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Flywheel Energy Storage System Market Size, Share & Trends Analysis Report by Application (UPS, Distributed Energy Generation, Transport, Data Centers), by Region, and Segment Forecasts, 2020 - 2027

  • ID: 3972840
  • Report
  • July 2020
  • Region: Global
  • 123 pages
  • Grand View Research

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FEATURED COMPANIES

  • Active Power
  • Amber Kinetics, Inc.
  • Beacon Power, LLC
  • Energiestro
  • Oxto Energy
  • Piller Group GmbH
  • MORE

Flywheel Energy Storage Systems Market Growth & Trends

The global flywheel energy storage system market size is expected to reach USD 552.1 million by 2027, escalating at a CAGR of 7.4% over the forecast period. Increasing demand for energy storage systems across various industries along with the implementation of favorable regulatory policies regarding clean power generation and reducing dependence on fossil-fuel based power sources is likely to drive the market over the forecast period.

Flywheel serves as a reliable energy storage solution in developing areas with less reliable grid infrastructure and high electricity costs, and in island areas where grids are reliant on biofuels and diesel generators. In these remote areas, flywheel storage is set up in integration with renewable wind and solar power, thereby combating the intermittent nature of renewable power while providing a continuous power supply to the grid or other facilities.

The technology offers several advantages over batteries to store energy. Some of the advantages include unlimited daily cycling capacity, no chemical reaction, zero capacity degradation, and high round-trip efficiency. However, parameters such as high cost and short duration of flywheel power are among the critical factors expected to hamper market growth over the forecast period.

Industry participants are heavily investing in research and development activities in order to find a solution to the high maintenance cost incurred by technology. Manufacturers are focusing on optimizing the geometry and metallurgical properties of flywheel rotor including the chemical composition and processing refinement of low-carbon steel alloy. Moreover, large market players are tying up with small regional companies in order to enhance their foothold in the market globally.

Flywheel Energy Storage Systems Market Report Highlights

  • Other segments occupied the largest market share in 2019 in terms of revenue. Flywheel energy storage providing frequency regulation in grid balancing operations is set to be driving the market across this segment
  • The distributed energy generation segment is anticipated to be the fastest-growing application segment owing to the rising demand for isolated grids across remote communities and remote industrial operations
  • The data centers segment occupied a significant market share and is projected to witness a high growth rate over the forecast period. This growth can be attributed to the large number of IT companies deploying the technology at their massive data centers
  • North America accounted for the largest regional market share in terms of revenue, owing to the growing number of projects to reserve power across the region, mainly the U.S.
  • In the Asia Pacific, the market is expected to witness significant CAGR over the forecast period owing to the growing demand for continuous power supply along with government efforts to supply clean power across end-use markets.
Note: Product cover images may vary from those shown

FEATURED COMPANIES

  • Active Power
  • Amber Kinetics, Inc.
  • Beacon Power, LLC
  • Energiestro
  • Oxto Energy
  • Piller Group GmbH
  • MORE

Chapter 1. Methodology and Scope
1.1. Research Methodology
1.2. Research Scope & Assumption
1.3. Information Procurement
1.3.1. Purchased Database
1.3.2. Analyst's Internal Database
1.3.3. Secondary Sources & Third-Party Perspectives
1.3.4. Primary Research
1.4. Information Analysis
1.4.1. Data Analysis Models
1.5. Market Formulation & Data Visualization
1.6. Data Validation & Publishing

Chapter 2. Executive Summary
2.1. Market Outlook
2.2. Segmental Outlook
2.3. Competitive Insights

Chapter 3. Flywheel Energy Storage System Market Variables, Trends & Scope
3.1. Market Segmentation & Scope
3.2. Market Lineage Outlook
3.3. Penetration and Growth Prospect Mapping
3.4. Industry Value Chain Analysis
3.5. Technology Overview
3.6. Regulatory Framework
3.7. Market Dynamics
3.7.1. Market Driver Analysis
3.7.1.1. Growing energy storage market
3.7.1.2. Favorable government policies
3.7.2. Market Restraint Analysis
3.7.2.1. High storage cost associated with flywheel technology
3.7.3. Industry Challenges
3.8. Business Environment Analysis: Flywheel Energy Storage System Market
3.8.1. Industry Analysis - Porter’s
3.8.1.1. Supplier Power
3.8.1.2. Buyer power
3.8.1.3. Threat of substitutes
3.8.1.4. Threat of new entrants
3.8.1.5. Competitive rivalry
3.8.2. PESTEL Analysis
3.8.2.1. Political Landscape
3.8.2.2. Economic Landscape
3.8.2.3. Social Landscape
3.8.2.4. Technological Landscape
3.8.2.5. Environmental Landscape
3.8.2.6. Legal Landscape

Chapter 4. Flywheel Energy Storage System Market Application Outlook
4.1. Market Size Estimates & Forecasts and Trend Analysis, 2016 - 2027 (Power Capacity, kW; Revenue, USD Million)
4.1.1 UPS
4.1.1.1 Market estimates and forecasts by region, 2016 - 2027 (Power Capacity, kW; Revenue, USD Million)
4.1.2 Distributed Energy Generation
4.1.2.1 Market estimates and forecasts by region, 2016 - 2027 (Power Capacity, kW; Revenue, USD Million)
4.1.3 Transport
4.1.3.1 Market estimates and forecasts by region, 2016 - 2027 (Power Capacity, kW; Revenue, USD Million)
4.1.4 Data centers
4.1.4.1 Market estimates and forecasts by region, 2016 - 2027 (Power Capacity, kW; Revenue, USD Million)
4.1.5 Others
4.1.5.1 Market estimates and forecasts by region, 2016 - 2027 (Power Capacity, kW; Revenue, USD Million)

