Search results for: marine propulsion shafting, bearing lubrication, fluid-structure interaction, finite-element method, optimization - Bridge of Knowledge

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Search results for: marine propulsion shafting, bearing lubrication, fluid-structure interaction, finite-element method, optimization

Search results for: marine propulsion shafting, bearing lubrication, fluid-structure interaction, finite-element method, optimization

  • Finite Element Method

    e-Learning Courses
    • B. Sobczyk
    • M. Malikan

    Item Name : Finite Element Method- Abaqus learning Field of study : Civil Engineering Faculty : Faculty of Civil and Environmental Engineering Education level : Second degree studies Form of studies : Full-time studies Year of studies : 1 Study semester : 2 Start of the semester : November 2021 Academic year of the course : 2021/2022 Form of classes : Lecture, Laboratory

  • Finite Element Method Applications - winter 2022/2023

    e-Learning Courses
    • W. Witkowski
    • A. Sabik
    • B. Sobczyk
    • S. Burzyński
    • Ł. Pyrzowski

    Finite Element Method Applications - summer 2022/2023 Seminar.

  • Finite Element Method Applications - summer 2022/2023

    e-Learning Courses
    • W. Witkowski
    • A. Sabik
    • B. Sobczyk
    • S. Burzyński
    • Ł. Pyrzowski

    Finite Element Method Applications - summer 2022/2023 Seminar.

  • Finite Element Method Applications - winter 2023/2024

    e-Learning Courses
    • W. Witkowski
    • A. Sabik
    • B. Sobczyk
    • Ł. Pyrzowski

    Finite Element Method Applications - winter 2022/2023 Seminar.

  • Finite Element Method Applications 2023/2024 Summer

    e-Learning Courses
    • B. Sobczyk

    Finite Element Method Applications - summer semester 2023/2024 Seminar.

  • Finite Element Method - winter 2022/2023

    e-Learning Courses
    • W. Witkowski
    • B. Sobczyk
    • M. Miśkiewicz
    • Ł. Pyrzowski

    Civil Engineering, Studia Stacjonarne II Stopień, II semestr

  • Finite Element Method - winter 2023/2024

    e-Learning Courses
    • W. Witkowski
    • B. Sobczyk
    • M. Miśkiewicz
    • Ł. Pyrzowski

    Civil Engineering, Studia Stacjonarne II Stopień, II semestr

  • Advanced Mechanics of Marine Structures II W2021/22

    e-Learning Courses
    • P. Dymarski

    Lecture and Laboratory classes Advanced Mechanics of Marine Structures II W2021/22

  • Hydro and marine civil engineering (2023-2024)

    e-Learning Courses
    • W. Sterpejkowicz-Wersocki
    • A. M. Mustafa
    • W. Magda

    Kurs realizowany na Wydziale Inżynierii Lądowej i Środowiska  (WILiŚ) Politechniki Gdańskiej. Studia:   II stopnia - magisterskie, stacjonarne Kierunek: Budownictwo Semestr:  1 (letni) Presentation of basic hydro and marine civil engineering structures together with basic computational procedures for determining environmental forces acting on a structure (vertical-wall breakwater, rubble mound breakwater, submarine pipelines...

  • Hydro and marine civil engineering (2020-2021)

    e-Learning Courses
    • W. Sterpejkowicz-Wersocki
    • A. M. Mustafa
    • W. Magda

    Kurs realizowany na Wydziale Inżynierii Lądowej i Środowiska  (WILiŚ) Politechniki Gdańskiej. Studia:   II stopnia - magisterskie, stacjonarne Kierunek: Budownictwo Semestr:  1 (letni) Presentation of basic hydro and marine civil engineering structures together with basic computational procedures for determining environmental forces acting on a structure (vertical-wall breakwater, rubble mound breakwater, submarine pipelines...

