Humana Goes Green – Thank god they finally get it

But this should have happened 30 years ago. Will we ever catch up to Germany.

http://www.bizjournals.com/louisville/blog/morning_call/2013/01/humana-making-more-green-efforts.html

Humana making more ‘green’ efforts

Business First

Date: Wednesday, January 9, 2013, 6:53am EST – Last Modified: Wednesday, January 9, 2013, 7:02am EST

Corporate giant Humana Inc. is making more efforts to be environmentally friendly at its Louisville headquarters.

As WDRB-TV reported, the company has installed 30 solar panels on the roof of its 27-story Humana Building, at 500 W. Main St.

The panels produce only 2 percent of the electricity needed to power the building but are part of a larger corporate initiative to lower energy use, the report said. Panels also may be installed at other locations across the city and in other parts of the country where Louisville-based Humana (NYSE: HUM) has operations.

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A Vermont Super Efficient House – Using the Scandanavian Model

Well I got a new computer and so I am back. The old computer is getting the data transferred from it so I can have it on the new system.  I do not have many tools at hand as a result. This  system has to have the data transferred to it soon so I will not post here again for awhile. But here is a sign of progress.

http://www.greenbuildingadvisor.com/homes/rossetto-vermont-house

Super Energy-Efficient Home in Vermont

Waitsfield, VT

Oct 10 2008 By Rob Wotzak

Modest House Built to Scandinavian Green Standards

This modest home may not seem out of the ordinary, but energy efficiency specialist Efficiency Vermont calls it extraordinary — “Best of the Best” and “the most energy efficient home in the state,” to be specific. With a HERS score of 95.3 out of 100, and four years of energy bills to document its performance, the building deserves the accolades. Builder Al Rossetto leaves nothing to chance: he has used the same construction details to lock in five-star Energy Star ratings for every home he has built since.

Is Vermont the new Scandinavia?
The shallow, frost-protected footing is possibly this home’s most unusual detail. Northern Vermont’s deep frost line and rocky soil make building conventional foundations a challenge. A shallow bed of gravel surrounded by a horizontal apron of rigid foam insulation — a system used in Scandinavia for decades — worked well here.

When paired with an insulated concrete form (ICF) foundation, this system ended up saving energy and materials. The walls and roof are all structural insulated panels (SIPs), which go up quickly and provide a tight shell. Energy efficient windows with triple glazing and multiple low-e layers (also standard equipment in Scandinavia) complete the package.

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All Kaupuni Village homes in Oahu – Paradise in paradise

First off, HAPPY New Year to everyone who comes here.

Second, some big changes are coming to this Blog. After 6 years of 5 day a week posts we have covered many of the things we set out to cover. Global Warming has been accepted by everyone who does not own stock in a carbon company. Renewable Energy generation is on the rise. Environmentalism is becoming the word of the day. Not that this blog claims to have caused that but we have been a part of it. So, CES has decided to become an intermittent poster. That is when something big happens. So, this is not our final post just posting at a more relaxed pace.

http://energy.gov/energysaver/articles/ultra-efficient-home-design

Ultra-Efficient Home Design

April 26, 2012 – 9:52am

Ultra-efficient home design combines state-of-the-art, energy-efficient construction, appliances, and lighting with commercially available renewable energy systems, such as solar water heating and solar electricity. By taking advantage of local climate and site conditions, designers can incorporate passive solar heating and cooling and energy-efficient landscaping strategies. The intent is to reduce home energy use as cost-effectively as possible, and then meet the reduced requirements with on-site renewable energy systems. To learn more about the details of designing and building an ultra-efficient home, visit Building America Resources for Energy-Efficient Homes.

Another strategy for achieving an ultra-efficient home is to build or remodel to the rigorous, voluntary Passive House standard. The result is an extremely well insulated, airtight structure with dramatically reduced heating and cooling requirements.

In many parts of the country, homeowners can recoup some of the costs of energy efficiency and renewable energy upgrades through rebates and other financial incentives. Visit the Database of State Incentives for Renewables and Efficiency for a current list of incentives in your area.

