- Research Article
- 10.1016/j.patcog.2026.113335
Learning domain-agnostic spatial-angular feature for light field image super-resolution
- Sep 01, 2026
- Pattern Recognition
- Wang Xia + 3 more +3
Publications from 2021 to 2026
Showing 10 of 10,070 papers
Learning domain-agnostic spatial-angular feature for light field image super-resolution
Encapsulating asymmetrically coordinated Co single-atoms and clusters in millimetric ZSM-5 for short-pathway Fenton-like catalysis
Coordinator: Semantic-coordinated dynamic fusion for multi-view clustering
Corrigendum to “Amorphous LaAlO3-derived electrolyte: Harnessing structural disorder for high proton conductivity in LT-CFC electrolytes” [Fuel 412 (2025) 138022
A hybrid GPR–Transformer framework for uncertainty-aware stratigraphic profiling driven by multi-source geotechnical databases
Estimation of unmeasurable states in an MRI-safe pneumatic motor enabling torque-based servo control
Erosion resistance of basalt fiber-aeolian sand concrete under wind-sand erosion: Experimental analysis and mechanisms
Comparative analysis of the shear response of RC beams strengthened with externally applied and near-surface mounted timber plates
This research experimentally and numerically investigates the feasibility of using low-cost timber plates to enhance the shear behavior of reinforced concrete (RC) beams. Seven simply supported beams with a shear span-to-depth ratio (a/d) of 1.8 were tested under three-point bending, including one control specimen and six strengthened beams. Two strengthening techniques, externally bonded (EB) and near-surface mounted (NSM), were examined using three attachment methods: epoxy only, 10 mm diameter anchor bolts only, and a combination of both. A 3D finite element model (FEM) was developed in ABAQUS V2017 to evaluate the influence of increasing the a/d ratio from 1.8 to 3.1 on the ultimate load, stiffness, and toughness of the strengthened beams. results showed that timber plates, regardless of the strengthening technique, effectively restricted the propagation of the main shear crack and diverted it into multiple secondary cracks. Externally bonded specimens achieved higher ultimate loads than NSM specimens due to the absence of groove-induced reductions in the concrete section. The use of anchor bolts, either alone or in combination with epoxy, prevented debonding and produced the highest ultimate loads, reaching 91 kN and 92 kN, respectively, representing increases of 21.3 % and 22.7 % over the control beam. Both attachment methods also exhibited stiffness improvements of 10.8 % compared to the control beam. Numerical analysis indicated that increasing the a/d ratio from 1.8 to 3.1 led to reductions in stiffness of 43 %-47 %, ultimate load of 18 %-30 %, and toughness of 7 %-30 %. • The shear behavior of RC beams strengthened with timber plates was investigated. • Two strengthening techniques were considered: external strengthening and NSM technique. • Three different attaching methods were used: epoxy alone, anchor bolts alone, or a combination of both. • A Finite element model was developed to examine the effect of the shear span-to-depth ratio. • Using anchor bolts alone or in combination with epoxy exhibited the highest ultimate load.
Read moreSynergistic valorization of sewage sludge and lignin-rich lignocellulose via activated carbon-mediated Co-HTC: Enhancing hydrochar quality and its pyrolysis performance
Fiber-array beamforming and modulation scheme with hybrid switching techniques for U2G-free space optical communication