№ lp_1_2_61862
File format: docx
Character count: 14252
File size: 436 KB
This document provides a detailed design and production investigative task for students to explore and implement energy transformations in a wind turbine system, covering kinetic, electrical, and light energies.
Year:
2026
Region / City:
New South Wales
Topic:
Science and Technology, Energy Transformations
Document Type:
Educational Material
Organization / Institution:
NSW Education Standards Authority
Author:
Not specified
Target Audience:
Students, Teachers
Period of Action:
2026
Approval Date:
2017
Modification Date:
Not specified
Note:
Contextual description
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Year:
2020
Region / City:
Tallassee, AL
Topic:
Water Meter Specifications
Document Type:
Technical Specification
Organization:
Neptune Technology Group Inc.
Author:
Neptune Technology Group Inc.
Target Audience:
Utility Engineers, Procurement Managers
Period of Validity:
Not specified
Approval Date:
Not specified
Modification Date:
Not specified
Year:
1996
Location:
North Africa
Type of Document:
Technical Document
Organization:
Siemens-Westinghouse
Target Audience:
Engineers, Power Plant Operators
Operating Hours:
29,937
Fuel Type:
Distillate, Condensate, Kerosene (HFO/Gas possible)
Fuel for Start:
No. 1 distillate
Fuel for Operation:
Condensate/Kerosene
Turbine Model:
W251B11/12
Turbine Type:
Gas Turbine, Simple Cycle
Compressor:
19 stages axial flow
Turbine:
3 stages
Speed:
5418 rpm
Operating Voltage:
11.5 kV
Gross Tonnage:
2,876 tons
Net Tonnage:
863 tons
Classification:
American Bureau of Shipping
Nominal Capacity:
~48 MW
Completion Date:
1996
Last Overhaul:
2011
Status:
Rehabilitation Ongoing, Testing Pending
Submitted to:
Dr. Jessica Thomas
Created by:
Team K — Eric Dye, Matt Olah, Isabella Gluzman, George Byrne
Course:
Engineering 1181
Institution:
The Ohio State University
Location:
Columbus, OH, USA
Date:
24 October 2019
Type of document:
Laboratory report
Topic:
Wind turbine design and energy output analysis
Experimental focus:
Blade number and pitch optimization, power generation calculations
Target:
Residential neighborhood energy assessment
Efficiency considered:
25%
Note:
Year
Topic:
Renewable Energy, Wind Turbines
Document Type:
Technical Specification
Target Audience:
Federal government agencies, contractors
Year:
2023
Region / City:
Japan, Tsukuba
Theme:
Material Science, Superalloys
Document Type:
Research Article
Institution:
National Institute for Materials Science (NIMS)
Authors:
Toshio Osada, Makoto Osawa, Yuhi Mori, Ayako Ikeda, Hiroshi Harada, Takuma Kohata, Kyoko Kawagishi
Target Audience:
Researchers in material science and high-temperature superalloys
Period of validity:
N/A
Approval Date:
N/A
Date of Changes:
N/A
Author:
ABC
Registration Number:
123
Degree:
MS Mechanical Engineering
Institution:
National University of Sciences and Technology
School:
School of Mechanical & Manufacturing Engineering
Department:
Department Name
Supervisor:
XYZ
Place:
Islamabad
Date:
January, 2017
Document Type:
Master’s Thesis
Sections Included:
Declaration, Plagiarism Certificate (Turnitin Report), Copyright Statement, Acknowledgements, Abstract, Table of Contents, References
Key Words:
Vibratory Stresses, Forced Response Analysis, Magneto Mechanical Material Coating
Study Focus:
Numerical computation of aerodynamic loads and finite-element analysis of turbine blade vibration
Date:
OCT 14 2022
Note:
Region / City
Theme:
Science fair, Renewable Energy, Robotics
Document Type:
Project timeline, Research log
Year:
2009
Region / city:
Southeastern section of the Sustainability Experience Center
Theme:
Renewable energy, wind power, research
Document type:
Virtual tour script
Institution:
Penn State Sustainability Experience Center
Author:
Rick Auhl
Target audience:
Students, researchers, visitors
Research period:
Ongoing
Approval date:
N/A
Modification date:
N/A
Year:
2023
Region / City:
Walcha, New South Wales, Australia
Topic:
Environmental concerns regarding wind turbine projects
Document type:
Personal submission
Organization:
None (individual submission)
Author:
Adrian Pollard
Target audience:
Local community, environmental groups, government officials
Period of validity:
N/A
Approval date:
N/A
Modification date:
N/A
Year:
2018
Region / City:
Global
Topic:
Industrial equipment
Document Type:
Product description
Organization:
KSB SE & Co. KGaA
Author:
KSB Group
Target Audience:
Industrial professionals, engineers, procurement managers
Period of validity:
N/A
Approval date:
N/A
Date of changes:
N/A
Description:
Product brochure for vertical turbine pumps offering detailed specifications and options for customization.
