Europe District Cooling Market to reach 40 billion USD by 2024

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Market Study Report adds 2018-2024 Europe District Cooling market report that offers an exhaustive coverage of the industry with brief analysis, data charts, figures, statistics that help take business decisions, company profiles and more.

-- Sweden district cooling market is predicted to reach over 3,000 TJ by 2024. Growing adoption of sustainable energy technologies on account of ambitious government targets will foster the industry growth. In addition, the geographical proximity of nation across the Gulf stream has also paved ways for the development of DC systems. In 2017 the government of Sweden has strategic initiatives to invest USD 103.7 billion for the development of clean energy technologies by 2020.

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Europe District Cooling market is predicted to reach over USD 40 billion by 2024. Increasing regulatory measures to reduce carbon emissions coupled with growing adoption of sustainable energy sources across the region have instituted a favorable business scenario for the industry players. Accelerating demand for space cooling on account of torrid weather conditions across the region will propel the business growth.

Ease of parity, high standard of maintenance & operations and economies of scale in long run are some of the prominent features which will foster the Europe district cooling market share. In addition, the high flexibility and reliability of systems with numerous production technologies will positively influence the business landscape. Extreme climatic conditions across the region including Germany, Sweden and Italy will boost the product adoption. For instance, the number of annual cooling days in 2017 in Italy were 295 when compared with 200 in 2016.

The increasing demand for commercial floor space owing to developing service sector across the region will stimulate the commercial district cooling market. The enduring investments toward infrastructural development along with increasing emphasis on sustainable building solutions and energy efficiency will further accelerate the industry growth. In 2016, according to the European real estate sector the investments across commercial properties were valued around USD 107.8 billion.

Heat pump district cooling market is anticipated to witness a growth of over 2% by 2024. The ongoing adoption of DC systems across the Northern Europe on account of its ease of compatibility with various heating technologies will stimulate the business growth. These pumps are widely used for trigeneration across the commercial and residential establishments. The production technique utilizes waste heat to energy to generate energy thereby, reducing the overall carbon emissions effectively.

France district cooling market share will grow owing to increasing population across the nation coupled with stringent government regulations toward the adoption of energy efficient systems. Increasing investments toward sustainable building solutions along with ongoing development of EMS systems will further propel the industry growth.

Eminent industry players in the Europe district cooling market includes Ramboll, Vattenfall, Veolia, Helen Oy, Engie, Wein Energi, Alfa Laval, Siemens, Fortum, Logstor and Goteborg Energi. The leading industry players are focusing on product customization and R&D activities as a major strategic position to sustain their presence across the region.

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Table of Content:

Chapter 1. Methodology and Scope

1.1. Methodology
1.1.1. Initial data exploration
1.1.2. Statistical model and forecast
1.1.3. Industry insights and validation
1.1.4. Market definition & forecast parameters
1.2. Data Sources
1.2.1. Primary
1.2.2. Secondary

Chapter 2. Executive Summary

2.1. Europe district cooling industry 360 degree synopsis, 2013 - 2024
2.1.1. Business trends
2.1.2. Production technique trends
2.1.3. Application trends
2.1.4. Regional trends

Chapter 3. Europe District Cooling Market Industry Insights

3.1. Industry segmentation
3.2. Industry landscape, 2013 - 2024
3.3. Industry ecosystem analysis
3.3.1. Vendor Matrix
3.4. Innovation & sustainability
3.5. Regulatory landscape
3.6. Cost structure analysis
3.6.1. Levelized cost of district cooling
3.6.2. Network cost of district cooling
3.6.3. Comparative cost of district cooling sources
3.7. Renewable energy share in district heating & cooling, 2010 - 2013
3.8. Installed district cooling capacity across key countries

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