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With HVDC, less energy is wasted

Energi Danmark
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Energi Danmark
HVDCBATTERY.com in all its simplicity from turbine to consumer
The main string is found within the yellow box
No high voltage pylons - Hydrogen "carrier" 6.4GW Grounded HVDC

Most HVDC systems over land use overhead lines. because there are less energy losses over long distances, often about 600 km or more, usually from remote power plants. Hydro turbines or wind farms. HVDC is preferred today because the cost is lower than for similar AC transmissions. A DC line only needs two main conductors, and losses in DC transmission are lower. HVDC converter stations have become cheaper and more efficient, so an HVDC system makes good economic sense.

Long-distance HVDC projects using overhead lines are found all over the world, in the USA, Canada, Brazil, China and India.

The number of HVDC transmission lines is becoming more common worldwide because the development of efficient and cheaper DC/DC converters, thyristors and high-voltage DC switches is becoming more efficient and cheaper.
In addition, there is a greater need to transport energy from remote areas to metropolitan areas.

There are advantages and disadvantages to DC / AC

In the Danish household today we have 230V 16A, we have become accustomed to it, we can manage it and we will keep it
HVDCBATTERY.com only constitutes what you can see in the photo, as framed in a yellow circle.
It is only what you can see in the yellow field that has an actual battery /storage function, where Hydrogen follows the superconductor

Therefore, we are creating a rational 6.4GW main string down through the country from Skagen to Tønder and across Funen to Helsingør From the main string that "Carries" ELECTRONIC and hydrogen, we connect x number of wind turbines - x number of Taps and filling stations - x number of DC/AC "Step Down" transformer stations that serve cities and residential areas with the "old-fashioned" 230V AC grid.

In a rational and thoughtful way, so that the entire main string can be divided into 4 - 5 modules/regions, which in the event of war and terror, each have a roughly equal distribution of input/output so that each of the five regions can function independently


We lay underground and use new faster technologies

Offshore connections can also benefit greatly from the technology as shown by HVDCBATTERY

So far it has not been possible to "control" temperature and load quickly enough in buried high-voltage cables, but today all the ugly overhead lines must be buried together with Hydrogen, it is cheaper today, we lay it at the same time and we have technology for monitoring and control.

Energi Danmark

Spain - Portugal - Southern France and the entire Iberian Peninsula were blacked out for a day on 28/4-25 nice 55,000 without power 26/05, Germany 28/05 - Same - same.
Denmark can also expect to go down on poorly maintained energy infrastructure and the entire country will be blacked out because the old AC grid cannot handle the increasingly large fluctuations in consumption, ? ?

It is the AC grid that collapses because phase shifts occur and when/if a supplier/wind farm "goes out" and cannot find the same frequency 50/60Hz then things go wrong, and this happens when there is too much fluctuation in delivery/consumption

That cannot happen for HVDCBATTERY.com because we skip a transformation and if one of the modules/regions has problems in the AC system, a phase shift/Error will be stopped at the nearest "step Down" transformer before the HVDC main string


We owe AI "artificial intelligence" a more than 100 X faster calculation algorithm and Microsoft's SQL file storage format that more than halves the response time to an SQL call.

If Denmark - Germany - France and Spain established the same HVDCBATTERY.com ? - - then everyone could be connected in parallel and would function as a mega battery EUROPE - could draw on and charge


Power will always find the shortest path

We know that POWER ALWAYS finds the shortest path. Therefore, we must rationalize with the large consumer cities in relation to the total supplier capacity, and every time a municipality allocates area for industry, it must try to get close to the HVDCBATTERY.com main line where there is a stronger electricity and hydrogen connection (When hydrogen becomes more widespread, it will be a criterion if municipalities want to attract industry and jobs)

Energi Danmark

Today we have cables - wires - High voltage across the country - - Hesselø is intended to land in Borup - - why? - if Helsingør is closer and consumes all the electricity Hesselø can produce

POWER ALWAYS finds the shortest path, that's why we connect Hesselø in Kvistgård (because Helsingør will consume the majority of the energy Hesselø wind farm can deliver) and - - Borup is not geo-strategically well located, if we have to rationalize with copper cables and load on the network, - -

Remember power will always find the shortest path, and it is not via Borup.

