Archive for June, 2022

How to Make Wind Turbine Generator – Clean Energy

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How to make Wind Turbine
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Germany's New Nuclear Fusion Reactor SHOCKS The Entire Industry!

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Germany's New Nuclear Fusion Reactor SHOCKS The Entire Industry!

Nuclear Fusion has potential beyond what you can imagine. It has the
potential to power the stars. It can offer practically infinite energy with zero
carbon emissions if it can be recreated on Earth. And unlike the current
nuclear fission technology, Nuclear Fusion does not produce any long-term
radioactive waste.
For decades, the technology has appeared to be just out of reach, yet the
reward is so great that billions of dollars continue to flow into the field.
However, Germany’s foremost plasma research facility has set a new record
with its new Nuclear Fusion Reactor, demonstrating that we are moving
closer to the wonderful objective of fusion power – an almost endless source
of clean, renewable energy.

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How Wind Energy Could Power Earth … 18 Times Over | Dan Jørgensen | TED Countdown

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Over the last two decades, the wind power industry has grown at a dizzying pace. (Fun fact: a single rotation from one of the world’s most powerful wind turbines can generate enough electricity to charge more than 1,400 cell phones.) Building off this exponential growth, Denmark’s climate minister Dan Jørgensen lays out his plan to end the country’s oil industry by 2050 and transition to a fossil-free future powered by wind energy.

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Building A Dam for Hydroelectric Power – Part 1 – Off Grid Cabin – EP #22

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#offgridcabin
#hydroelectricpower

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⭐️ About this Episode:
Finally, its time to start working on creating Hydroelectric POWER for the Off Grid Cabin. The 1st step is building a Dam to capture the water so that we can force it to the water wheel that we will be creating in upcoming episodes. Will this work? I SURE HOPE SO!!! Everything we have worked for over the past months all hinges on this idea that our cabin will be truly off grid and powered by WATER!! At best its a theory that we can create enough power to run the cabin but only time will tell. So stay tuned to see how this project comes together!

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We are a Full-time RV Living family with 4 kids who in 2018 Sold Everything to be a Family who is together all the time!! Homeschooling our kids and going on amazing adventures and seeing incredible places!! We just sold our 1st RV set up which was a truck and 5th wheel (see video of why we switched here: https://youtu.be/eLLAGDzEEv8 ) to get our new RV set up with a Class A and Jeep Wrangler! Now are building an OFF GRID CABIN on 50 acres in the Ozarks of Missouri as a home base between travels.
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How Pumped Storage Power Plants Work (Hydropower)

This video explains how pumped storage hydroelectric power stations work, what their main components are and their operating characteristics.

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▶️Introduction

This type of power plant converts potential energy to electrical energy, or, electrical energy to potential energy. They achieve this by allowing water to flow from a high elevation to a lower elevation, or, by pumping water from a low elevation to a higher elevation. When water flows to a lower elevation, the power plant generates electricity. When water is pumped to a higher elevation, the power plant creates a store of potential energy. Pumped storage plants use Francis turbines because they can act as both a hydraulic pump and hydraulic turbine.

Pumped storage power plants are used to balance the frequency, voltage and power demands within the electrical grid. Pump storage plants are often utilised to add additional megawatt capacity to the grid during period of high power demand, for this reason, pumped storage plants are referred to as ‘peaking’ plants.

Because pumped storage plants can provide electrical grid operators with power ‘on-demand’, they have a high level of dispatchability (the ability to provide power to the grid as needed).

Components
Irrespective geographical location, all pumped storage plants require an upper and lower reservoir. The difference in elevation between the upper and lower reservoirs is referred to as the ‘head’ (head of pressure) and it must be significant in order for the plant to operate efficiently.

A penstock connects the upper reservoir to a Francis turbine located in the power house. A draft tube and tail race connects the Francis turbine to the lower reservoir.

Operation – Generating Power (Electricity)
Water flows from the upper reservoir, through the penstock, and to the Francis turbine. As the water passes over the Francis runner blades, a pressure differential is created that causes torque (rotary force) to be applied to the runner. The runner begins to rotate.
The turbine runner is connected on a common shaft to an electrical generator. As the runner rotates, so too does the generator rotor. As the rotor rotates through the electromagnetic field within the generator, it induces current in the stator windings and electrical current begins to flow. The electrical current is usually then dispatched to end consumers via a switchyard and electrical transformer.

Water discharged from the turbine runner enters into a draft tube where some of the kinetic energy is recovered and converted to potential energy; the water then enters the tail race and is discharged to the lower reservoir.

In this example, the potential energy of water was converted by the turbine runner into mechanical energy. The mechanical energy was transferred on a common shaft to a generator, which converted the mechanical energy to electrical energy. The entire process can be continuous until the upper reservoir is emptied.

Operation – Storing Potential Energy
Water is pumped from the lower reservoir to the upper reservoir by the Francis turbine runner. The flow path is the same as when generating electricity, except the flow direction is reversed.

Pumped Storage Economics
Pumped storage plants rely upon the varying price of electricity to make a profit. Many thermal power plants (coal fired, gas fired etc.) cannot increase or reduce their MW output quickly because this would place large thermal stresses on the power plant components (water tube boiler, piping etc.). For this reason, thermal power plants produce almost as much power at night, as they do during the day.

