Solar Stirling Cheap Electricity Save On Electricity
Hi I am Harjinder Johal from Solar Stirling Review. Everybody wants cheaper electricity and if you want to see how you can save on electricity then stick around. I want to show you a possible solution to high energy prices Energy prices have continued to soar in recent years and it seems there will be no let up. You are paying for the developing countries as they gobble up resources pushing up demand and therefore prices. How long can you sit and watch as higher energy prices take your hard earned mony.
You can't count on your government, they are powerless to stop people from improving their lot in life. You will have to take control yourself. Solar stirling plants shows you how to harness the power of the sun. You will be able to generate electricity using materials widely and cheaply available. You will be able to produce cheaper electicity. While you save on electricity you may be able to sell some back to the grid earning you money. You have more control over your life, your money and you wont be a whipping boy of the utility company.
Plants vs Solar Panels Which is better at capturing solar energy AtBristol Science Centre
This is an aquatic plant called pondweed, and we can see that it's making tiny bubbles of gas. This gas is oxygen and all plants produce it in a process called photosynthesis. The word photosynthesis comes from the Greek meaning light' and putting together'. Plants use the energy in sunlight to make sugars, out of the simple ingredients of carbon dioxide and water. And do you remember those bubbles of gas we saw earlier Well. deep breath they're pretty useful. To make the sugar, or glucose, the bonds which hold the molecules together.
Have to be broken apart and rearranged. The bonds are made of electrons. So the water needs to lose electrons, and the carbon dioxide has to gain electrons. And the colour of leaves gives us a clue to what is responsible for this rearrangement of electrons. Every leaf cell contains a pigment called chlorophyll'. It's the chlorophyll which makes the leaves green and helps make photosynthesis happen. Chlorophyll has the amazing ability to release electrons when exposed to sunlight. The electrons from the chlorophyll are replaced by splitting apart water into ions of hydrogen and oxygen.
The excess oxygen is then released into the air. The flow of electrons from the chlorophyll is then used with the remaining hydrogen ions to produce the energy needed to synthesise glucose from molecules of carbon dioxide. So sunlight provides the energy we need to move electrons from one molecule to another turning light energy into chemical energy ready for our plant to use. But can we do the same thing artificially How does photosynthesis compare to a solar panel Well, solar panels like those on the Energy Tree.
Use light as an energy source, and they also generate a flow of electrons. But they don't store chemical energy they convert light energy into electrical energy. They do this by using something called the photoelectric effect'. When photons come and hit a metal surface, they knock off electrons. We then capture and store these electrons. These photovoltaic cells are made of a silicon crystal. But silicon is a poor conductor of electricity. So impurities are added to help. This creates something called a 'semiconductor'. As light hits the surface, electrons are knocked loose.
The electrons then flow from areas with a high concentration, to areas with a low concentration. It's this flow of electrons which generates an electric current. We've done this on a big scale on our roof. We have 560 square metres of solar panels, which generate 47,000 kilowatt hours of electricity per year. So which is better, leaves or solar panels How efficient is each system at transforming the energy from sunlight Well, a leaf can turn only three percent of light energy hitting its surface into chemical energy through photosynthesis.
Whereas, a solar panel of the same area can turn roughly ten percent of the light energy into electrical energy that's over three times more efficient! But it's not quite as simple as that. There's all sorts of other things to take into account as well. Such as the time of day, the location, types of plant, and transport and storage costs on the other side as well. Solar panels may be able to absorb more wavelengths of light than leaves, but leaves can grow and repair when damaged. The Energy Tree may be able to charge your phone,.
Stirling Engine Powered by Fresnel LensConcentrated Solar Power
Hi Gang! As promised, I tried out my Stirling engine with my fresnel lens, basically powering it with concentrated solar power. And as you'll see, it worked very well. For those not familiar with fresnel lenses, they take a large area of sunlight, in this case 2 feet by 4 feet, and focus, or concentrate it down to a smaller area. I wanted to keep my Stirling engine upright so that I could spray water onto its top plate. So before the sunlight got too focused, I intercepted it with this mirror and reflected it up onto bottom of the Stirling.
