Search results for: RENEWABLE ENERGY SYSTEM - Bridge of Knowledge

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Search results for: RENEWABLE ENERGY SYSTEM

Search results for: RENEWABLE ENERGY SYSTEM

  • Renewable energy sources (Archiwizowany 2023-11-02)

    e-Learning Courses
    • J. Cieśliński

  • CONTROL SYSTEMS IN RENEWABLE ENERGY SOURCES [2022/23]

    e-Learning Courses
    • M. Śliwiński
    • P. Kołodziejek
    • M. Wołoszyn

  • CONTROL SYSTEMS IN RENEWABLE ENERGY SOURCES 2023/2024

    e-Learning Courses
    • J. Guziński
    • P. Kołodziejek

  • Renewable Energy Sources - W/C/L, E+MiBM, sem.05, (PG_00042100) - Nowy

    e-Learning Courses
    • J. Kropiwnicki

    Presentation of the modern achievements and tendencies in the area of renewable energy resources utilization. Classification of renewable energy resources. Possibilities of renewable energy resources utilization. Discussion of theoretical backgrounds of selected technologies.

  • Renewable Energy Sources, WIMiO, Energetyka, I st., sem. 03, stacjonarne, (PG_00042100), semestr zimowy 2023/2024

    e-Learning Courses
    • J. Kropiwnicki
    • S. Głuch

    Presentation of the modern achievements and tendencies in the area of renewable energy resources utilization. Classification of renewable energy resources. Possibilities of renewable energy resources utilization. Discussion of theoretical backgrounds of selected technologies.

  • Environmental Protection in Energetics, W, E, sem.01, zimowy 22/23

    e-Learning Courses
    • P. Bzura

    The principle of sustainable development. Non-renewable and renewable energy sources. Environmental aspects of the use of different energy sources. Atmospheric pollution. Methods of reducing the emission of pollutants into the atmosphere. Waste and hazardous waste. Water and Wastewater. Legal aspects of environmental protection.

  • Decentralized energy systems. Social aspects of energy production and use (10h, 2 ECTS credits)

    e-Learning Courses
    • M. Galik
    • A. Klej
    • A. Augusiak

    The main aim of the course is to introduce students to the socio-political aspects of the decentralization of energy systems. The motivation behind these changes is not only due to technological developments or economic issues. The main driving force are wider social and political trends. Many energy supply projects that are being developed and implemented today assume an active role for consumers in energy production, who become...

  • Pumps, Turbines and Small Hydropower, LEC/LAB, DaPE, sem.5 winter 2022/23 (M:320403W0)

    e-Learning Courses
    • M. Banaszek

    The aim of the course is to identify and demonstrate knowledge of the major concepts, theoretical perspectives, and historical trends in small hydropower. This course examines the principles of sustainability and renewable energy conversion with emphasis on hydro energy resources. Concentration is placed on the relationships between the renewable resources, conversion technology and economic feasibility along with consideration...

  • Pumps, Turbines and Small Hydropower, LEC/LAB, ET, sem.7 winter 2022/23 (PG_00042108)

    e-Learning Courses
    • M. Banaszek

    The aim of the course is to identify and demonstrate knowledge of the major concepts, theoretical perspectives, and historical trends in small hydropower. This course examines the principles of sustainability and renewable energy conversion with emphasis on hydro energy resources. Concentration is placed on the relationships between the renewable resources, conversion technology and economic feasibility along with consideration...

  • Pumps, Turbines and Small Hydropower, LEC/LAB, DaPE, sem.5 winter 2023/24 (M:320403W0)

    e-Learning Courses
    • M. Banaszek

    The aim of the course is to identify and demonstrate knowledge of the major concepts, theoretical perspectives, and historical trends in small hydropower. This course examines the principles of sustainability and renewable energy conversion with emphasis on hydro energy resources. Concentration is placed on the relationships between the renewable resources, conversion technology and economic feasibility along with consideration...