Year:
2016
Region / city:
Strangford Lough, Northern Ireland
Topic:
Marine energy, tidal turbines, epifaunal communities
Document type:
Research article
Institution:
Ryan Institute, School of Natural Sciences, National University of Ireland Galway
Authors:
J.P.J O’Carroll, R.M. Kennedy, A. Creech, G. Savidge
Target audience:
Researchers, marine scientists, environmental policymakers
Period of validity:
2016
Approval date:
2016
Date of revisions:
N/A
Note:
Description
Year:
2026
Region / City:
Not specified
Subject:
Spare parts inventory for gas turbine and associated equipment
Document type:
Inventory List
Organization:
General Electric
Author:
Not specified
Target Audience:
Equipment maintenance teams, parts procurement departments
Period of validity:
Not specified
Approval date:
Not specified
Modification date:
Not specified
Year:
2024
Region / City:
Munich
Theme:
Turbine disk manufacturing, automation, sustainable development
Document Type:
Press release
Organization / Institution:
MTU Aero Engines
Author:
Martina Vollmuth
Target Audience:
Industry professionals, aviation sector
Period of Action:
2024-2034
Approval Date:
July 12, 2024
Modification Date:
None
Investment:
120 million euros
Construction Time:
2.5 years
Key Technologies:
Geared Turbofan, ERCoat coating process, Flying Fuel Cell™
Energy Efficiency:
Green roof, solar panels, geothermal-compatible heating system
Future Developments:
Military and commercial engine programs
Year:
2026
Region / City:
Southern Tunisia
Theme:
Energy and Water Sustainability
Document Type:
Feasibility Study
Institution:
Siemens Energy
Author:
Not specified
Target Audience:
Researchers, Engineers, Energy and Water Management Professionals
Period of Effect:
Ongoing
Approval Date:
Not specified
Modification Date:
Not specified
Year:
2019
Region / City:
New Delhi
Sector:
Energy / Power Transmission
Document Type:
Request for Qualification
Organization:
PFC Consulting Limited
Author:
PFC Consulting Limited
Target Audience:
Potential Bidders for Transmission Service Provider
Period of validity:
Not specified
Approval Date:
October 21, 2019
Amendment Date:
Not specified
Organization:
Asia-Pacific Telecommunity
Meeting:
29th Meeting of the APT Wireless Group (AWG-29)
Meeting dates:
21–29 March 2022
Meeting format:
Virtual/Online
Document type:
Draft recommendation
Source reference:
AWG-29/OUT-25
Technical scope:
Fixed Wireless Service link performance under wind conditions
Frequency range discussed:
Millimetre-wave band
Related document:
APT Report No. APT/AWG/REP-81
Annexes:
Attenuation model under wind condition; compensation techniques; link budget evaluation
Date:
29 March 2022
Organization:
Asia-Pacific Telecommunity
Meeting:
29th Meeting of the APT Wireless Group (AWG-29)
Document number:
AWG-29/INP-58
Meeting date:
21–29 March 2022
Document date:
14 March 2022
Meeting format:
Virtual/Online
Submitting organization:
Huawei Technologies Co., Ltd.
Document type:
Working document / proposal
Subject:
Fixed wireless system link performance under wind conditions
Related document:
APT Report No. APT/AWG/REP-81
Frequency range:
Millimetre-wave (85.5 GHz)
Geographical scope:
Asia-Pacific region
Technical focus:
Antenna vibration, wind-induced attenuation models
Context:
Technical working document of a regional telecommunication standardization body outlining proposed models, measurements, and analytical approaches for assessing wind-induced degradation of fixed wireless system link performance.
Submitted to:
Dr. Jessica Thomas
Created by:
Team K — Eric Dye, Matt Olah, Isabella Gluzman, George Byrne
Course:
Engineering 1181
Institution:
The Ohio State University
Location:
Columbus, OH, USA
Date:
24 October 2019
Type of document:
Laboratory report
Topic:
Wind turbine design and energy output analysis
Experimental focus:
Blade number and pitch optimization, power generation calculations
Target:
Residential neighborhood energy assessment
Efficiency considered:
25%
Year:
2017
Region / City:
Butte, Nevada, Yuba Counties
Theme:
Fire debris removal, disaster recovery
Document Type:
Invitation for Bids (IFB)
Organization / Institution:
Department of Resources Recycling and Recovery (CalRecycle)
Author:
CalRecycle
Target Audience:
Prospective bidders
Period of Action:
November 2, 2017 - December 31, 2017
Approval Date:
November 2, 2017
Amendment Date:
November 8, 2017