Learn More

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The Swedish continue to dominate in the housing industry – They put America to shame

This house is air tight and over powered. These are 2 things that really turn me on. A night in that house would be a continous orgasm. Oh and did I mention that the house is in Sweden.

http://www.mnn.com/your-home/remodeling-design/blogs/villa-%C3%A5karp-a-super-efficient-home-that-scores-an-a-in-surplus-ene

Villa Åkarp: A super-efficient home that scores an A+ in surplus energy production
After construction wrapped up in 2009, Villa Åkarp’s energy-plus ambitions have come true: The super-insulated Swedish home’s rooftop solar system generates an excess of 600kWh annually.
Tue, Sep 11 2012 at 5:36 PM
Keeping up with today’s mini-trend of (shockingly) non-IKEA-related housing news coming out of Sweden, I thought I’d revisit a notable residential building project located outside of the city of Malmö that I first made mention of way back in November 2009.
When I intially caught wind of said project, Villa Åkarp, it was under construction with the lofty ambition of becoming an energy-plus (or positive) home. In other words, the three-bedroom, two-bathroom home is not only influenced by stringent Passivhaus building standards that focus on energy recovery and conservation (high amounts of insulation, triple pane windows, thermal recovery, strategic building orientation, etc.), but energy generation as well. Thanks in part to a 32-square-meter rooftop photovoltaic array, the now-completed residence produces significantly more energy than it consumes. In all, the airtight home’s solar panels produce around 4,200 kilowatt hours (kWh) of juice per year (mainly during the summer months) with a surplus of around 600kWh annually that’s fed back into the grid in a partnership with local green utility provider E. ON. That’s enough energy to power another energy-efficient home for two months.

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Rockspan – A sustainable farm in Missouri

Carol Kneedler, who runs CES’ website, forwarded this to me and I thought it was a good way to plug her business. Thanks Carol for all you do.
  • O3 Internet Consulting
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    I create websites that are beautiful, practical and functional. In short, they work.

http://ksmu.org/article/small-ozarks-farm-provides-innovative-example-sustainable-living-50451#.UNoqJWCh7_Y.facebook

Small Ozarks Farm Provides Innovative Example For Sustainable Living

 Article | | By Shane Franklin

One farm in the Ozarks is the location of a series of unique experiments in sustainable living.  If these experiments prove successful, it would greatly affect the future of sustainable technologies and how people think about building their homes. KSMU’s Shane Franklin had the opportunity to tour the farm, and has this story.

Rockspan Farm, the home of Dan and Margy Chiles, is unique in so many ways. They wanted to build a farm that could be an example to others, and a test lab for experimental technologies they’ve been personally developing over the years.

“We are trying a number of new technologies here to make houses more efficient and to make a livable space without having to burn a lot of coal.

 

http://www.danchiles.macmate.me/rockspan/RockSpan/Home.html

RockSpan maps and overview

RockSpan is the name for our 12 acre farm and house in western Greene County, Missouri.

 

The project is the West end of Division street, 11 miles from Springfield, Missouri.   The colorful plan below shows the family farm: approximately 227 acres outlined in red with a possible land use plan.  Our 12 acres are inside the larger farm.

 

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Another Claim To A Rooftop Turbine – We close this week with the Bernoulli Principle

We get these claims all of the time, “A wind turbine for your roof”. About the only place that is true is on grain bins on a farm out in the country. I can neither testify that these turbines work or that they do not. What I can say is Merry Christmas and a Happy New Year. This blog will be closed until next Wednesday.

http://www.getsmartenergy.com/windcube/

 Wind sphere Overview

The Wind Sphere™ relies on its “wind tunnel” effect known in physics as the Bernoulli Principle. While the rest of the wind industry generates energy through the use of free-stream wind, the Wind Sphere™ captures and amplifies the wind, which produces more kilowatt-hours (kWh). As wind encounters the Wind Sphere™ shroud, it becomes concentrated creating increased velocity and in turn, more power. By amplifying the natural wind speed, the Wind Sphere™ is able to produce more power from a smaller footprint. Proportionally, the Wind Sphere™ has the smallest footprint with the largest amount of power output in the industry. Because of these attributes, the Wind Sphere™ is uniquely designed to produce energy in urban, populated areas with space constraints.

Inverter Certification

The inverter is IEEE 1547 compliant and UL 1741 certified.