  • Hydro and marine civil engineering (2021-2022)

    e-Learning Courses
    • W. Sterpejkowicz-Wersocki
    • A. M. Mustafa
    • W. Magda

    Kurs realizowany na Wydziale Inżynierii Lądowej i Środowiska  (WILiŚ) Politechniki Gdańskiej. Studia:   II stopnia - magisterskie, stacjonarne Kierunek: Budownictwo Semestr:  1 (letni) Presentation of basic hydro and marine civil engineering structures together with basic computational procedures for determining environmental forces acting on a structure (vertical-wall breakwater, rubble mound breakwater, submarine pipelines...

  • Advanced Mechanics of Marine Structures I, MSc, Summer 2022-2023, [L,T], PG_00051723

    e-Learning Courses
    • B. Rozmarynowski

    1.  Literature overview,  definition of marine and offshore structures, ocean engineering technologies and mechanical aspects, structural systems applied, jack-up drilling platforms and structural elements. 2. Tensor algebra fundamentals,  stress and small strain states of a solid, constitutive relations. 3. SDOF and MDOF dynamic systems, damping and added masses in offshore vibrations,  generalised eigenvalue problem, forced vibrations...

  • Human Computer Interaction

    e-Learning Courses
    • T. Kocejko

  • Scientific Research Method

    e-Learning Courses
    • J. Szczepański

  • Fluid Mechanics, L/L/E, DaPE, sem. 04, summer 21/22 (PG_00050282)

    e-Learning Courses
    • K. Tesch
    • M. Banaszek

    LECTURES Introduction and basic definitions. Properties of fluids. Models of fluids. Fluids in equilibrium. Determination of hydrostatic forces. Archimedes" law. Methods of fluid flow description. General motion of fluid. Deformation of fluid element. Vortex motion of fluid. Principles of conservation of mass, momentum and energy. Balance of entropy. Navier-Stokes equation. Bernoulli equation. Similarity of flow phenomena. Potential...

  • Polymeric materials in medicine – structure and desing 2023/24

    e-Learning Courses
    • I. Koss-Mikołajczyk
    • A. Sommer
    • H. Staroszczyk

  • Physics Research Method IV

    e-Learning Courses
    • J. Guthmuller

    {mlang pl} Dyscyplina:  Nauki Fizyczne Zajęcia obowiązkowe dla doktorantów II roku Prowadzący:   prof. Julien Guthmuller Liczba godzin: 15 h Forma zajęć: wykład/seminarium {mlang} {mlang en} Discipline: Phisical Sciences Obligatory course for 2nd year PhD students Academic teacher:  prof. Julien Guthmuller Total hours of training: 15 teaching hours Course type: lecture/seminar {mlang}

  • Business Process Analysis and Optimization 2022

    e-Learning Courses
    • M. Grzesiak

  • Business Process Analysis and Optimization 2023

    e-Learning Courses
    • M. Grzesiak

  • Human Computer Interaction 2018/19

    e-Learning Courses
    • T. Kocejko

  • Fluid Flow Machinery

    e-Learning Courses
    • K. Kosowski

    Podstawowe informacje dotyczące obiegów cieplnych siłowni z turbinami parowymi i gazowymi. Główne elementy siłowni turbinowych. Zagadnienia przepływowe  maszyn wirnikowych. Teoria stopni turbinowych. Część przepływowa turbin.

  • Fluid Flow Machinery

    e-Learning Courses
    • K. Kosowski

    Podstawowe informacje dotyczące obiegów cieplnych siłowni z turbinami parowymi i gazowymi. Główne elementy siłowni turbinowych. Zagadnienia przepływowe  maszyn wirnikowych. Teoria stopni turbinowych. Część przepływowa turbin.

