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Integration of Renewable Energy Systems
Andy Walker; Jennifer Scheib; Craig Turchi; Robi Robichaud; Gregg Tomberlin; Kari Burman; Michael Hillesheim; B Kroposki
American Society of Mechanical Engineers,U.S. (2016)
Kovakantinen kirja
105,30
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THE DECOMMISSIONING HANDBOOK (802248)
Anibal L. Taboas; A. Alan Moghissi; Thomas S. LaGuardia
American Society of Mechanical Engineers,U.S. (2004)
Pehmeäkantinen kirja
106,50
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Nanomaterials in Glucose Sensing
Krishna Burugapalli; Nick Wang; Jakub Trzebinski; Wenhui Song; Anthony Cass
American Society of Mechanical Engineers,U.S. (2013)
Kovakantinen kirja
75,50
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Thriving in the 21st Century Economy - Transformational Skills for Technical Professionals
K. Subramanian; U. S. Rangan
American Society of Mechanical Engineers,U.S. (2013)
Pehmeäkantinen kirja
63,40
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The Unwritten Laws of Engineering
W.J. King; James G. Skakoon
American Society of Mechanical Engineers,U.S. (2001)
Pehmeäkantinen kirja
47,50
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ostoskoriin kpl
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Wind Turbine Technology - Fundamental Concepts in Wind Turbine Engineering
David A. Spera
American Society of Mechanical Engineers,U.S. (2009)
Pehmeäkantinen kirja
186,80
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Pipeline Design and Construction - A Practical Approach
Mo Mohitpour; Hossein Golshan; Alan Murray
American Society of Mechanical Engineers,U.S. (2006)
Pehmeäkantinen kirja
168,10
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2007 PROCEEDINGS OF THE ASME PVP CONFERENCE, HIGH PRESSURE TECHNOLOGY -  ASME NDE AND PIPELINE SYSTEMS DIVISION - STUDENT PAPER
AMERICAN SOCIETY OF MECHANICAL ENGINEERS,U.S. (2007)
171,20
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The Elements of Mechanical Design
James G. Skakoon
American Society of Mechanical Engineers,U.S. (2008)
Pehmeäkantinen kirja
31,20
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Biomedical Applications of Vibration and Acoustics in Imaging and Characterizations
Mostafa Fatemi; Ahmed Al-Jumaily
American Society of Mechanical Engineers,U.S. (2008)
Kovakantinen kirja
134,10
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Technical Writing A-Z - A Commonsense Guide to Engineering Reports and Theses (British English Edition)
Trevor M. Young
American Society of Mechanical Engineers,U.S. (2005)
Pehmeäkantinen kirja
31,20
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Pipeline Pumping and Compression Systems - A Practical Approach
Mo Mohitpour; K.K. Botros; Thomas Van Hardeveld
American Society of Mechanical Engineers,U.S. (2008)
Kovakantinen kirja
135,20
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History of Line Pipe Manufacturing in North America
American Society of Mechanical Engineers (ASME)
American Society of Mechanical Engineers,U.S. (1996)
Pehmeäkantinen kirja
57,10
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International Project Management for Technical Professionals
Brian E. Porter
American Society of Mechanical Engineers,U.S. (2009)
Pehmeäkantinen kirja
48,50
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Hot Air Rises and Heat Sinks - Everything You Know about Cooling Electronics is Wrong
Tony Kordyban
American Society of Mechanical Engineers,U.S. (1998)
Pehmeäkantinen kirja
47,30
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Development of Reliability-based Load and Resistance Factor Design (LRFD) Methods for Piping - Reseach and Development Report
Asme Press
American Society of Mechanical Engineers,U.S. (2008)
Pehmeäkantinen kirja
64,60
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Steam Surface Condenser - Basic Principles, Performance Monitoring and Maintenance
Richard E. Putman
American Society of Mechanical Engineers,U.S. (2001)
Pehmeäkantinen kirja
111,40
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Stress Analysis of Cracks Handbook
Hiroshi Tada; Asme Press; Paul C Paris
American Society of Mechanical Engineers,U.S. (2000)
Kovakantinen kirja
219,60
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Taguchi Methods for Robust Design
Yuin Wu; Alan Wu
American Society of Mechanical Engineers,U.S. (2000)
Pehmeäkantinen kirja
69,50
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THERMAL MANAGEMENT OF MICROELECTRONIC EQUIPMENT (801683)
L. -T Yeh; ASME Press; R. C. Chu
American Society of Mechanical Engineers,U.S. (2002)
Pehmeäkantinen kirja
111,40
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American Society of Mechanical Engineers,U.S.
Sivumäärä: 150 sivua
Asu: Kovakantinen kirja
Julkaisuvuosi: 2016, 30.09.2016 (lisätietoa)
Kieli: Englanti
Energy efficiency measures are generally less expensive than a renewable energy (RE) system to provide the same amount of energy saved. The Energy Information Administration reports that, on average, a dollar spent on efficiency saves $2 off the cost of a renewable energy system to provide the same amount of energy [IEA, 2011]. But as the saying goes “you can’t save yourself rich” and having installed sophisticated controls and efficient systems, we need some source of energy to power them. On-site renewable energy systems offer several advantages, especially when operated in concert with a larger utility system. The main reasons to consider RE is cost-effectiveness, but other reasons are as diverse as: reduction of atmospheric emissions; compliance with regulations requiring RE; enhanced reliability through redundant energy supply; abate risks related to fuel availability and cost, or risk of fuel-spills during delivery; score points in a sustainability rating; or as a mitigation measure in a larger environmental-permitting process.

Renewable energy technologies used on buildings include daylighting; solar photovoltaics; solar water heating; solar ventilation air preheating; passive solar heating and cooling load avoidance; wind power; biomass heat (or cogeneration as discussed in Chapter 8); anaerobic digestion of waste; and geothermal heat. Ground source heat pumps are also often considered, in-part, RE systems. Daylighting and the envelope measures (passive heating and cooling) are often considered efficiency measures, but daylighting is a direct and obvious use of solar energy in buildings, and photovoltaics (PV), Solar Water Heating and Solar Ventilation Air preheating are technologies to consider on any building project. We even consider an example of hydroelectric power on the water supply to a building.

We cover the operating principle of each type of system, list components and provide schematic diagram of how components are assembled into systems; provide information for cost estimate and life cycle cost calculation, describe how system size may be optimized to minimize life cycle cost, and we stress the importance of operations and maintenance (O&M) over a long performance period. Significant emphasis is placed on integration of RE into the conventional utility system, at both the site level and from the perspective of the larger utility system, so that savings due to the RE may be realized without compromising the reliability of the system. Case studies are presented to exemplify application of each technology.

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Turku
Tampere
Integration of Renewable Energy Systemszoom
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ISBN:
9780791861240
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