depend on the system's mechanical and geometric properties. These transitions govern changes in modal behavior and significantly influence dynamic amplification. The model is verified through a case study of a buried 107 cm (42 in) steel water pipeline with varying lengths and operating conditions. Analytical predictions show excellent agreement with finite-element modal and dynamic analyses. Additional validation using high-resolution free-vibration measurements and multi-point shaking-table experiments further confirms the accuracy and robustness of the formulation. Frequency-response analysis highlights conditions under which dynamic amplification becomes significant, particularly when forcing frequencies approach the system's fundamental frequency, which may lie within the range of dominant seismic frequencies. The proposed methodology provides a rigorous analytical framework for understanding the key factors governing the dynamic behavior of buried beams under diverse sources of ground vibration.

math.NA

Transition Frequencies and Dynamic Amplification of Buried Lifelines: A Semi-Analytical Timoshenko Beam on Winkler Foundation Model

Underground lifelines, such as pipelines and tunnels, are susceptible to ground vibrations from seismic events, traffic, and other dynamic sources. Accurate prediction of their response is essential for ensuring structural safety and operability. This study introduces a semi-analytical model for transverse vibration analysis of buried lifelines, formulated using the Timoshenko beam theory on elastic foundation. The closed-form analytical solutions revealed that the vibration spectrum comprises four parts, separated by three transition frequencies. At each transition, the oscillatory characteristics of the modes change as a function of the system properties, leading to marked variations in dynamic amplification. The model's validity is confirmed through case studies of buried steel pipelines of varying lengths and operating conditions, showing excellent agreement with finite element simulations. A subsequent parametric study quantifies the influence of key factors - including soil stiffness and system length - on dynamic performance. The proposed method provides a computationally efficient and physically transparent framework for capturing complex vibration phenomena beyond simplified travelling-wave approaches, offering valuable guidance for the design and resilience assessment of underground lifeline systems subjected to various dynamic loads.

physics.class-ph