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Residential Solar Panels Ohio

Ohio States Solar Decathlon 2011 Engineering Audiovisual Presentation

Energy is directly related to our way of life. It is indeed the most important thing to us. Designing the mechanical systems for enCORE was one of the bigger challenges in the project. We had four main goals going in cost effectiveness, performance, innovation, and integration with the building envelope. enCORE was designed to approach passive house standards for heating and cooling, and we found that the loads are half to a third less than a typical home of this square footage. enCORE also features a solar thermal hot air system, which is able to reduce the heating load by about 10 and the cooling load by.

9. enCORE house features a heat pump system which has one outdoor unit and also an indoor unit, which exchanges heat between R410 and water. We chose the Daikin Altherma system because it has very high efficiency. It has a SEER of up to 26 during steady state and it is an integrated system which features domestic hot water, but it also allows us to interface with our solar thermal hot air and our solar thermal hot water. The indoor unit is connected to both the domestic hot water tank and to an air.

Handling unit with two hydronic coils in it, one for heating and one for cooling. The solar thermal hot air system was designed to meet the needs of a passive house in the shoulder months, and to supplement the heating system during peak loading. The system operates in two general modes. In the wintertime, the solar thermal hot air panels located on the south wall of the house, draw in return air from the interior and increase its temperature by up to 60 degrees Fahrenheit. Small inline fans connected to the panel system draw the.

Air in and propel it through insulated ductwork to the phase change material plenum. The PCM plenum contains a hydrated salt which changes phase at 86 degrees Fahrenheit, the supply air temperature. The PCM is insulated from the conditioned space of the building and may be thought of as a large thermal battery. The phase change material plenum is able store up to 30 hours' worth of heat for enCORE once it's fully charged. In the summer and springtime, the solar thermal hot air system functions in an entirely different manner. It operates in conjunction with a desiccant.

Wheel dehumidifier. In this configuration, the solar thermal hot air provides heat to regenerate the capacity of the silica desiccant wheel. The wheel then intakes outside air which is dehumidified and sent through a counterflow heat exchanger, and then on to the ERV and the air handling unit for distribution throughout the house. While the solar hot air system is rather complicated in scale, operating it is simple. Users are able to use a smart phone or the touch screen located conveniently within the house to simply set a temperature. Another system which is in enCORE is the bioremediation. The bioremediation system consists of 3 plastic.

Ohio State Virtual Tour Solar Decathlon 2011

Music playing At Encore we have a very diverse and unique team and we're just really happy that Ohio State has so many majors and so many talented student to offer this project. Were just happy that we're almost done building and even the ride here was quite an experience. We had 32 flat tires on the way. music playing Encore features a solar thermal hot air system that is integrated with a desiccant dehumidifier and also a phase change material thermal storage system. This technology is relatively cheap and allows us to harness the power of the sun to heat our hot air and use in both the.

SolarLayer Every Surface is a Solar Panel

Hi, I'm Luke. And I'm here to show you one of the coolest most revolutionary things you'll see in your life. Do you see this road It looks like a normal road. It isn't. It's Magic! It happens that if I put a low voltage bulb in it. It lights Up! It turns on! The road is generating electricity. By itself. All the way. Can you imagine what that means For the last four years we have been researching and developing a nano molecular technology we now call the Solar Layer.

The SolarLayer can be mixed with the standard and industrialized Pavement fabrication process Transforming roads to low voltage electricity generators If we use this technology in a responsible way During the next 20 to 25 years Every road on earth can become A solar panel Solving all our energy requirements No need for coal burning, Gas burning Biodiesel use and no need. For nuclear power. Clean Water, clean Soil and clean Air Cheap, green energy for all of us. Especially for the third world, that relies mainly on nonrenewable energies. Now. Pavement is deployed by governments, you might say.

Then what about ourselves, in a smaller scale It turns out that the solar layer can be mixed with house paintings too Your roof, your walls, your ceiling Indoor and outdoor, can all generate electricity The Big Picture is. That every constructed surface on the planet Can become an electric generator With the proper development, it can even Be placed inside glass windows If deployed in a large scale We can start a green energy revolution And it can completely change The way we think about our global energy supplies One in a production line.

Solar Layer will be cheap and accessible to everyone Now, there is one more thing. Every day, we can be reminded how we Coexist with nature And how we must cherish and protect that relationship For the future of our humanity So many of today global conflicts go around energy So we know that this technology has the potential to revolutionize the world Reduce conflicts between nations And give peace, a chance. To reach this point, we had to invent Several technologies and put thousands of hours In research and analysis.

solar Battery Charger homemade SOLAR PANELS boat, home, auto, lawn machine, laptop

Hello! I'm Chris with tutorialbreakthru Are you ready to outfit your fishing machine with solar panels building your own semi flexible solar panels can be easy once you know how! Build, your semi flexible solar panel with confidence! Get familiar with our soldering techniques. Tips and tricks like, using a wood stick while soldering your tab wires to the solar cell we can help you every step of the way like checking proper voltages and currents. For those do it yourself ers who are familiar with solar cells I think we're the first to make tutorials of, how to.

Build your own semi flexible solar panels! We BOLDLY GO!. to wear No YouTubeer. has gone before! YouTube channel solartekTV all the tips and tricks. for successful adhesion to both cathode and anode side of the solar cells as well as. to the solar panel. if you're ready to make a semi flexible solar panel you have got to watch are informational tutorials right here on YouTube channel solartekTV! of course there FREE!. It's !!. just listen to this some of this detailed commentary..notice the wires are coming straight out. from your panel underneath that insulator.

