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Det grundlæggende dualtiske energisysem 

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Strong expansion with renewable energy

With a strong expansion of renewable energy, a large part and more than 90% of consumption could come directly from renewable energy. As shown in the graph where 3 weeks of renewable energy production for Western Denmark has increased by a factor of 2.5. More than 60% of renewable energy production is outside of consumption. With a strong expansion of renewable energy, a large part and more than 90% of consumption could come directly from renewable energy. As shown in the graph where 3 weeks of renewable energy production for Western Denmark has increased by a factor of 2.5. More than 60% of renewable energy production is outside of consumption. With a strong expansion of renewable energy, a large part and more than 90% of consumption could come directly from renewable energy. As shown in the graph where 3 weeks of renewable energy production for Western Denmark has increased by a factor of 2.5. More than 60% of renewable energy production is outside of consumption.. with a strong expansion of renewable energy, a large part and more than 90% of consumption could come directly from renewable energy. As shown in the graph where 3 weeks of renewable energy production for Western Denmark has increased by a factor of 2.5. More than 60% of renewable energy production is outside of consumption..

With a strong expansion of renewable energy, a large part and more than 90% of consumption could come directly from renewable energy. As shown in the graph where 3 weeks of renewable energy production for Western Denmark has increased by a factor of 2.5. More than 60% of renewable energy production is outside of consumption.. with a strong expansion of renewable energy, a large part and more than 90% of consumption could come directly from renewable energy. As shown in the graph where 3 weeks of renewable energy production for Western Denmark has increased by a factor of 2.5. More than 60% of renewable energy production is outside of consumption. With a strong expansion of renewable energy, a large part and more than 90% of consumption could come directly from renewable energy. As shown in the graph where 3 weeks of renewable energy production for Western Denmark has increased by a factor of 2.5. More than 60% of renewable energy production is outside of consumption. With a strong expansion of renewable energy, a large part and more than 90% of consumption could come directly from renewable energy. As shown in the graph where 3 weeks of renewable energy production for Western Denmark has increased by a factor of 2.5. More than 60% of renewable energy production is outside of consumption.


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Moderate expansion with renewable energy

In the existing supply areas with a significant expansion of renewable energy (Denmark, California, Germany), renewable energy should supply up to 70% of consumption with the capacity of renewable energy that is operational.


However, various conflicts driven by political framework conditions such as biogas and biomass power plants providing electricity production with subsidies, when renewable energy could supply this electricity demand - and the power plant often produces electricity because it is the waste heat from the electricity production that is needed for district heating or for process energy in industry, or energy supply that could have been supplied by renewable energy. In addition, technical barriers such as old power plants that cannot start and stop quickly cause problems with the integration of renewable energy when old plants end up producing when renewable energy could supply the electricity demand, conditions that collectively make renewable energy integration difficult.

For example, in 2024, RE in Western Denmark produced 17 TWh of electricity out of a total consumption of 24 TWh for the region. But when power plants and abroad supplied electricity to the electricity grid, when RE could actually handle the supply of the electricity grid, less than 11 TWh of the RE electricity was usable in the region, i.e. only slightly over 50% of the supply came directly from RE.


See the graph above. If RE for the Western Danish supply area could get full access to the supply without conflict with foreign electricity or electricity from power plants, then more than 75% of the electricity consumption could be supplied directly from local RE, when there is a coincidence between RE production and consumption.

When a large proportion of electricity for consumption must come from RE, it naturally follows that

Steam generator from Bosch that can convert surplus electricity into process steam see   Link

See the graph above.If renewable energy for the Western Danish supply area could gain full access to the supply without conflict with foreign power or power from power plants, then more than 75% of the electricity consumption could be supplied directly from local renewable energy, when there is a coincidence between renewable energy production and consumption.

When a large proportion of electricity for consumption is to come from renewable energy, it naturally follows that

Moderate expansion with renewable energy

In the existing supply areas with a significant expansion of renewable energy (Denmark, California, Germany), renewable energy should supply up to 70% of consumption with the capacity of renewable energy that is operational.


However, various conflicts driven by political framework conditions such as biogas and biomass power plants providing electricity production with subsidies, when renewable energy could supply this electricity demand - and the power plant often produces electricity because it is the waste heat from the electricity production that is needed for district heating or for process energy in industry, or energy supply that could have been supplied by renewable energy. In addition, technical barriers such as old power plants that cannot start and stop quickly cause problems with the integration of renewable energy when old plants end up producing when renewable energy could supply the electricity demand, conditions that collectively make renewable energy integration difficult.

For example, in 2024, RE in Western Denmark produced 17 TWh of electricity out of a total consumption of 24 TWh for the region. But when power plants and abroad supplied electricity to the electricity grid, when RE could actually handle the supply of the electricity grid, less than 11 TWh of the RE electricity was usable in the region, i.e. only slightly over 50% of the supply came directly from RE.


See the graph above. If RE for the Western Danish supply area could get full access to the supply without conflict with foreign electricity or electricity from power plants, then more than 75% of the electricity consumption could be supplied directly from local RE, when there is a coincidence between RE production and consumption.

When a large proportion of electricity for consumption must come from RE, it naturally follows that

Steam generator from Bosch that can convert surplus electricity into process steam see   Link

See the graph above.If renewable energy for the Western Danish supply area could gain full access to the supply without conflict with foreign power or power from power plants, then more than 75% of the electricity consumption could be supplied directly from local renewable energy, when there is a coincidence between renewable energy production and consumption.

When a large proportion of electricity for consumption is to come from renewable energy, it naturally follows that

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The art of integrating renewable
energy (RE)

One of the most important tools for integrating very large productions from renewable energy sources is the dualistic production system, which can operate at industries. The supply network and the dualistic production system, for example, in industry consume large amounts of electricity when solar and wind produce. As renewable energy supplies fail, the power plant at the industry supplies the electricity grid and the industry switches to supplying the electricity grid.

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