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District Heating Market Overview by 2024: Vattenfall, Dong Energy, NRG Energy, Fortum, Statkraft, Logstor, Shinryo Corporation, Ramboll, STEAG, Goteborg Energi, KDHC, RWE AGKeppel DHCS, Kelag Warme, Hafslund

02-20-2019 06:13 AM CET | Energy & Environment

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District Heating Market

District Heating Market

The District Heating market dynamics, forces, companies and trends have been determined after conducting a detailed study of the industry for this newly released research report now available with Market Study Report LLC.

Commercial district heating market is predicted to gain over 6% by 2024. Growing demand for sustainable & advanced heating technologies coupled with active measures toward achieving energy security will support the buisness growth. The capability of DH systems to provide high operational performance, enhanced reliability and economic feasibility across commercial applications will accelerate the adoption of systems. Furthermore, the development of advanced technology solutions including pre-insulated piping network will encourage the district heating market growth.

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District Heating Market is predicted to reach over USD 250 billion by 2024. Ongoing adoption of government regulations toward limiting carbon emissions along with advent of advanced technologies toward reusing and recycling the waste energy will augment the Industry growth. For instance, as per the Clean Air Act, the U.S. EPA has regulated the elimination of toxic air pollutants including SO2, NOx and CO2, emissions. As per the European Union, the DH system based on Combined Heat & Power (CHP) emits lesser carbon emissions, up to 60 % in comparison to the traditional boiler-based heating systems fueled by the same source.

Solar district heating market is anticipated to expand over 8% by 2024. Key features including, ease of installation, lower operational cost, economic viability and environmental performance will enhance business landscape. The European Union is promoting the installation of solar DH systems, as per its SDHtake-off plan, across Denmark, Germany, Austria, Italy and Czech Republic. The program has added a capacity of about 500 MWth of SDH systems along with government plans for further addition of over 8 GWth till 2020.

Strict government standards and policies toward adoption of green & sustainable technologies and reducing the CO2 emissions will foster the Russia district heating market. By 2020, the country has planned to reduce the GHG emissions by 75% compared to the levels in 1990. Rapid modernization and renovation measures toward existing traditional heating systems to attain energy efficiency will encourage the product adoption.

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China district heating market in 2017, contributed to more than 30% of the global market share. Effective government measures to curb air pollution and promotion of sustainable solutions for heating across consumers will complement the business landscape. For instance, the ministry of Housing & Urban-Rural Development has announced to increase the capacity of indoor heating zones across the upper belt in Southern China, with temperature falling below 50 C during winters. Moreover, in 2016, the World Bank had accepted a loan of worth USD 100 million for Hebai province of China for establishing the green heating deployments.

Eminent players across the district heating market include Goteborg, Fortum, Vattenfall, Statkraft, STEA, Shinryo, Ramboll, RWE, rsted, LOGSTOR, NRG., Hafslund, Keppel, Korea District Heating Co and Kelag.

Table of Contents:

Chapter 1 Methodology & 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 and forecast parameters