  • Pumps, Turbines and Small Hydropower, LEC/LAB, ET, sem.7 winter 2023/24 (PG_00042108)

    e-Learning Courses
    • M. Banaszek

    The aim of the course is to identify and demonstrate knowledge of the major concepts, theoretical perspectives, and historical trends in small hydropower. This course examines the principles of sustainability and renewable energy conversion with emphasis on hydro energy resources. Concentration is placed on the relationships between the renewable resources, conversion technology and economic feasibility along with consideration...

  • Condition monitoring of energy installations IDESII

    e-Learning Courses
    • J. Głuch

    Measurement errors and uncertainties. Industrial measurements in the energy industry. Measuring devices. The basics of control in industry. Measurement characteristics in complex energy systems. Distributed Control System (DCS) (KSR).

  • Mechanics I, W/C, MiBM, sem. 02, lato 22/23 (PG_00050273)

    e-Learning Courses
    • O. Nosko

    The course provides students with basic knowledge of Classical Mechanics. Terms, assumptions, principles and methods of Statics, Kinematics and Kinetics are treated. General methods based on the principles of conservation of momentum and energy are considered for a particle, a body and a system of bodies. The main emphasis is on the development of skills to efficiently schematise, solve and analyse typical problems.

  • Mechanics II, W/C, MiBM, sem. 03, zima 22/23 (PG_00055119)

    e-Learning Courses
    • O. Nosko

    The course provides students with basic knowledge of Classical Mechanics. Terms, assumptions, principles and methods of Statics, Kinematics and Kinetics are treated. General methods based on the principles of conservation of momentum and energy are considered for a particle, a body and a system of bodies. The main emphasis is on the development of skills to efficiently schematise, solve and analyse typical problems.

  • Mechanics II, W/C, ZiIP, sem. 03, zima 23/24 (PG_00055119)

    e-Learning Courses
    • O. Nosko

    The course provides students with basic knowledge of Classical Mechanics. Terms, assumptions, principles and methods of Statics, Kinematics and Kinetics are treated. General methods based on the principles of conservation of momentum and energy are considered for a particle, a body and a system of bodies. The main emphasis is on the development of skills to efficiently schematise, solve and analyse typical problems.

  • Mechanics I, W/C, ZiIP, sem. 02, lato 23/24 (PG_00050273)

    e-Learning Courses
    • O. Nosko

    The course provides students with basic knowledge of Classical Mechanics. Terms, assumptions, principles and methods of Statics, Kinematics and Kinetics are treated. General methods based on the principles of conservation of momentum and energy are considered for a particle, a body and a system of bodies. The main emphasis is on the development of skills to efficiently schematise, solve and analyse typical problems.

  • Mathematical and numerical modelling,W,IDE-EMSS,IIst,sem.01,lato,2023/24 (PG_00057379)

    e-Learning Courses
    • K. J. Kaliński

    Modelling of controlled mechanical systems by the mixed method of rigid and flexible finite elements: The finite element volume problems. Dynamics of multibody systems. Modelling of stationary closed loop systems. Modelling of systems whose configuration changes with time. Modelling of nonlinear controlled systems. Optimal control at energy performance index: Control of continuous nonstationary systems in domain of generalised...

  • Mathematical and Numerical Modelling, L, IDE IInd, sem.01, summer, 2022/23(00057379)

    e-Learning Courses
    • K. J. Kaliński

    Modelling of controlled mechanical systems by the mixed method of rigid and flexible finite elements: The finite element volume problems. Dynamics of multibody systems. Modelling of stationary closed loop systems. Modelling of systems whose configuration changes with time. Modelling of nonlinear controlled systems. Optimal control at energy performance index: Control of continuous nonstationary systems in domain of generalised...

  • [AEiE] Selected topics of electrical engineering - models of electrical machines

    e-Learning Courses
    • A. Wilk
    • R. Jankowski
    • Z. Krzemiński

    {mlang pl} Dyscyplina: automatyka, elektronika i elektrotechnika Zajęcia fakultatywne dla doktorantów II roku Prowadzący:  dr hab. inż. Andrzej Wilk, prof. PG, prof. dr hab. inż. Zbigniew Krzemiński Liczba godzin: 15 Forma zajęć: wykład {mlang} {mlang en} Discipline: control, electronic and electrical engineering Facultative course for 2nd-year PhD students Academic teachers: dr hab. inż. Andrzej Wilk, prof. PG, prof....