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Nuclear Energy: Abundant, Clean, and Safe

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If you truly want to save the planet from global warming, there’s one energy source that can do it. It’s not wind or solar. It’s not coal, oil or natural gas, either. So what is it? Michael Shellenberger, founder of Environmental Progress, has the answer in this important video.

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Script:

France gets 70% of its power from one carbon-free source. Sweden 40%. Switzerland 36%. The United States 20%.

For those who wish to create a world free of carbon emissions, France is clearly the role model. 

That source of energy, by the way, is not solar or wind. It’s not coal, oil or natural gas, either.

It’s nuclear. 

Nuclear energy is not only cleaner than all other forms of energy. It’s also cheaper to create, abundant and safe. 

Yes, safe.

So, if the world is going to end in a few years because of global warming due to rising CO2 levels, why aren’t we going all out to produce this abundant, clean and safe form of energy? Why aren’t there dozens of nuclear power plants in development all over the world? 

Well, we all know the answer, right? Nuclear energy is just too risky… too dangerous.

So, even though we’re told we’re facing an “existential crisis”—which means humans may cease to exist; even though we might all wither away in unbearable heat; or starve because of world-wide droughts; or drown in rising seas; or be killed in Mad Max-style riots—nuclear energy is off the table… because… it’s too darn risky. 

Hmmm.

I want to be sure I have this right. The goal is to save humanity…There’s a way to save humanity…And we won’t take it. Because we’re afraid, there might be a bad accident… or something. 

Does that make sense to you? Because it doesn’t to me.  

But maybe I’m not giving enough weight to the safety argument, so let’s take a closer look at that since no one, not even the most radical environmentalist, disputes that nuclear power produces massive amounts of energy cleanly and efficiently. 

Safety, like everything else, is a matter of context. So, here’s some context. 1.4 million people die worldwide every year in traffic accidents, 2.3 million in work-related accidents, 4.2 million from air pollution. Deaths directly related to nuclear power? Under 200—not annually but in the entire history of the nuclear power industry. 

But what about those famous nuclear disasters we’ve all heard so much about? Didn’t they poison untold thousands? Three Mile Island in 1979, Chernobyl in 1986 and Fukushima in 2011. 

Okay, let’s deal with each one.  

Three Mile Island:

There was an accident at the plant, yes, but the amount of radiation that leaked was no more than one might receive taking a chest x-ray. The Nuclear Regulatory Commission acknowledged as much four weeks after the initial media hysteria died down. “We goofed,” the commission told Congress.  “There was no danger of any hydrogen explosion.” But that didn’t grab the headlines. 

Chernobyl: 

The accident developed into a catastrophe only because of pitiful safety procedures unique to the Soviet Union. It would never have occured in the West. Even so, initial reports of radiation leakage turned out to be grossly exaggerated. According to the World Health Organization, “As of mid-2005”—that’s 19 years after the explosion—“fewer than 50 deaths had been directly attributed to radiation from the disaster.” 

Fukushima:

In 2011, as a result of an earthquake and tsunami, the Fukushima Nuclear Power Plant was destroyed, and nuclear radiation was released. Yet, despite the media hysteria, not one person at the power plant died because of radiation leaks. The deaths that occurred in the area were the result of the tsunami. 

Well, what about nuclear waste? Surely that’s terribly harmful. 

Actually, no. All the nuclear waste ever generated in the US can fit on a single football field stacked less than seventy feet high. It’s easily and safely buried in steel canisters encased in concrete. 

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Wind turbine energy storage – IN 60 SECONDS

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www.dob-academy.nl Can we store the electricity from wind energy when we make more than we need? This 60 sec video shows how energy could be stored. As it is a crucial component in the transition towards a clean energy economy. Watch the video to learn more! At DOB-Academy we have a passion for sharing knowledge and that is why we created the 60 second lectures series, that you can watch here.

Free Energy from Stream , Micro hydro turbines. | DIY |

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These are micro hydroelectric converter from flowing water.ranging from 10 – 20 watts and 0 – 22 volts ac.Useful for remote off grid rural areas as well as in camping. It is enough to light domestic led bulbs/tubes, charge mobiles, charge a 12 volt 4 Ah battery etc..
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Energy 101: Wind Turbines

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Energy 101: Wind Turbines

See how wind turbines generate clean electricity from the power of the wind. Highlighted are the various parts and mechanisms of a modern wind turbine.
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From time to time, wind turbines can fail. Faulty equipment or extreme weather is often the cause of these failures. Today we’re taking a look at wind turbine failure events.

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Hydroelectric Power Plant working animation

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This video will explain construction, working, advantages, disadvantages and site selection of Hydroelectric Power Plant.
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Why This Wind Turbine Will Change The World

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About fifteen years ago, humanity realized that if it does not want to be like the proverbial frog – which was boiled in milk for the sake of momentary comfort – then we must immediately stop burning minerals that create a greenhouse effect. Indeed, since the beginning of the 20th century, the average annual temperature on the planet has increased by 1 degree. If it continues this way, then in the 21st century it will rise by another 4 degrees! Fearing this, mankind frantically began developing green energy. Apparently, we have achieved impressive results. The total installed capacity of renewable electricity has doubled over the past 10 years and amounted to 2,537 GW. There are even countries – Iceland, for example – where the share of green energy was 100%! Costa Rica and Austria are closing in, while in Germany the share of green energy exceeds 50%. We seem to be crawling out of the warm milk, don’t we?

#turbine #greenenergy

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