Engine's cylinder. I knew from the start that my fresnel lens doesn't focus too well, so that's why I built my Stirling engine with such a large diameter cylinder. And my cunning plan worked. To better show the parts, here's a bit of the assembly. Here's the fresnel lens by itself. I've attached a sunfinder to the side so I could make the fresnel lens point directly at the sun. Seeing this circle of light here tells me that it's in position. Then I attach the mirror. But first I turn it backwards to see what.
The concentrated sunlight looks like at that point. I want something squarish, that covers the middle of the mirror fairly well. I then turn the mirror back over to face the lens and use a clamp to hold it in place. Notice the use of welding goggles to protect my eyes. Looking at concentrated sunlight is like looking at more than one sun at the same time. I'm being careful not to reflect too much up here. I've already melted some of the frame there before. Next, to put the stand in place that will hold the Stirling engine.
And finally, the Stirling engine. To make sure the sunlight is being concentrated onto the cylinder, I look down into the big mirror. I want sunlight on the bottom of the big cylinder here, and not up here on the top plate. And here it is running. The purpose of this big steel top plate is to act as a heat sink. It takes the heat from the hot air in the big cylinder underneath and cools it. To help with the cooling I spray some water over the top plate.
Spraying water matters more indoors where I used an alcohol lamp to heat the big cylinder. The problem is that the hot fumes rise up the sides and heat the top plate too. But I found that the air movement outdoors made a huge difference on cooling. The outdoor air flowed over my big top plate, or heat sink, carrying the heat with it. Just as I'd hoped it would. I sprayed water anyway, but the top plate stayed relatively cool on its own, indefinitely. I also wanted to see if it would turn my homemade cooling fan.
And it did! It wasn't needed for outdoor cooling, but it served as a test load on the engine. Well, thanks for watching! See my channel, rimstarorg, for more tutorials like this. That includes one explaining how this Stirling engine works along with demonstrations of it running indoors. Another showing me assembling my fresnel lens support structure and mirror in more detail, and then using it as a solar cooker to fry some eggs for lunch. And one showing stepbystep how to make a simpler Stirling engine using a small tomato can for the cylinder.
Motor de Stirling corto Stirling engine short
The Stirling engine is a device that converts heat into work by means of a set ot thermodynamics processes, named Stirling cycle, performed by a fluid The working fluid is air enclosed in a glass test tube placed on a support. The tube contains inside seven marbles which can move along the tube The open end is closed by a plug which has a hole through which a flexible tube is connected The flexible tube is also connected to the top of a vertically arranged glass syringe whose upper part can be displaced over the bottom.
The heat energy is supplied to the air by heating the closed end of the glass tube The Stirling cycle consists of four stages heating, expanding, cooling and compression First stage The initially colder air is heated maintaining constant its volume, and its pressure increases Second stage The pressure increase pushes the balls towards the colder opposite end of the tube, resulting in an isothermal expansion of the air Third stage The air volume increase forces the top of the syringe to move upward. The cold end upwards around the supporting point. The balls move back to the tube hot end, cooling the air which decreases its pressure at constant volume.
Solar Energy in Las Vegas, California by Suntrek Industries
Las Vegas Solar Energy from Suntrek Industries has demonstrated since 1991 they are the leader in solar energy systems technology. For residential solar electricity, Solar pool heating, Solar water heaters and Commercial Solar Power. Solar brings value to a Community that is unsurpassed. Today we have a proven reliable technology to power our daily lives with the sun. Just imagine how different your world will be living in a Solar Home powered by the sun with little reliance on utility power. Since 1991 Suntrek Industries has been a leader in solar energy manufacturing and system design.
New solar system for improved energyefficiency
Finding creative solutions to energy issues and energy efficient buildings has become a major priority for Europe in recent years. Today simple, nonpolluting technologies are deployed quickly. This industrial building in Malta hosts the prototype of an EUfunded optical system developed in the framework of the European project DiGeSPo. Its Concentratedsolar technology will be used to produce heat and electricity. The system uses mirrors with a tracking system to focus sunlight onto a receiver which contains a heat transfer fluid. The EU is aiming for a 20 cut in Europe's annual.