  • [ILiT, IŚGiE] Reliability-Based Optimization (RBO)

    e-Learning Courses
    • J. Górski
    • K. Winkelmann
    • M. Skowronek

  • Human-Computer Interaction ID 2022/2023

    e-Learning Courses
    • I. Garnik
    • M. Sikorski
    • M. Ciesielska

  • Human-Computer Interaction ID 2021/2022

    e-Learning Courses
    • I. Garnik
    • M. Sikorski

  • Human-Computer Interaction ID 2023/2024

    e-Learning Courses
    • I. Garnik
    • M. Sikorski
    • M. Ciesielska

  • Fluid Mechanics, LEC/LAB, EaPE (Dezhou), sem.5, winter 23/24 (PG_00059698)

    e-Learning Courses
    • M. Banaszek

    The aim of the course is to identify and demonstrate knowledge of the major concepts of fluid mechanics.

  • Fluid-flow machinery - Wykład

    e-Learning Courses
    • J. Głuch

    Student poznaje zasady funkcjonowania maszyn wirnikowych, ich rolę w układach energetycznych   Basic knowledge of turbomachinery principle of operation and turbomachinery enrgy power plants

  • Fluid Mechanics, W/C, EaPE (Dezhou), sem.5, zimowy 23/24 (PG_00059698)

    e-Learning Courses
    • M. Banaszek

    Objective of the subject is to supply the student with the theoretical and practical knowledge, enabling him to solve engineering computational and experimental problems related to fluid mechanics.

  • Human-Computer Interaction, sem. letni 2018/2019

    e-Learning Courses
    • M. Sikorski
    • M. Ciesielska

  • Fluid Mechanics, PG_0004975 laboratory 2022

    e-Learning Courses
    • M. Krężelewski
    • M. Banaszek

  • [ILiT, IŚGiE] Reliability-Based Optimization (RBO) - 2022/23

    e-Learning Courses
    • J. Górski
    • K. Winkelmann
    • M. Skowronek

  • [ILiT, IŚGiE] Reliability-Based Optimization (RBO) - 2023/24

    e-Learning Courses
    • J. Górski
    • K. Winkelmann
    • M. Skowronek

  • GTM Method of Structural Studies Lecture and Laboratory

    e-Learning Courses
    • S. Makowiec
    • I. Sinkiewicz
    • M. Ryczkowska
    • T. Olszewska
    • A. Brillowska-Dąbrowska

  • Numerical methods in heat and fluid flow

    e-Learning Courses
    • P. Ziółkowski

    Przedmiot odnosi się do bilansu masy pędu i energii w ujęciu 0D i 3D.

  • Numerical methods in heat and fluid flow

    e-Learning Courses
    • M. Amiri
    • J. Barański

    Przedstawienie zagadnień dotyczących modelowania urządzeń instalacji energetycznych, w tym obiegów cieplnych termodynamicznych oraz wybranych urządzeń instalacji energetycznych przy użyciu kodów komercyjnych. Przedstawienie możliwości obliczeniowych kodu obliczeniowego typu CFD.

  • Numerical methods in heat and fluid flow, PG_00057408

    e-Learning Courses
    • P. Ziółkowski

    Reiteration of information on thermodynamic cycles and extension of information on their modelling using commercial software tools. Presentation of balances, constitutive equations, how to set up conditions in CFD type codes. Equipment regulation and control in the context of heat exchangers.Presentation of the computational capabilities of the CFD calculation code ANSYS Fluent. Mass, momentum and energy balances in 0D and 3D terms.Analysis...

  • Modelowanie i symulacja CFD (Computional Fluid Dynamics)

    e-Learning Courses
    • D. Gąsiorowski
    • W. Artichowicz

  • Numerical Methods

    e-Learning Courses
    • P. Sypek
    • M. Rewieński

    Numerical Methods: for Electronics and Telecommunications students, Master's level, semester 1 Instructor: Michał Rewieński, Piotr Sypek Course description: This course provides an introduction to computational techniques for the simulation and modeling of a broad range of engineering and physical systems. Concepts and methods discussed are widely illustrated by various applications including modeling of integrated circuits,...

