NetherlandPower Generation Market

NetherlandPower Generation Market


Electric power has transformed the course of humanity and has become a vital component of infrastructure building, thus nation and economy building. Generation of electric power is diverse in nature and the establishments in the industry keep innovating and reinventing technologies for a higher yield.

The power generation market consists of establishments primarily engaged in operating electric power generation facilities. They produce electric energy and provide electricity to transmission systems or to electric power distribution systems. The production can be from a variety of sources including fossil fuels such as coal, oil, natural gas; water, nuclear, solar, wind and other renewables.

In the last decade (2010-2020), the electricity generation has increased by 2.2% from 21,570 terawatt hours to 26,823 terawatt hours. During the same period, the power generation from oil decreased by 2.24%, gas increased by 2.55%, coal increased by 0.88%, nuclear decreased by 0.25%, hydro increased by 2.26%, renewables increased by 15.25% and from other sources increased by 0.68%.

The power generation market is undergoing a systemic change where the maximum increase in new power generation capacity is primarily from renewable energy generation sources. The share of renewables in the total energy mix grew from 3.53% in 2010 to 11.73% in 2020.

Netherlands Power Generation Scenario

In 2020, the electric power generation in the Netherlands was 122.38 terawatt hours, accounting for 0.46% of the power generation in the world. The percentage of population with access to electricity was 100. 1.06% of the power was generated from oil, 58.95% from gas, 7.21% was from coal, while 26.15% was from renewable sources. Among the renewable sources, solar accounted for 25.17% and wind accounted for 47.7%. During 2015-2020, the electricity generation increased by 2.14%.

The installed capacity of Solar Photovoltaic in the Netherlands was 10213 MW while for wind it was 6600 MW. The capacity increased by 46.26% and 14.25% for solar and wind respectively, since 2015.

In the same year, the average electricity price in the Netherlands for the residential sector was US Cents 14.4/kWh, while, for the commercial sector it was US Cents XX/kWh.

What we cover in the Report?

According to Blackridge Research, the companies in the power generation sector need to capitalize on the opportunities arising from shifting business models with sustainability as a focal point.

Blackridge Research?s Netherlands Power Generation Market report contains the installed capacity of power generation sources (year-on-year), the market size and forecast to 2027, the list of ongoing and upcoming power generation and transmission & distribution facilities and the regulatory scenario within the power market of the Netherlands

Furthermore, the report will contain the drivers and restraints within Netherlands Power Generation Market along with a meticulous evaluation for their impact in the near-, medium-, or longer-term using Harvey balls and a presentation to enable identify market opportunities and plan for a long-term growth.

The impact of COVID ? 19 pandemic is an integral part of the report.

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1. Executive Summary
2. Research Scope and Methodology
3. Market Analysis
3.1 Introduction
3.2 Country Power Generation Market Analysis
3.3 Market Dynamics
3.3.1. Drivers
3.3.2 Restraints
3.4 Market Trends & Developments
3.5 Analysis of Covid-19 Impact
3.6 Market Opportunities
3.7 Market Size and Forecast to 2027
3.7.1 Power Generation Installed Capacity (2015-2027)
3.7.2 Power Transmission and Distribution Market Size and Forecast to 2027
3.8 List of Projects
3.9 Government Policies and Regulations
4. PESTLE Analysis
5. Market Segmentation & Analysis
5.1 Power Generation
5.1.1 Fossil Fuel Based Power Generation
5.1.2 Hydroelectric Power Generation
5.1.3 Nuclear Power Generation
5.1.4 Solar Power Generation
5.1.5 Wind Power Generation
5.1.6 Other Renewables Based Power Generation
5.2 Power Transmission and Distribution
5.2.1 Transmission and Distribution Equipment
5.1.2 Smart Grid
6. Competitive Landscape
6.1 List of Notable Players in the Market
6.2 M&A, JVs, Partnerships and Agreements
6.3 Strategies of Key Players
7. Key Company Profiles
8. Conclusions and Recommendations
Abbreviations
Additional Notes
Disclaimer
3.2 Indonesia Power Generation Market Analysis
3.3 Market Dynamics
3.3.1. Drivers
3.3.2 Restraints
3.4 Market Trends & Developments
3.5 Analysis of Covid-19 Impact
3.6 Market Opportunities
3.7 Power Generation Installed Capacity and Forecast to 2027
3.8 List of Projects
3.9 Government Policies and Regulations
4. PESTLE Analysis
5. Market Segmentation & Analysis
5.1 Power Generation
5.1.1 Fossil Fuel Based Power Generation
5.1.2 Hydroelectric Power Generation
5.1.3 Nuclear Power Generation
5.1.4 Solar Power Generation
5.1.5 Wind Power Generation
5.1.6 Other Renewables Based Power Generation
6. Competitive Landscape
6.1 List of Notable Players in the Market
6.2 M&A, JVs, Partnerships and Agreements
6.3 Strategies of Key Players
7. Key Company Profiles
8. Conclusions and Recommendations
Abbreviations
Additional Notes
Disclaimer

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