71 to 80 of 1,647 Results
May 28, 2025 - PN 6-4
Schäfer, Noel; Künzel, Sebastian; Tilli, Pascal; Munz-Körner, Tanja; Vidyapu, Sandeep; Vu, Ngoc Thang; Weiskopf, Daniel, 2025, "Extended Visual Analysis System for Scene-Graph-Based Visual Question Answering", https://doi.org/10.18419/DARUS-3909, DaRUS, V1
Source code of our extended visual analysis system to explore scene-graph-based visual question answering. This approach is built on top of the state-of-the-art GraphVQA framework which was trained on the GQA dataset. Additionally, it is an improved version of our system that can be found here Instructions on how to use our system can be found in t... |
Unknown - 2.7 MB -
MD5: dcfd845bd702ec32c9a1f535055851d4
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May 21, 2025 - Dissertation Janusch Töpler
Töpler, Janusch, 2025, "Source code for: generating scattering geometrical imperfections", https://doi.org/10.18419/DARUS-5060, DaRUS, V1
This repository contains the python code for the generation of realistically scattering bow and twist imperfections of softwood glulam timber beam-columns. The model was developed in the dissertation of Janusch Töpler. |
Python Source Code - 6.9 KB -
MD5: 8c3ffcbd807c11ce809a4a9fdf2a1311
A python script for generating scattering geometrical imperfections as described in the dissertation of Janusch Töpler. |
Python Source Code - 4.1 KB -
MD5: a0737f42ce03c8fabf670f88ed232468
A user function for scatter_geomImp.py for sampling according to different distribution functions. |
May 21, 2025 - Dissertation Janusch Töpler
Töpler, Janusch, 2025, "Source code for: geometrically and materially nonlinear numerical analysis of timber beam-columns with Abaqus/CAE (Abaqus_timber_beam-column)", https://doi.org/10.18419/DARUS-5059, DaRUS, V1
This repository contains the python input code for an automated geometrically and materially nonlinear numerical analysis of timber beam-columns with Abaqus/CAE. The structural system, geometry, imperfections, loading, and material can be varied. The Abaqus_timber_beam-column model was developed in the dissertation of Janusch Töpler. |
Python Source Code - 209.5 KB -
MD5: 17c376cf74962dddf8dc8ba033edd86a
Python input file for an automated geometrically and materially nonlinear numerical analysis of timber beam-columns with Abaqus/CAE. |
Plain Text - 700.2 KB -
MD5: b08c262c08ff8e9c00b76d7dd32d0e6c
Input data for Abaqus_timber_beam-column.py with scattering material parameters according to the KaReMo+. |
Plain Text - 3.6 KB -
MD5: 808e1d54ed84fbf7ba523d5ee8d45fe2
Input data for Abaqus_timber_beam-column.py with measured geometrical imperfections, see DIBt - ZP 52-5-13.194 (https://doi.org/10.18419/DARUS-3304). |
Plain Text - 91.4 KB -
MD5: 0914e56d536a0350287eef41fac0c834
Input data for Abaqus_timber_beam-column.py with scattering geometrical imperfections. |