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Design of a 5 Kw Microturbine Generator

Design of a 5 Kw Microturbine Generator PDF Author: Michael Thomas Kusner
Publisher:
ISBN:
Category : Gas-turbines
Languages : en
Pages : 274

Book Description


Design of a 5 Kw Microturbine Generator

Design of a 5 Kw Microturbine Generator PDF Author: Michael Thomas Kusner
Publisher:
ISBN:
Category : Gas-turbines
Languages : en
Pages : 274

Book Description


Micro-turbine Generators

Micro-turbine Generators PDF Author: M. J. Moore
Publisher: John Wiley & Sons
ISBN: 9781860583919
Category : Technology & Engineering
Languages : en
Pages : 130

Book Description
In recent years, modern precision manufacturing techniques and design methods have substantially improved the performance of micro-turbine generators (MTG). Compared to conventional generators, micro-turbine power sources are much smaller and portable. Microturbine generators are also proving to be more efficient, easier to maintain, and more environmentally friendly with fewer emissions. Although power generators running on microturbines can use various types of energy sources, Micro-turbine Generators brings together a wide range of engineering experience to describe the emergence of micro-turbine technology, its viability and its future potential. COMPLETE CONTENTS: Foreword An introduction to micro-turbine generators Micro-turbine generators – next generation Analysis of micro- and mini-turbine competitive and supply markets in Europe Future potential developments of micro-turbine generators – hybrid cycles and tri-generation Design reliability of micro-turbines Field experience with micro-turbines in Canada Design problems in micro-turbine generators Tip-leakage flow: A comparison between axial and radial turbines

Design of Village Power and Micro-Grids for Rural Areas of Zimbabwe with Specific Attention to Voltage Regulation on Low Voltage Meshed Distribution Grids

Design of Village Power and Micro-Grids for Rural Areas of Zimbabwe with Specific Attention to Voltage Regulation on Low Voltage Meshed Distribution Grids PDF Author:
Publisher: kassel university press GmbH
ISBN: 3899586379
Category :
Languages : en
Pages : 148

Book Description


Design, Fabrication and Test of a Gas Turbine Engine and Wave Rotor Test Bed

Design, Fabrication and Test of a Gas Turbine Engine and Wave Rotor Test Bed PDF Author: John Charles Quackenbush
Publisher:
ISBN:
Category : Gas-turbines
Languages : en
Pages : 196

Book Description


Modeling and Simulation of a Microturbine Generator to be Coupled with a Molten Carbonate Fuel Cell for Disturbed Generation

Modeling and Simulation of a Microturbine Generator to be Coupled with a Molten Carbonate Fuel Cell for Disturbed Generation PDF Author: Karleine M. Justice
Publisher:
ISBN:
Category : Fuel cells
Languages : en
Pages : 247

Book Description
Distributed generation is desired when the individual energy requirements ranging from 25-75 kW of office buildings, restaurants, hospitals and apartments can not be met by the current electric utility grid. Microturbine generators as stand alone power generation systems have been designed to meet these requirements. For power requirements up to 50 MW, hybrid fuel cell systems offer higher efficiency and lower levels of pollutant emissions with more advanced fuel energy savings than non-hybrid systems. The objective of this project is to develop a simulation of a microturbine generator as a stand alone power generation system to validate a microturbine generator as part of a hybrid power generation system designed to produce 250 kW of usable power in MATLAB/Simulink®. The stand alone power generation system will be modeled using a 1-Dimensional approach. The hybrid power generation system is modeled as three major sub-systems; a hybrid microturbine generator, a molten carbonate fuel cell with catalytic oxidizer, and a shell-and-tube heat exchanger. The hybrid power generation system will be analyzed by two different models; a 0-Dimensional hybrid model where all the components are 0-Dimensional and a 0-Dimensional model with 1-Dimensional zooming for the hybrid microturbine generator. The analysis of the stand alone system is used for validation of the hybrid system at the operating design point of the microturbine generator. A control system was placed on the hybrid microturbine generator power generation system and an analysis was completed on the temperature response of the 0-Dimensionl hybrid system as the microturbine generator power was ramped from 0-30 kW over six different time intervals. A second controller was placed on the fuel cell power generation system to further analyze the hybrid system’s controllability. The three MATLAB/Simulink® models developed provide an initial design methodology for modeling and simulation of a hybrid power generation system.