1.1.5 Abbreviations

1.2 Data Sources

1.2.1 Primary

1.2.2 Secondary

1.2.2.1 Paid sources

1.2.2.2 Public sources

Chapter 2 Executive Summary

2.1 District heating industry 360 degree synopsis, 2013 - 2024

2.1.1 Business trends

2.1.2 Source trends

2.1.3 Application trends

2.1.4 Regional trends

Chapter 3 District Heating Industry Insights

3.1 Industry segmentation

3.2 Industry landscape, 2013 - 2024 (USD Billion)

3.3 Industry ecosystem analysis

3.3.1 Scenario I

3.3.2 Scenario II

3.3.3 Scenario III

3.3.4 Vendor Matrix

3.4 Innovation & sustainability

3.5 Regulatory landscape

3.5.1 U.S.

3.5.1.1 U.S. Acts

3.5.1.2 U.S Federal agencies

3.5.1.3 Industry and non-governmental organizations

3.5.2 Europe

3.5.2.1 UK

3.5.2.2 Germany

3.5.2.3 Denmark

3.5.2.4 Sweden

3.5.2.4.1 Long term energy and climate goals

3.5.2.4.2 The Energy Framework Agreement and the Energy Commission

3.5.2.4.3 The District Heating Act

3.5.2.4.4 Long term energy and climate goals

3.5.2.5 Italy

3.5.2.6 Russia

3.5.2.6.1 Federal Heat Law

3.5.3 China

3.6 Industry impact forces

3.6.1 Growth drivers

3.6.1.1 North America

3.6.1.1.1 Strict regulations towards carbon emissions

3.6.1.1.2 Favorable government policies towards renewable including CHP

3.6.1.2 Europe

3.6.1.2.1 Government norms towards zero emission buildings

3.6.1.2.2 Extreme climatic conditions

3.6.1.2.3 Government incentives towards adoption of district heating systems

3.6.1.3 Asia Pacific

3.6.1.3.1 Rapid urbanization and industrialization

3.6.1.3.2 Clean energy directives

3.6.2 Industry pitfalls & challenges

3.6.2.1 High capital cost

3.6.2.2 Volatile Prices

3.7 Growth potential analysis

3.8 Price trend analysis

3.8.1 Levelized costs of district heating vs decentralized production

3.8.2 Network costs for district heating

3.8.3 Comparative costs of district heating sources

3.8.4 Normalized district heating price trend analysis, 2013-2020

3.9 Percentage of citizens served by district heating in key countries

3.10 Trench length of district heating pipeline system in key countries, 2016-2017

3.11 Installed district heating capacity in key countries, GWth

3.12 Geothermal DH capacity installed in Europe, 2013-2014 (MWh)

3.13 Heat generation stats from RE sources across key countries, 2010-2015

3.14 Share of renewable energy in heating, 2015-2016

3.15 Development of future district heating & cooling solutions

3.15.1 INDIGO

3.15.2 FLEXYNETS

3.15.3 E2District

3.15.4 InDeal

3.15.5 H-DisNet (H-DisNet Hybrid Thermo-Chemical District Networks)

3.16 Entry barriers

3.17 Degree of competition

3.17.1 North America

3.17.2 Europe

3.17.3 Asia Pacific

3.18 Case study analysis - Integrated DHC system in Stockholm

3.18.1 Project Overview

3.18.2 Key facts & figures

3.18.3 Customer Segmentation

3.18.4 Urban development & expansion of DHC

3.18.5 Policies & incentives supporting the DHC

3.19 Technical and operational parameters of district heating systems

3.20 Global & regional heat statistics, 2010-2015, TJ

3.21 Customer requirement

3.22 Customer group requirement

3.23 Porter's Analysis

3.24 Competitive landscape, 2017

3.24.1 Strategy dashboard

3.24.1.1 Statkraft AS

3.24.1.2 Ramboll Group A/S

3.24.1.3 STEAG GmbH

3.25 PESTEL Analysis

Chapter 4 District Heating Market, By Source

4.1 District heating market revenue share by source, 2017 & 2024

4.2 CHP

4.2.1 Global market from CHP, 2013 - 2024

4.2.2 Global market from CHP, by region, 2013 - 2024

4.3 Geothermal

4.3.1 Global market from geothermal, 2013 - 2024

4.3.2 Global market from geothermal, by region, 2013 – 2024

For more information on this report at: https://www.marketstudyreport.com/reports/district-heating-market/?utm_source=Openpr.com-SP

Related Reports: -

2018 Global District Heating and Cooling Industry Report - History, Present and Future

The global market size of District Heating and Cooling is $XX million in 2017 with XX CAGR from 2013 to 2017, and it is expected to reach $XX million by the end of 2023 with a CAGR of XX% from 2018 to 2023.

https://www.marketstudyreport.com/reports/2018-global-district-heating-and-cooling-industry-report-history-present-and-future/?utm_source=OPR-SP

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