Energy consumption by 2020. Digespo is contributing to that objective by developing a new solar technology. The prospects of strong growth for Concentrated Solar Power over the next few decades seem good. This will help develop a competitive industry and foster EU partnerships. As we are all aware, there are about 160 million buildings within Europe. We see this as a unique challenge to be one of those buildings where we can generate energy efficiencies and energy improvements. Houses and buildings consume up to 40 of total EU energy use. Digespo and its mini solar power systems will.
In the long run allow homes and workplaces alike to generate their own electricity and meet their heating and cooling requirements. The Digespo project is a fantastic opportunity to exploit the huge potential and solar resources especially on an island like ours or in the Mediterranean region but also a very good opportunity for us to transfer knowledge which is mostly acquired from mainland Europe and solar research to the Mediterranean region in general. This is just the beginning As we become bigger consumers of energy, the European consortium of the DiGeSPo project wants.
Berry Petroleum COO Michael Duginski at GlassPoints Solar EOR Project Commissioning
Hello, my name is Michael Duginski, and I'm with Berry Petroleum, we want to welcome everyone here to our oilfield today. I appreciate the comments that Rod made. I saw in the news or the email flyer that was coming out that it was being hosted by a major California oil company and I'm really of the view that Kevin described us and we are a small independent here in in California. The interesting thing about Berry Petroleum is that we've been around since 1909. So we've been operating in the state for a hundred years.
We've seen a lot of things in the San Joaquin Valley and as the previous speakers have said, the easy oil has been discovered. We don't anticipate a large oilfield like the Midway Sunset field or the Belridge field being discovered any time soon. So where we're at now is that we really need to apply new technology to develop the remaining resource. We're a growing business in California. California oil business, in my opinion and in Berry's opinion is not a shrinking business. We are making our largest capital investment that we have ever made in the.
State this year. uh. and we continue to grow And we continue to grow our production and we continue to employ more people and invest more money in the state. Now, we currently apply relatively sophisticated technologies in the oil field to maximize the value of our assets. We generate over 100 MW of power from cogeneration which as a byproduct produces steam for our operation, and the whole reason that we got into the power business was not because we want to be a power producer, but because we want.
Low cost steam for our oil production. We use 3D seismic to identify drilling targets, we use satellite imagery to monitor where our steam injection goes in our steam floods, we use a tremendous amount of horizontal drilling to maximize our recovery so we see ourselves as a technology company, but we're too small to develop those technologies ourselves. We don't have the money to have a research lab, we don't have the staff to have a research lab. And that's where partnering with Glasspoint really makes sense for us. We provided the oil field and the infrastructure,.
Glasspoint provided this new technology. We commend Glasspoint for believing enough in their technology to make the investment in this project themselves to prove both their concept of design and also what the economics are. were interested in solar steam generation because any new innovative technology that lowers our costs, as we've been discussing lowers the economic limit of the oil field, maximizes our oil reserves and our production. if this technology is successful it will translate into important business opportunity for Glasspoint and for the other oil and gas producers in the state of California.
Paul and the Combined Heat and Power Plant
This is Paul. Tomorrow Paul is visiting his friend David. David has invited Paul to show him his new micro CHP plant with which he is doing cogeneration. David wants to know what opinion Paul has on this. But Paul doesn't understand at all what David is talking about and the words are buzzing around in his head. What does this all mean What does CHP stand for, and what is cogeneration Don't panic, Paul, we'll explain it to you. CHP stands for combined heat and power and describes the same principle as cogeneration.
A CHP plant is used to gain power and useful heat at the same time. Paul wants to know what a CHP plant looks like. No problem, Paul. A CHP plant consists of a combustion engine, which can be operated with diesel, vegetable oil or gas, and a generator. Often there is a heat storage tank and a backup boiler connected to this module. Depending on the size you also speak of a mini, micro or nano CHP plant. A micro CHP plant has approximately the size of a fridge and produces between 2,5 and 15 kilowatt.
Paul is delighted, but still doesn't quite understand how a CHP plant is supposed to work. We'll show it to you, Paul. By producing power by means of a motor and a generator, heat is produced. This heat is called waste heat and usually is lost. In a CHP plant this heat is captured, though, and is directly used for heating or saved in the heat storage tank for use at a later time. If there the heat isn't needed right on site, it is forwarded to the local heat network.
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