Now we have a nice insulator piece so we can put our squeeze connector together. runs look like there coming straight out that's good. Go ahead and put your hardware together for the machine screw. Watch our solar panel progression as we build are semi flexible solar panels right here in our All solarpowered workstation!! solartekTV and here's. the MONEY SHOT!! Background Awesome music ! by WSC Dubbya and The STONE COONS!! Watch all of our howto tutorials right here on channel, solartekTV I'm Chris with, tutorial breakthrough.

12 volt DC charge SYSTEMS electric boat Home made Flexible SOLAR PANELS solartekTV

Alright. We're gonna go ahead and mount. this 5 WATT panel. that we, fisnished making here a little while ago and uh. this one runs at about twentytwo ta twenty four Volts,. DC direct current and it's actually going to a charge controller uhh, It'll max out 14.2 volts,DC and, we're gonna go ahead and mount it here on the 1060 Surge right on the inside gunnel. aka or the rub rail. try to center it up a bit use number 6 screws.gonna start right here in the middle. 12' length screw, 6.

Cinch it up. don't make it to tight. looking pretty nice. remember, your just cinching it up there. lets take a look here.oh yeh. gonna use a slightly larger screw head here. and. rememeber , jst cinching it up there, doesn't have to be to tight. alright well. that one's installed! looks pretty good! just gotta wire it in. actually, we're gonna wire it in at the two solar panels that we've already got installed wire it in parallel. this will add about a quarter amp of current I'd say about.point 2. the most.amps of current.

Obama Proposes Doubling Clean Energy Funding

Hi everybody. One of the things that makes America great is our passion for innovation that spirit of discovery and entrepreneurship that helps us meet any challenge. One of the greatest challenges of our time is climate change. Over the last seven years, we've made historic investments in clean energy that helped private sector companies create tens of thousands of good jobs. And today, clean power from the wind or the sun is actually cheaper in many communities than dirtier, conventional power. It's helped grow our economy and cut our total carbon pollution more than any other country on earth.

That leadership helped bring nearly 200 nations together in Paris around the most ambitious climate agreement in history. And in Paris, we also launched one of the most important partnerships ever assembled to accelerate this kind of clean energy innovation around the world. Investors and business leaders including Bill Gates, Meg Whitman, and Mark Zuckerberg joined us, pledging their own money to help advance new technologies to the market. That's important because we'll only meet this challenge if the private sector helps lead the way. As I said in my State of the Union address, rather than subsidize the past, we should.

Invest in the future. That's why the budget I will send to Congress this Tuesday will double funding for clean energy research and development by 2020. This will include new investments to help the private sector create more jobs faster, lower the cost of clean energy faster, and help clean, renewable power outcompete dirty fuels in every state. And while Republicans in Congress are still considering their position on climate change, many of them realize that clean energy is an incredible source of goodpaying jobs for their constituents. That's why we were able to boost clean energy research and development.

In last year's budget agreement. And I hope they support my plan to double that kind of investment. Because it's making a difference across the country. In Idaho, our Battery Test Center is helping electric cars run longer on a single charge. In Ohio, entrepreneurs are pioneering new ways to harness wind power from the Great Lakes. In Tennessee, researchers are partnering with utilities to boost storage and solar power to create a more resilient electric grid. The point is, all across the country, folks are putting their differences aside to face.

WaterShed Digital Walkthrough

Background Music gtgt NARRATOR The Chesapeake Bay. The largest estuary in the United States. Home to more than 3600 plant, fish, and animal species. The Chesapeake Bay watershed is home to more than 16.6 million people. Runoff from cities, towns, power plants, and farms contains nutrients and chemicals that adversely impact the subtle ecological balance of the Bay. At the U.S. Department of Energy's Solar Decathlon 2011 the University of Maryland will introduce a house that not only harvests its energy from the sun but also demonstrates ways in which human settlements can be designed to help protect this precious ecosystem.

Inspired by its namesake, WaterShed is a microscale ecosystem that draws its energy from the sun, its life from the wind and rain, and recycles its waste into usable nutrients. The house is designed to promote a sustainable lifestyle, one that functions in harmony with the natural environment around it. WaterShed is organized around a central water axis. The green roof, constructed wetlands and native landscaping store and filter rain and grey water. This processed water can then be used for irrigation or released slowly back into the Chesapeake Bay watershed.

These systems are integral to WaterShed and subtly remind its residents of the natural processes that surround them. WaterShed's split butterfly form captures and directs rain to the constructed wetlands. Each shed form is an independent module. The bathroom which connects them is both a part of the water axis and a bridge between the two modules. Form and function are essential to maximize the potential of a great living space. WaterShed uses an open floor plan while still maintaining distinct spaces to integrate living, working, and playing seamlessly. Mechanical, electrical and automated control systems are literally at the core of the WaterShed.

Minnesota Miles visits the Solar House

Hi! I'm Minnesota Miles, and welcome to the University of Minnesota's Solar House. The Solar House is equipped with solar panels across the roof. They provide energy to all aspects of the house like the oven, electricity and water heating. The other awesome thing about the house is that it's set up like any other suburban home. You've got the deck, the grass and all you're missing is the white picket fence! One important aspect of the design of the Solar House is its icon shape. Icon, meaning iconic as in if you were to ask a child what a house looked like,.

He or she would draw something that looks similar to this.unless the child were an Eskimo. Students from colleges across the University contributed to the project. Architecture students helped design the overall look and feel of the house. Institute of Technology students brought their expertise in engineering systems to make it a fully functional house. College of Continuing Education students in Construction Management are working handson with the building and construction. Now the students will take the Solar House to Washington, D.C. to compete in the Solar Decathlon against twenty other colleges.

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