Microturbines

Microturbines PDF Author: Claire Soares
Publisher: Elsevier
ISBN: 0080549489
Category : Technology & Engineering
Languages : en
Pages : 301

Book Description
Small-scale gas turbines, known as Microturbines, represent an exciting new development in gas turbine technology. They can run in size from small, human-scale machines down to micro-sized mini-machines that can barely be seen by the naked eye. They also run a great diversity of fuel types, from various types of commercial gases to waste-generated gases. This new book by industry expert Claire Soares will fully describe the various types of microturbines, their applications, and their particular requirements for installation, maintenance and repair. It will explain how a microturbine the size of a refrigerator can power an entire school, hospital or small factory, which is particularly useful for onsite, remote installations. The book will also show how microturbines can be paired with one or more fuel cells to form a hybrid energy source, or can be teamed with any source of distributed power, such as a mall hydro-turbine or a wind turbine. Moreover, the reader will learn how microturbines can run on a variety of fuels that are far cruder than those required by most standard gas turbines; they can be made to run, for instance, using gas from a landfill or biomass source. The reader will find detailed information on costs, specifications, and maintenance and repair guidelines. Ample references and resources will provide the reader with tools for finding manufacturers and product specifications for their own particular needs. Covers major categories of microturbines, including factors common to their design, installation, operation, optimization, maintenance, and repair Invaluable guidance on market factors and economics affecting microturbines and their applications, particularly for distributed power generation Provides current case studies showing microturbines used in hybrid systems with fuel cells and other types of power generation systems

The Design and Construction of a 5 K.w., D.C. Generator

The Design and Construction of a 5 K.w., D.C. Generator PDF Author: Jesse Smart Gilkey
Publisher:
ISBN:
Category : Electric generators
Languages : en
Pages : 18

Book Description


Microturbine Generator Handbook

Microturbine Generator Handbook PDF Author: Stephanie Hamilton
Publisher: PennWell Books
ISBN:
Category : Technology & Engineering
Languages : en
Pages : 242

Book Description
The authors use a variety of photos to illustrate lessons, allowing readers to size up the structure or conditions depicted and answer questions based on their observations of the photos. The format includes true and false, multiple choice, fill in the blank, and scenario questions.

Mod-OA 200 KW Wind Turbine Generator Design and Analysis Report

Mod-OA 200 KW Wind Turbine Generator Design and Analysis Report PDF Author: T. S. Andersen
Publisher:
ISBN:
Category : Wind power
Languages : en
Pages : 373

Book Description


Renewable Energy System Design

Renewable Energy System Design PDF Author: Ziyad Salameh
Publisher: Academic Press
ISBN: 0080961673
Category : Technology & Engineering
Languages : en
Pages : 401

Book Description
The limitation of fossil fuels has challenged scientists and engineers to search for alternative energy resources that can meet future energy demand. Renewable Energy System Design is a valuable reference focusing on engineering, design, and operating principles that engineers can follow in order to successfully design more robust and efficient renewable energy systems. Written by Dr. Ziyad Salameh, an expert with over thirty years of teaching, research, and design experience, Renewable Energy System Design provides readers with the "nuts and bolts" of photovoltaic, wind energy, and hybrid wind/PV systems. It explores renewable energy storage devices with an emphasis on batteries and fuel cells and emerging sustainable technologies like biomass, geothermal power, ocean thermal energy conversion, solar thermal, and satellite power. Renewable Energy System Design is a must-have resource that provides engineers and students with a comprehensive yet practical guide to the characteristics, principles of operation, and power potential of the most prevalent renewable energy systems. Explains and demonstrates design and operating principles for solar, wind, hybrid and emerging systems with diagrams and examples Utilizes case studies to help engineers anticipate and overcome common design challenges Explores renewable energy storage methods particularly batteries and fuel cells and emerging renewable technologies