18 papers · ranked by Valyu relevance
Enrico Garaldi, Rahul Kannan, Aaron Smith, Josh Borrow + 12 more
'Mark Vogelsberger' 'Rüdiger Pakmor' 'Volker Springel' 'Lars Hernquist' 'Daniela Galárraga-Espinosa' 'Jessica Y. -C. Yeh' 'Xuejian Shen' 'Clara Xu' 'Meredith Neyer' 'Benedetta Spina' 'Mouza Almualla' 'Yu Zhao'] Enrico Garaldi 1,2★, Rahul Kannan 3 , Aaron Smith 4 , Josh Borrow 5 , Mark Vogelsberger 5,6 , Rüdiger Pakmor…
Kenenbek Arzymatov, Andrey Sapronov, Vladislav Belavin, Leonid Gremyachikh + 5 more
'Leonid Gremyachikh' 'Maksim Karpov' 'Andrey Ustyuzhanin' 'Ivan Tchoub' 'Artem Ikoev' 'Gang Mei'] We introduce SANgo (Storage Area Network in the Go language)-a Go-based package for simulating the behavior of modern storage infrastructure. The software is based on the discrete-event modeling paradigm and captures the…
Khovesh A. Ramdin, Markus Hackl, Shishir P. S. Chundawat
The analysis of particles bound to a surface by flexible tethers can facilitate understanding of various biophysical phenomena (e.g., molecular dynamics of DNA-protein or protein-ligand binding interactions, DNA extensibility and polymer biophysics). Being able to model such systems theoretically can aid in…
Sudarshan Tiwari, Axel Klar
Based on the continuum model for granular media developed in Dunatunga et al. we propose a mesh-free generalized finite difference method for the simulation of granular flows. The model is given by an elasto-viscoplastic model with a yield criterion using the µ(I) rheology from Jop et al. The numerical procedure is…
Erickson Fajiculay, Chao-Ping Hsu
Modeling biochemical systems can provide insights into behaviors that are difficult to observe or understand. It requires software, programming, and understanding of the system to build a model and study it. Softwares exist for systems biology modeling, but most support only certain types of modeling tasks. Desirable…
Ehsan Izadi, Adam Bezuijen, Francesco Portioli
This study focuses on the possible uses of physics engines, and more specifically the Bullet physics library, to simulate granular systems. Physics engines are employed extensively in the video gaming, animation and movie industries to create physically plausible scenes. They are designed to deliver a fast, stable, and…
Authors not listed
Electrochemiluminescence (ECL) is a vital analytical technique widely used in immunosensing and emerging applica-tions in biological imaging. Traditional ECL simulations rely on finite element methods, which provide valuable insights into reaction dynamics and spatial distribution of species. However, such methods are…
A. Sommer, Ulrich Schwanecke, Elmar Schoemer
We introduce a particle-based simulation method for granular material in interactive frame rates. We divide the simulation into two decoupled steps. In the first step, a relatively small number of particles is accurately simulated with a constraint-based method. Here, all collisions and the resulting friction between…
Harold Fellermann, Ben Shirt-Ediss, Jerzy W. Koryza, Matthew Linsley + 2 more
Our PCR Simulator is a web-based application designed to introduce concepts of multi-factorial experimental design and support teaching of the polymerase chain reaction. Learners select experimental settings and receive results of their simulated reactions quickly, allowing rapid iteration between data generation and…
Alexander P. Hawkins, Amy E. Edmeades, Christopher D.M. Hutchison, Mike Towrie + 3 more
Combining pulsed laser heating and time-resolved infrared (TR-IR) absorption spectroscopy provides a means of initiating and studying thermally activated chemical reactions and diffusion processes in heterogeneous catalysts on timescales from nanoseconds to seconds. To this end, we investigated single pulse and burst…
Mikito Furuichi, Daisuke Nishiura, Osamu Kuwano, Arthur Bauville + 2 more
'Takane Hori' 'Hide Sakaguchi'] The stress states in accretionary prisms are important for understanding the building and releasing of seismic energy. Numerous researchers have conducted sandbox experiments as a scaled physical analog model to understand the formation of accretionary prisms. However, measuring stress…
Koki Ide, Tetsuro Tsuji, Takayuki Suzuki, Kenji Setoura
Microscale thermophoresis (MST) has garnered significant attention as a manipulation method for chemical species ranging from nanometers to micrometers in liquids. Despite the substantial increase in experimental reports on MST, a comprehensive theoretical model remains elusive due to its intricate mechanism.…
Andreas Ruscheinski, Anja Wolpers, Philipp Henning, Pia Wilsdorf + 1 more
Improving interpretability and reusability has become paramount for modeling and simulation studies. Provenance, which encompasses information about the entities, activities, and agents involved in producing a model, experiment, or data, is pivotal in achieving this goal. However, capturing provenance in simulation…
Viviana Lorena Vargas, Sinésio Pesco
A new approach to model turbidite channels using training images is presented, it is called skeleton based simulation. This is an object based model that uses some elements of multipoint geostatistics. The main idea is to simplify the representation of the training image by a one-dimensional object called training…
Authors not listed
In this article, we report a computational modeling study to enhance the understanding of the solvent-free extrusion process employed to produce filaments for the 3D printing of lithium-ion battery electrodes. Our study is supported by a newly developed dynamic 3D-resolved numerical model capable of simulating the…
Mohamed Amine Benmebarek, Majid Movahedi Rad, Zhidong Zhang, Bingbing Guo
'Bingbing Guo'] This paper deals with the micro and macro behaviors of coarse sand inside a direct shear box during a geotechnical test. A 3D discrete element method (DEM) model of the direct shear of sand was performed using sphere particles to explore the ability of the rolling resistance linear contact model to…
Aaron Finney, Matteo Salvalaglio
Nucleation is the initial step towards the formation of crystalline materials from solutions. Various factors, such as environmental conditions, composition, and external fields, can influence its outcomes and rates. Indeed, controlling this rate-determining step towards phase separation can affect the resulting…
B. Nachman, T. Peltola, P. Asenov, M. Bomben + 8 more
'F. Moscatelli' 'E.A. Narayanan' 'F.R. Palomo' 'D. Passeri' 'S. Seidel' 'X. Shi' 'Jory Sonneveld'] Abstract: Silicon radiation detectors are an integral component of current and planned collider experiments in high energy physics. Simulations of these detectors are essential for deciding operational configurations, for…