Offshore Wind Market Insight Report - Find out the Secret Factors behind the Growth in near Future According to New Research
Global Offshore Wind Industry
Research Report provides information on Major Segments, Major Share, Trends,
Top Key Vendors and Regional Outlook globally. This report will help the viewer
in Better Decision Making.
Market Overview:
The global Offshore Wind market was valued at USD 22.85
Billion in 2015, and is projected to reach USD 72.18 billion by 2025, growing
at a CAGR of over 12% over the forecast period. The continuous growth is
attributed to the growing demand for clean energy for protecting the
environment and decrease the carbon emissions by generating power from
renewable resources. Offshore wind energy forms an integral part of clean
energy resources and possess higher capacity factor in comparison to onshore
wind.
National Renewable Energy Laboratory (NREL) for the U.S.
Department of Energy (DOE) is intended to deliver offshore financiers, wind
policymakers, developers, regulators, researchers, engineers, and supply chain
participants. The laboratory offers quantitative information about the offshore
wind market, cost trends and various technology offered in the United States
and worldwide. According to Offshore Wind Technologies Market Report by NREL,
Europe dominates the market with 90% of global installed capacity at the end of
2016. North America is expected to witness significant growth for commissioning
of first offshore wind project, the 30-MW BIWF. Furthermore, Asia Pacific
region has also witnessed an offshore deployment in 2015 and 2016.
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Market Growth and
Analysis:
Various emerging nations have unwrapped surplus
opportunities for the global offshore wind turbines market, since the pressure
for lowering carbon emissions is mounting each day. A combination of increasing
plant size, infrastructure technology improvements, and related R&D
investments, coupled with favorable market, policies, and economic conditions
has led to a key trend in power generation for offshore wind. Offshore wind
technology has become more cost-effective with each competitive tender in
Europe. Industry-leading countries such as the UK, the Netherlands, Germany,
Denmark, and Belgium are into a transition phase to market-oriented policies.
Offshore wind is an abundant clean energy solution for
many coastal load centers with large population and higher energy demand. Cost
reduction strategies and technological improvements are being exported globally
with the deployment of offshore wind market. Offshore wind technology includes
inshore water areas as well including creeks, lakes, and sheltered coastal
areas, utilizing conventional fixed bottom turbine technologies and deep water
areas utilize floating turbines.
Shifting preference of consumers, growing demand for
conventional sources of energy and rise in demand for electricity consumption
are major drivers of the global offshore wind market. However, less investments
and high initial costs tends to hinder the growth over the forecast period.
Although, increasing R&D activities in cheaper products has anticipated
paving new opportunities for offshore wind market.
Major Key Players:
Some of the prominent players operating in the global
offshore wind turbines market are Enercon GmbH, Xinjiang Goldwind Science &
Technologies Co. Ltd, Gamesa Corporacion Technologica S.A., Siemens Wind Power,
Guodian United Power Technology Company Ltd, Vestas Wind Systems A/S, Nordex
S.E., Upwind Solutions Inc., Suzlon Group, and GE Wind Energy.
Market
Segmentation:
Based on component segment, the report includes the
revenue, growth rate, and market share, of each type,
• Turbine
• Substructure
• Electrical
Infrastructure
The turbine component is estimated to be the largest
segment for the offshore wind market
The turbines segment has been expected to acquire the
major share of the total offshore wind project. It is the most important
component of an offshore wind farm. Companies are upgrading and increasing the
turbine size owing to advanced technologies and to increase energy efficiency.
Moreover, larger the wind turbine, the more energy is produced each time as the
turbines rotate. Therefore, turbine manufacturers are continuously upgrading
and expanding their product portfolio for contributing to the ever increasing
demand for high capacity wind turbines.
On the basis of capacity, the market has been segmented
further, and displays growth rate and market share over the forecast period;
• Upto 1 MW
• 1-3 MW
• 3-5 MW
• 5 MW and Above
Based on location, the market has been bifurcated into:
• Shallow Water
• Transitional
Water
• Deep Water
Shallow water segment has been anticipated to be the
largest offshore wind market by location
Among the three water depth location for offshore wind
turbines market, shallow water is anticipated to hold the largest share over
the forecast period. The development of shallow water is cost effective owing
to better weather conditions, however, installing wind turbines in deep water
becomes expensive due to high maintenance cost. Although, offshore wind
turbines are getting installed in all three water locations depending on the
region, turbine capacity, and wind speed. Shallow water condition mostly
prevails in the European countries owing to favorable weather conditions.
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Regional Analysis:
Europe and Asia Pacific region are anticipated to deliver
significant growth potential for the offshore wind turbines market throughout
the forecast period. Europe region has been anticipated to dominate the global
offshore wind turbines market, with vast expansion in offshore wind power generation.
Wind is one of the leading sources of the renewable energy mix in the region.
Offshore wind energy is gaining market share at a rapid pace in the renewable
energy mix, since the advantages it possesses over onshore wind energy.
Major Points from
Table of content:
• Executive
Summary
• Research
Methodology
• Market
Dynamics
• Industry
Overview
• Global
Offshore Wind Market, By Product (2017-2025)
• Global
Offshore Wind Market, By Regions (2017-2025)
• Market
Competition Analysis
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