1167 research outputs found
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DNS data of the turbulent round jet flow at Re=3500
This item contains the mean flow, turbulent intensities, Reynolds stress, turbulent budgets and the probability density function of the axial velocity of a DNS of a spatially evolving turbulent round jet flow at a Reynolds number of 3500 based on the orifice diameter and the bulk velocity at the orifice.
References: C.T. Nguyen and M. Oberlack, Analysis of a turbulent round jet based on direct numerical simulation data at large box and high Reynolds number in Phys. Rev. Fluids, 2024
Systematic Task Exploration with LLMs: A Study in Citation Text Generation
The components of this dataset are used in the experiments of the paper "Systematic Task Exploration with LLMs: A Study in Citation Text Generation" published at main conference ACL 2024. Please see README.md for more information
Gearbox Condition Monitoring based on Angle Measurement using a Gear as Material Measure - Matlab Data
Matlab scripts that are used in the PhD by Yanik Koch. The main script is "DissEvaluation.mlx" that is used to calculate features, access other scripts, and create figures.
Further information can be found in the Git: https://git-ce.rwth-aachen.de/yanik.koch/dissertatio
Supplementary Material: Method for Data-Driven Automated Parameterization of Energy Flexibility Models of Production Systems
The repository contains additional materials for the Dissertation: "Lindner, Martin (2024): Method for Data-Driven Automated Parameterization of Energy Flexibility Models of Production Systems".
The files contain the raw data sets as well as the prototype implementation as python code.
No guarantee is given for the correctness and consistency with the data of the written version, but the data has been prepared to the best of my knowledge and with great care.Tes
Design Files Force Sensor for Versatile Single-Step Sensor-Integration in 3D-Printed Parts
The dataset contains design files for a 3D-printed force sensor for universal integration into 3D-printed parts. By importing the sensor geometry into any design software, it can be positioned within a part to measure bending. The design must be inserted into the target geometry so that the measuring grid points in the direction of the bending force. The accompanying text file provides tested parameters for use with a Raise3D Pro3 (Raise 3D Technologies, Santa Clara, CA, USA) printer and Protopasta Conductive PLA (Protoplant Inc., Vancouver, USA)
The impact of clustered, dynamic and stochastic estimated time of arrival forecasts on the pre-and post-haulage of intermodal transport - Problem instances
This data set contains the problem instances for the dynamic and stochastic Pick-up and Delivery Problem with Time Windows and clustered release dates (PDPTW-crd) from the working paper "The impact of clustered, dynamic and stochastic estimated time of arrival forecasts on the pre-and post-haulage of intermodal transport – a simulation study"
Assessing the Influence of Visual Cues in Virtual Reality on the Spatial Perception of Physical Thermal Stimuli
Scripts, Generated Output Files, Analysis of submission "10.1145/3613904.3642154"0.
Open Source Hardware: Wireless Inertial Motion Capture System
Project for building the wireless inertial motion capture system released by the Measurement and Sensor Technology Group at Technische Universität Darmstadt as open source hardware.
The system is based on a Raspberry Pi 4, or any compatible alternative host, as base station.
It offers a modular approach with a variable number of inertial measurement unit (IMU) modules.
The base station is required to provide a wireless access point for the ESP32-based IMU modules to connect to.
The modules stream their data via UDP to the host upon request.
The files for building the modules include electronics, housing, and the software.
Please find the full description in the corresponding publication, full instructions for usage in the README.md file.
This project is licensed as open source hardware under permissive licenses.
Hardware is licensed under CERN-OHL-P v2.
Software, except where otherwise noted, is licensed under Apache-2.0.
Documentation is licensed under CC BY 4.0.1.
Modeling Phase Separation in Grain-Fluid Mixture Flows by a Depth-Averaged Approach With Dilatancy Effects
This dataset contains the Fortran results data and MATLAB scripts for numerical results in the paper "Modeling Phase Separation in Grain-Fluid Mixture Flows by a Depth-Averaged Approach With Dilatancy Effects"Final versio
Videos of the Numerical Simulation of Single Drop Impingement onto Textured, Superheated Walls
Videos of the numerical simulation of single drop impingement onto textured, superheated walls. The videos show the following cases: regular arranged rectangular pillars with a close and far distance between the pillars, low and high pillars, narrow and wide pillars, large (256 microns) and small (64 microns) pillars as well as cases with a double drop volume on large pillars and with a half drop volume on small pillars. These cases are based on a reference surface decorated with pillars having an edge length of 128 microns. There are two additional cases (wide, low, close and narrow, high, far) simultaneously varying the pillar width, height, and distance to keep the surface area equal to the reference surface. Impact parameters such as initial drop diameter, impact velocity, and wall superheat are 1.14 mm, 0.54 m/s, and 9.8 K, respectively. Dimensionless numbers such as Reynolds, Weber, Bond, and Jakob numbers are 2230, 62.4, 0.6, and 0.13, respectively. For the reference case, there are additional cases with variations in the impact velocity (0 m/s, 0.135 m/s, and 0.27 m/s). The working fluid is perfluorohexane (FC-72) in a pure vapor atmosphere of the same fluid at ambient pressure. The simulations are carried out in OpenFOAM