Chapter 5 Flywheel Energy Storage System Market Regional Outlook
5.1 Flywheel Energy Storage System Market, By Region, 2019 & 2027
5.2 North America
5.2.1 Market estimates and forecasts by application, 2016 - 2027 (Power Capacity, kW; Revenue, USD Million)
5.3 The U.S.
5.3.1 Market estimates and forecasts by application, 2016 - 2027 (Power Capacity, kW; Revenue, USD Million)
5.4 Canada
5.4.1 Market estimates and forecasts by application, 2016 - 2027 (Power Capacity, kW; Revenue, USD Million)
5.5 Mexico
5.5.1 Market estimates and forecasts by application, 2016 - 2027 (Power Capacity, kW; Revenue, USD Million)
5.6 Europe
5.6.1 Market estimates and forecasts by application, 2016 - 2027 (Power Capacity, kW; Revenue, USD Million)
5.7 The U.K.
5.7.1 Market estimates and forecasts by application, 2016 - 2027 (Power Capacity, kW; Revenue, USD Million)
5.8 Germany
5.8.1 Market estimates and forecasts by application, 2016 - 2027 (Power Capacity, kW; Revenue, USD Million)
5.9 France
5.9.1 Market estimates and forecasts by application, 2016 - 2027 (Power Capacity, kW; Revenue, USD Million)
5.10 Asia Pacific
5.10.1 Market estimates and forecasts by application, 2016 - 2027 (Power Capacity, kW; Revenue, USD Million)
5.11 China
5.11.1 Market estimates and forecasts by application, 2016 - 2027 (Power Capacity, kW; Revenue, USD Million)
5.12 India
5.12.1 Market estimates and forecasts by application, 2016 - 2027 (Power Capacity, kW; Revenue, USD Million)
5.13 Japan
5.13.1 Market estimates and forecasts by application, 2016 - 2027 (Power Capacity, kW; Revenue, USD Million)
5.14 South Korea
5.14.1 Market estimates and forecasts by application, 2016 - 2027 (Power Capacity, kW; Revenue, USD Million)
5.15 Central and South America
5.15.1 Market estimates and forecasts by application, 2016 - 2027 (Power Capacity, kW; Revenue, USD Million)
5.16 Brazil
5.16.1 Market estimates and forecasts by application, 2016 - 2027 (Power Capacity, kW; Revenue, USD Million)
5.17 Argentina
5.17.1 Market estimates and forecasts by application, 2016 - 2027 (Power Capacity, kW; Revenue, USD Million)
5.18 MEA
5.18.1 Market estimates and forecasts by application, 2016 - 2027 (Power Capacity, kW; Revenue, USD Million)
5.19 Saudi Arabia
5.19.1 Market estimates and forecasts by application, 2016 - 2027 (Power Capacity, kW; Revenue, USD Million)

Chapter 6 Competitive Analysis
6.1 Key Global Players & Recent Developments & Their Impact On The Industry
6.2 Vendor Landscape
6.2.1 Company Market Position Analysis

Chapter 7 Company Profiles
7.1 Active Power
7.1.1 Company Overview
7.1.2 Financial performance
7.1.3 Flywheel Type benchmarking
7.1.4 Strategic Initiatives
7.2 Amber Kinetics, Inc.
7.2.1 Company Overview
7.2.2 Financial Performance
7.2.3 Product Benchmarking
7.2.4 Strategic Initiatives
7.3 Beacon Power, LLC
7.3.1 Company Overview
7.3.2 Financial Performance
7.3.3 Product Benchmarking
7.3.4 Strategic Initiatives
7.4 Calnetix Technologies, LLC.
7.4.1 Company Overview
7.4.2 Financial Performance
7.4.3 Product Benchmarking
7.4.4 Strategic Initiatives
7.5 Piller Group GmbH
7.5.1 Company Overview
7.5.2 Financial Performance
7.5.3 Product Benchmarking
7.5.4 Strategic Initiatives
7.6 Powerthru
7.6.1 Company Overview
7.6.2 Financial Performance
7.6.3 Product Benchmarking
7.6.4 Strategic Initiatives
7.7 VYCON, Inc.
7.7.1 Company Overview
7.7.2 Financial Performance
7.7.3 Product Benchmarking
7.7.4 Strategic Initiatives
7.8 Stornetic GmbH
7.8.1 Company Overview
7.8.2 Financial Performance
7.8.3 Product Benchmarking
7.8.4 Strategic Initiatives
7.9 Energiestro
7.9.1 Company Overview
7.9.2 Financial Performance
7.9.3 Product Benchmarking
7.9.4 Strategic Initiatives
7.10 Oxto Energy
7.10.1 Company Overview
7.10.2 Financial Performance
7.10.3 Product Benchmarking
7.10.4 Strategic Initiatives


*Full List of Tables and Figures Available on Enquiry.
Note: Product cover images may vary from those shown
  • Active Power
  • Amber Kinetics, Inc.
  • Beacon Power, LLC
  • Calnetix Technologies, LLC.
  • Piller Group GmbH
  • Powerthru
  • VYCON, Inc.
  • Stornetic GmbH
  • Energiestro
  • Oxto Energy
Note: Product cover images may vary from those shown

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