Deformation of a Structural Frame of a Racing Kart Colliding against a Rigid Wall (doi:10.18419/darus-1150)

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Part 2: Study Description
Part 5: Other Study-Related Materials
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Document Description

Citation

Title:

Deformation of a Structural Frame of a Racing Kart Colliding against a Rigid Wall

Identification Number:

doi:10.18419/darus-1150

Distributor:

DaRUS

Date of Distribution:

2020-12-02

Version:

1

Bibliographic Citation:

Kneifl, Jonas; Fehr, Jörg, 2020, "Deformation of a Structural Frame of a Racing Kart Colliding against a Rigid Wall", https://doi.org/10.18419/darus-1150, DaRUS, V1

Study Description

Citation

Title:

Deformation of a Structural Frame of a Racing Kart Colliding against a Rigid Wall

Identification Number:

doi:10.18419/darus-1150

Authoring Entity:

Kneifl, Jonas (Universität Stuttgart)

Fehr, Jörg (Universität Stuttgart)

Grant Number:

EXC 2075 - 390740016

Distributor:

DaRUS

Access Authority:

Kneifl, Jonas

Access Authority:

Fehr, Jörg

Depositor:

Kneifl, Jonas

Date of Deposit:

2020-11-12

Holdings Information:

https://doi.org/10.18419/darus-1150

Study Scope

Keywords:

Engineering, Crash Simulation, Explicit Structural Dynamics, Kart Frame, Model Reduction

Abstract:

<b>Racing Kart Frame Model</b> <br> This data set contains a finite element model for the commercial simulation software LS-DYNA, obtained simulation results and videos of comparing them to results obtained by surrogate models. <br><br> <b>Content</b> <br> <ol> <li>Model<br> * input files for the FE simulation software LS-DYNA containing the model description<br></li> <li>Simulation_Data<br> * simulation results containing the node displacements, velocities, and accelerations as well as external forces. The units are [N,m,s].<br></li> <li>Videos<br> * simulation results as described in the research paper.<br></li> </ol>

Kind of Data:

simulation model

Kind of Data:

simulation data

Kind of Data:

video results

Methodology and Processing

Sources Statement

Origins of Sources:

Computer-based Experience

Data Access

Other Study Description Materials

Related Publications

Citation

Title:

Jonas Kneifl, Dennis Grunert, and Joerg Fehr (2021). A non-intrusive nonlinear model reduction method for structural dynamical problems based on machine learning. In: International Journal for Numerical Methods in Engineering, 122:4774-4786

Identification Number:

10.1002/nme.6712

Bibliographic Citation:

Jonas Kneifl, Dennis Grunert, and Joerg Fehr (2021). A non-intrusive nonlinear model reduction method for structural dynamical problems based on machine learning. In: International Journal for Numerical Methods in Engineering, 122:4774-4786

Other Study-Related Materials

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AUTHORS.txt

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LICENSE.txt

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text/plain

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README.md

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text/markdown

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REQUIREMENTS.txt

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text/plain

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GEOMETRY.key

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application/x-iwork-keynote-sffkey

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kart.key

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application/x-iwork-keynote-sffkey

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kart_explicit.key

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application/x-iwork-keynote-sffkey

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Makefile

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text/plain

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PARAMETERS.key

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application/x-iwork-keynote-sffkey

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readme.md

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text/markdown

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REPORTING.key

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application/x-iwork-keynote-sffkey

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Wall.key

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application/x-iwork-keynote-sffkey

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ExplicitSolver.key

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application/octet-stream

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racing_kart_crash_simulations.hdf5

Text:

This file contains simulation data of 20 simulations runs. It contains time data, nodal displacements, velocities, accelerations and external forces, as well as the parameter sets. The varied parameter is the impact speed with which the kart frame hits the rigid wall.

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application/x-hdf5

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mode_1.mp4

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video/mp4

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mode_10.mp4

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video/mp4

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mode_2.mp4

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video/mp4

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mode_3.mp4

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video/mp4

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mode_4.mp4

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video/mp4

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mode_5.mp4

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video/mp4

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mode_6.mp4

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video/mp4

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mode_7.mp4

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video/mp4

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mode_8.mp4

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video/mp4

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mode_9.mp4

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video/mp4

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GPR.mp4

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video/mp4

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GRNN.mp4

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video/mp4

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kNN.mp4

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video/mp4

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linReg.mp4

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video/mp4