  • System identification 2023/24 - project

    e-Learning Courses
    • K. Dudziak

    This is the project part of the System Identification subject.

  • System identification

    e-Learning Courses
    • M. Niedźwiecki

    The course focusses on the problem of identification of dynamic systems.

  • System identification - new

    e-Learning Courses
    • M. Niedźwiecki

    The course focusses on the problem of identification of dynamic systems.

  • System Software Design

    e-Learning Courses
    • A. Harasimiuk

  • System Diagnostics - project

    e-Learning Courses
    • M. Domżalski

    As part of the course, students prepare practical solutions to problems in the field of modern systems diagnostics. Studies: Automatic Control, Cybernetics and RoboticsLevel: IILecturer: dr inż. Mariusz Domżalski Time: Tuesday, 11:15AM Language: English

  • Energy Auditing [22/23]

    e-Learning Courses
    • W. Stahl
    • M. Jaskólski

    Energetyka, studia I stopnia, stacjonarne, semestr 7, specjalność: Energy Technologies

  • Energy Use Rationalization [22/23]

    e-Learning Courses
    • M. Jaskólski

    Energetyka, studia I stopnia, stacjonarne, specjalność: Energy Technologies

  • Energy Use Rationalization [23/24]

    e-Learning Courses
    • M. Jaskólski

    Energetyka, studia I stopnia, stacjonarne, specjalność: Energy Technologies

  • Electric Machines [Energy Technologies][2022/23]

    e-Learning Courses
    • F. Kutt
    • A. Wilk
    • M. Michna
    • G. A. Kostro
    • R. Ryndzionek
    • Ł. Sienkiewicz

    Fundamentals of elektromechanical energy conversion. Bachelor/Engineer in Energy Technologies, 4th semester, undergraduate, full-time.

  • Electric Machines [Energy Technologies][2023/24]

    e-Learning Courses
    • F. Kutt
    • A. Wilk
    • M. Michna
    • R. Ryndzionek
    • Ł. Sienkiewicz

    Fundamentals of elektromechanical energy conversion. Bachelor/Engineer in Energy Technologies, 4th semester, undergraduate, full-time.

  • Control System Design - 2022

    e-Learning Courses
    • Z. Kowalczuk

    3 sem (II st.) AiR

  • Control System Design - 2023

    e-Learning Courses
    • Z. Kowalczuk
    • K. Szymański

    3 sem (II st.) AiR

  • Control System Design - 2024

    e-Learning Courses
    • Z. Kowalczuk

    3 sem (II st.) AiR

  • System 5G - unifikacja radiokomunikacji

    e-Learning Courses
    • S. Gajewski
    • J. Sadowski

    Prowadzący: dr hab. inż. Jarosław Sadowski, prof. PG i dr inż. Sławomir Gajewski Terminy realizacji: 18maja, 25 maja oraz 08 czerwca od godz. 09:00 do 14:00 Tematyka wykładu obejmuje podstawy funkcjonowania systemów radiokomunikacyjnych i telefonii komórkowej, obecny stan rozwoju telefonii na przykładzie LTE, oraz szerokie omówienie różnych aspektów sieci 5G: założenia, standard, właściwości medium transmisyjnego (problemy propagacji...

  • System transportu pasażerskiego (IBO)

    e-Learning Courses
    • K. Czapczyk

  • Surrogate methods in system engineering

    e-Learning Courses
    • A. Bekasiewicz

    {mlang pl} Dyscyplina:  Automatyka, Elektronika i Elektrotechnika Zajęcia fakultatywne dla doktorantów II roku Prowadzący:   dr hab. inż. Adrian Bekasiewicz Liczba godzin: 15 h Forma zajęć: wykład {mlang} {mlang en} Discipline: control, electronic and electrical engineering Facultative course for 2nd year PhD students Academic teacher:  dr hab. inż. Adrian Bekasiewicz Total hours of training: 15 teaching hours Course...