  • Fluid Mechanics PG 00049759, Laboratorium, sem. 4, lato 2023

    e-Learning Courses
    • M. Krężelewski
    • M. Banaszek

  • Fluid Mechanics PG 00049759, Laboratorium, sem. 4, lato 2024

    e-Learning Courses
    • M. Krężelewski
    • M. Banaszek

  • Fluid Mechanics PG 00049759 Wykład+Ćwiczenia, sem. 4, lato 2024

    e-Learning Courses
    • M. Krężelewski
    • O. Kazimierska

  • Fluid Mechanics and Hydraulics EE Msc sem. I r.a. 22/23

    e-Learning Courses
    • P. Zima
    • A. M. Mustafa

    Basic definitions. Physical properties of liquids. Forces acting on fluids. Hydrostatics - basic equations. Pressure on a flat and curved wall. Buoyancy. Archimedes' law. Balance of submerged bodies. The balance of floating bodies. Hydrodynamics. Hydrodynamic quantities. Continuity equation for the liquid stream. Bernoulli equation. Basic laws of hydrodynamics. Equation of mass behavior, preservation of the amount of motion, Bernoulli's...

  • Fluid Mechanics and Hydraulics EE Msc sem. I r.a. 23/24

    e-Learning Courses
    • P. Zima

    Basic definitions. Physical properties of liquids. Forces acting on fluids. Hydrostatics - basic equations. Pressure on a flat and curved wall. Buoyancy. Archimedes' law. Balance of submerged bodies. The balance of floating bodies. Hydrodynamics. Hydrodynamic quantities. Continuity equation for the liquid stream. Bernoulli equation. Basic laws of hydrodynamics. Equation of mass behavior, preservation of the amount of motion, Bernoulli's...

  • Mechanics of materials (PG_00057378), W/Ć, BM, II stop., sem1,3, lato, 2023/24

    e-Learning Courses
    • B. Rozmarynowski
    • P. M. Bielski

    The aim of this course is providing knowledge in the field of analysis and solving problems of mechanics and strength of one-dimensional systems (bars, beams, frames) and selected two-dimensional systems (shields, plates); preparing the student to solve problems involving complex cases of material strength; developing the ability to assess the stability of structural elements (forms of stability loss, critical forces); consolidation...

  • 2022-2023 - Wytrzymałość materiałów II, PG_00040052

    e-Learning Courses
    • M. K. Gerigk

    Opanowanie wiedzy i umiejętności rozwiązywania złożonych zagadnień wytrzymałości prętów, powłok oraz płyt, mechaniki pękania i wytrzymałości zmęczeniowej, drgań prętów, oraz wybranych zastosowań metody elementów skończonych. The aim of the lectures is to deliver to the students the knowledge and abilities to solve the complex problems concerning the bars, shells, 3D structures, mechanics of cracking and fatique strength, vibrations...

  • Fluid Mechanics, W/L/C, DaPE, sem. 4, letni 22/23 (PG_00050282)

    e-Learning Courses
    • K. Tesch
    • M. Banaszek

  • Fluid Mechanics L/E/L, DaPE, sem. 3, summer 23/24 (PG_00050282)

    e-Learning Courses
    • K. Tesch
    • M. Banaszek
    • M. Saqib

  • Team project I (2020/21)

    e-Learning Courses
    • A. Dąbrowski
    • M. Chodnicki

    Within this team project, students will be designing a space mission. Each student will choose a subsystem: mission analysis, propulsion, communication, structure, mechanisms, power, thermal, onboard data handling. Together, by means of concurrent engineering a primary system definition will be completed.

  • Numerical Methods for Partial Differential Equations

    e-Learning Courses
    • M. Rewieński

    Course description: This course focuses on modern numerical techniques for linear and nonlinear elliptic, parabolic and hyperbolic partial differential equations (PDEs), and integral equations fundamental to a large variety of applications in science and engineering. Topics include: formulations of problems in terms of initial and boundary value problems; finite difference and finite element discretizations; boundary element approach;...