dr hab. inż. arch. Jan Kozicki | Gdańsk University of Technology

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dr hab. inż. arch. Jan Kozicki

Contact:

email:
jkozicki@pg.edu.pl
website:
https://mostwiedzy.pl/jan-kozicki,19725-1

Positions:

Associate professor

workplace:
Instytut Fizyki i Informatyki Stosowanej
Gmach B, 413
phone:
58 348-61-34
dr hab. inż. arch. Jan Kozicki

Publications:

  1. Publication

    - POWDER TECHNOLOGY - Year 2024

    We introduce the first extension of a Lattice Gas Automaton (LGA) model to accurately replicate observed emergent phenomena in granular materials with a special focus on previously unexplored jamming transitions by incorporating gravitational effects, energy dissipation in particle collisions, and wall friction. We successfully reproduce flow rate evolution, density wave formation, and jamming transition observed in experiments....

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  2. Publication

    - Year 2024

    Zachowanie niespójnych ciał ziarnistych opisano metodą elementów dyskretnych (DEM) w warunkach quasi-statycznych dwu- i trójwymiarowych. Do symulacji nieregularnego kształtu granulatu wykorzystano kule z momentami kontaktowymi lub skupiska sztywnych kul. Początkowo badano dwa różne problemy dla zagęszczonego materiału ziarnistego: pasywne przemieszczanie ściany oporowej i ściskanie w płaskim stanie odkształceń pod stałym ciśnieniem...

  3. Publication
    • V. Angelidakis
    • K. Boschi
    • K. Brzeziński
    • R. Caulk
    • B. Chareyre
    • C. A. del Valle
    • J. Duriez
    • A. Gladky
    • D. L. van der Haven
    • J. Kozicki... and 3 others

    - COMPUTER PHYSICS COMMUNICATIONS - Year 2024

    This contribution presents the key elements of YADE, an extensible open-source framework for dynamic simulations. During the past 19 years, YADE has evolved from "Yet Another Dynamic Engine"' to a versatile multiscale and multiphysics solver, counting a large, active, and growing community of users and developers. The computationally intense parts of the source code are written in C++, using flexible object models that allow for...

    Full text available to download

  4. Publication

    - Year 2023

    In this dissertation I present a high-precision (15, 18 or 33 decimal places) C++ implementation of quantum dynamics time propagation algorithms for both time-independent and time-dependent Hamiltonian with an inhomogeneous source term. Moreover I present an extension of both algorithms for time propagation to handle arbitrary number of coupled electronic levels. I have performed a careful validation of these implementations comparing...

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  5. We study the dynamics of multiple coupled states under the influence of an arbitrary time-dependent external field to investigate the femtosecond laser-driven excitation and the spin-orbit mediated dissociation in the NaRb dimer. In this process, the dimer is excited from the ground triplet state 1^3Sigma+ to the 1^3Pi state using the femtosecond laser impulse and the spin-orbit coupling between the 1^3Pi and 2^1Sigma+ states results...

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Projects: