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Comparative Life Cycle Assessment of tidal stream turbine blades
Stuart R.J. Walker
, Philipp R. Thies
,
Lars Johanning
School of Engineering, Computing and Mathematics
University of Exeter
Ocean Technology
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peer-review
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Dive into the research topics of 'Comparative Life Cycle Assessment of tidal stream turbine blades'. Together they form a unique fingerprint.
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Engineering
Life Cycle Assessment
100%
Impact Category
100%
Stream Turbine
100%
Environmental Impact
75%
Energy Engineering
25%
Fossil Fuel
25%
Greenhouse Gas
25%
Power Generation
25%
Renewable Energy
25%
Tidal Power
25%
Composite Material
25%
Flax Fiber
25%
Blade Turbine
25%
Incineration
25%
Fiber-Reinforced Polymer
25%
Earth and Planetary Sciences
Fibreglass
100%
Life Cycle Assessment
100%
Turbine Blades
100%
Environmental Impact
60%
Fossil Fuel
20%
Greenhouse Gas Emission
20%
Renewable Energy
20%
Tidal Power
20%
Electricity Generation
20%
Reinforced Plastic
20%
Energy Industry
20%
Carbon Fiber
20%
Incineration
20%
Non-Recyclable Waste
20%
Composite Material
20%
Agricultural and Biological Sciences
Life Cycle Engineering
100%
Glass Fiber
100%
Environmental Impact
60%
Fossil Fuel
20%
Greenhouse Gas
20%
Equipment
20%
Composite Material
20%
Carbon Fiber
20%
Flax
20%
Material Science
Glass Fiber
100%
Fossil Fuel
20%
Gas Emission
20%
Greenhouse Gas
20%
Carbon Fiber
20%
Composite Material
20%
Reinforced Plastic
20%