If the defense finds that Frederikshavn should have a shipyard for warships and needs a Hydrogen melting furnace for casting the large engine parts for a "Hydrogen combustion engines" then power is drawn from Læssø and hydrogen directly from the entire HVDCBATTERY.com main string and the load/energy loss is minimized because the distance is minimized, but Læssø still increases and equalizes the capacity of HVDCBATTERY.com

For the same reason, and because ownership of the HVDCBATTERY.com infrastructure comes with unlimited power, it is most appropriate that the one who has the main responsibility for the country's energy and security also acts as owner and supplier of the country's absolutely most important resource.

Technological development also has a downside

For security reasons, the Danish vital data fsa. HVDCBATTERY.com, must be stored on a Host designated and monitored by FE. - - - The software used must NOT HAVE ANY CONNECTION TO AZURE - CLOUD COMPUTING - Word365 or any Microsoft AI assistants Same fsa. the software used in the High voltage direct current HVDC board for HVDCBATTERY.com operation and maintenance

With and in all the buzz that has arisen around AI "artificial intelligence" - chat and AI assistants, we have been less attentive to the other side of the coin.

In all impermanence, Microsoft has created a Global database that can be accessed with a fast SQL architecture. - - Microsoft calls it, (quite innocently) "CLOUD computing" and agitates that the future lies in "Cloud Computing" where everything is stored in Microsoft's "AZURE database"

Energi Danmark

"AZURE database" because Microsoft is trying to create a Global Database where- - - simply ALL the world's information is found. - - Trump has revealed a satellite surveillance defense where all the data the individual satellite needs to execute a command. must be found in the "AZURE database"
today municipalities and the public sector are discussing the introduction of AI assistants and how to teach artificial intelligence to an AI assistant. Very few know that the information is "retrieved" from "the Cloud" and the AI ​​Assistant's knowledge is stored back to "The cloud" - which is the Azure database-

Therefore, Public employees, the employees who will manage a new HVDCBATTERY.com energy infrastructure are sitting "HAPPY" and telling Elon Musk how he, with his satellite surveillance, can completely paralyze the entire Danish infrastructure in a few seconds by delivering all the municipality's/county's data to "Microsoft's Azure database" in which Musk has a large stake

The Danish Digital Agency does not know this, but those who know something about digitalization know it
Therefore, it cannot be emphasized enough - - Denmark must create its own "ODS". "Operative Data Store" that cannot be "jammed" - "cable cut" - but can be accessed within the country's physical borders, - monitored and controlled by FE, which has prepared a manual/list of critical infrastructure, whose data may only be stored in Denmarks ODS.

Established offshore wind farms in
Denmark

Frederikshavn (2003) 3 møller, 7,6 MWRN
Anholt (2013) 111 møller, 399,6 MWRN
Region Nordjylland 407,1
Rønland (2003) 8 møller, 17,2 MWRM
Tunø Knob (1995) 10 møller, 5 MW RM
Vesterhav Nord (2024) 21 møller, 178 MWRM
Vesterhav Syd (2023) 20 møller, 170 MWRM
Nissum Bredning forsøg (2018) 4 møller, 28 MWRM
Rønland (2003) 8 møller, 17,2 MWRM
Thor (Plan27) 120 møller, 600 MWRMPlan
Nordsøen 1 (Plan27) 150 møller, 700 MWRMPlan
Kattegat II (Plan27) 150 møller, 700 MWRMPlan
Total region MidtJylland2415,42000
Horns Rev I (2002) 80 møller, 160 MWRS
Horns Rev II (2009) 91 møller, 209,3 MWRS
Horns Rev 3 (2019) 49 møller; 400 MWRS
Samsø (2003) 10 møller, 23 MWRS
Sprogø (2009) 7 møller, 21 MWRSPlan
Region Syddanmark1713,30
Kriegers Flak (2021) 72 møller, 604 MWRSjæ
Nysted (2003) 70 møller, 161 MWRSjæ
Rødsand II (2010) 90 møller, 207 MWWRSjæ
Kriegers Flak II Nord (Plan27) 120 møller, 400 MWRSjæPlan
Kriegers Flak II Syd (Plan27) 120 møller, 400 MWRSjæPlan
Region Sjælland1772240
Middelgrunden (2000) 20 møller, 40 MWRH
Avedøre Holme (2009/10) 3 møller, 10,8 MWRH
Energiø Bornholm (plan29) 150 møller, 700 MWRHPlan
Hesselø (Plan27) 100 møller, 500 MWRHPlan
Region Hovedstaden1250,81200

To be continued. we are working on the case

This page was updated on 20-05-2025