  • Technology and Energy Conversion Machines

    e-Learning Courses
    • Z. Kneba

    The course covers the basics of mechanical, electrical and thermal energy production in industry and maritime transport. Describes installations supporting high-power engines. Particular attention has been paid to the fuel systems of internal combustion engines. The treatment of engine exhaust gases is described.

  • TRANSFER OF ELECTRIC ENERGY [2023/24]

    e-Learning Courses
    • J. Klucznik

    Course content: Basic information on the structure of the power system, the major devices (components) for generation, transmission and distribution of electricity. Active and reactive power generation and their sources. Power supply networks. Tasks, structure, parameters. AC and DC transmission of electricity. Equivalent diagrams of the components of the power system. Steady state load flow calculation: currents, voltage,...

  • TRANSFER OF ELECTRIC ENERGY [2022/23]

    e-Learning Courses
    • J. Klucznik

    Course content: Basic information on the structure of the power system, the major devices (components) for generation, transmission and distribution of electricity. Active and reactive power generation and their sources. Power supply networks. Tasks, structure, parameters. AC and DC transmission of electricity. Equivalent diagrams of the components of the power system. Steady state load flow calculation: currents, voltage,...

  • System identification 2021/22 - project

    e-Learning Courses
    • K. Dudziak

  • System identification 2022/23 - project

    e-Learning Courses
    • K. Dudziak

  • Technology and Energy Conversion Machines - Nowy

    e-Learning Courses
    • D. Stepanenko

    The course covers the basics of mechanical, electrical and thermal energy production in industry and maritime transport. Describes installations supporting high-power engines. Particular attention has been paid to the fuel systems of internal combustion engines. The treatment of engine exhaust gases is described.

  • Energy Systems Stations (WOiO), EE-60/1

    e-Learning Courses
    • P. Puzdrowska

    Specjalność: Energy Technologies (WOiO), I stopnia - inżynierskie, stacjonarne, 2017/2018 - zimowy (obecnie sem. 6)

  • Energy Systems (GdańskTech, Energy Technologies) [2023/24]

    e-Learning Courses
    • W. Stahl
    • M. Jaskólski

    Studia stacjonarne, kierunek Energetyka, stopień I, semestr 1 

  • Energy Systems (GdańskTech, Energy Technologies) [2022/23]

    e-Learning Courses
    • A. Golijanek-Jędrzejczyk
    • W. Stahl
    • M. Śliwiński
    • M. Jaskólski
    • M. Wołoszyn
    • A. Lenarczyk

    Studia stacjonarne, kierunek Energetyka, stopień I, semestr 1 

  • System informacji geograficznej GIS [2021/22]

    e-Learning Courses
    • A. Augusiak

  • Technology and Energy Conversion Machines - Nowy kopiuj 1

    e-Learning Courses
    • Z. Kneba

    The course covers the basics of mechanical, electrical and thermal energy production in industry and maritime transport. Describes installations supporting high-power engines. Particular attention has been paid to the fuel systems of internal combustion engines. The treatment of engine exhaust gases is described.

  • Mathematics Energy tech

    e-Learning Courses
    • D. Beger
    • M. Szyszkowski

  • ALTERNATIVE ENERGY SOURCES

    e-Learning Courses
    • A. D. Dettlaff
    • A. Kuczyńska-Łażewska

  • Nuclear energy (WChem)

    e-Learning Courses
    • M. Jaskólski

    The course is created for the Green Technologies field of study

  • Energy Systems Stations, W, ET, sem.7, zimowy 22/23 (PG_00042106)

    e-Learning Courses
    • R. Liberacki

    Internal combustion engines - principle of operation and classification. Heat balance of the engine. Uniform and combined propulsion systems.The main comonents of the propulsion system. Power plant efficiency and waste heat utilization. Cooling water system, lubricating oil system, fuel oil systeml, gaseos fuel system (LNG), compressed air system, exhaust gas system. Fittings and accessories of pipeline systems in the power plant....