Worldwide Turbine Certification

The Wind Sphere is currently in the process of the stringent IEC-61400-2 testing, also know as the Standard for Small Wind Turbines testing. Exhaustive field testing will be conducted by a Certified AWEA testing firm to verify performance and real world endurance.

“With the Wind Sphere, building owners everywhere can now consider being a part of the renewable energy picture.”

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The Green Energy Council – Covering the world

These guys cover the globe.

http://www.greenenergycouncil.com/

The International Green Energy Council is an educational and advocacy body. We pride ourselves on educating from kindergarten students all the way up to leaders of nations about energy efficiency, environmental stewardship and renewable energy. We also aid international leaders on creating sound policy and regulatory atmospheres in order to promote expeditious applications for renewable energy and green technologies.

Over the past six years we have worked with 22 Governors in regards to Renewable Portfolio Standards for their states. Furthermore, we are liaison and facilitators with several countries including but not limited to the following: Canada, South Africa, Greece, Senegal, Zambia, Nigeria, Philippines, Netherlands, Russia, Brazil, China, Morocco as well as a host of others. The IGEC is also working with many utility company’s around the Globe to meet their Renewable Energy Portfolio mandates. We have chartered chapters in 68 nations around the World.

The GEC is a professional association comprised of individuals and companies that promote sustainable forms of energy production, renewable energy sources, sustainable design practices and advanced thinking in utilizing education and information for the promotion of being better stewards of our environment while providing National Security Energy Plans to nations around the Globe.

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Getting energy from a natural event – In this case a tornado

I got my doubts about this. Recreating the circumstances of a tornado can not be easy to control and maintain. I have always dreamed about storing lightening in giant batteries in the ground.

http://cleantechnica.com/2012/12/18/using-tornadoes-for-good-not-evil-green-energy/

 

Using Tornadoes For Good, Not Evil — Green Energy

 

Never one to let a good heading get away from me, it’s time to turn the evil power of tornadoes into something good — namely, green energy. And thanks to The Thiel Foundation’s funding program Breakout Labs, a new grant has been awarded to harness the power of atmospheric vortexes.

Tornadoes!

“The power in a tornado is undisputed,” said Louis Michaud, Canadian engineer and designer of the Atmospheric Vortex Engine (AVE). ”My work has established the principles by which we can control and exploit that power to provide clean energy on an unprecedented scale.

“With the funding from Breakout Labs, we are building a prototype in partnership with Lambton College to demonstrate the feasibility and the safety of the atmospheric vortex engine.”

Michaud’s design sees warm or humid air introduced into a circular station wherein it takes the form of a rising vortex which drives multiple turbines.

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Looking For Solar In Australia – Give AGL a call

Call now 1300 076 188 (Mon – Fri 8am – 6pm and Sat 9am – 4pm EST).

Having said that please do all the things with AGL that you would do with any contractor. Check with local business groups like the Chamber of Commerce and the Better Business Bureau. Ask for references and you must comparison shop. Having said that here is a guest post from AGL on the past and present of Solar Power.

AGL solar energy

The ever-growing improvements in solar power technology

 

Solar power technology has come a long way since its first arrival in the 1950s, when solar panels were over three times the size they are now, yet converted just 4.5% of solar energy into electricity. Sixty years ago solar panels needed to be far larger to be as powerful and were unthinkably expensive. For example, a 230 Watt solar panel in 1953 measured 213 inches by 130 inches and cost a whopping $1785 per Watt. Today, a solar panel with an identical wattage measures 64 inches by 39 inches and costs just $1.30 per Watt. As research and development in solar power technology increases, efficiency, cost and size can only further improve in the future.

In 1953 the first modern solar cell, using a silicone semiconductor to convert light into electricity, was unveiled in the USA. It was revolutionary and gave rise to the belief that we will eventually be able to harness the sun’s incredible energy. Fast-forward nearly sixty years and the technology has vastly improved and is now at the stage at which solar power production and consumption is growing year on year, at half the cost of just five years ago. Why has it taken so long? Largely because the need for it wasn’t there. Fossil fuels were cheap and plentiful and so the impetus (and therefore also the finances) didn’t exist for large-scale research and development into taking solar mainstream. Funding depended on which government was in power in different countries and thus solar power R&D was very stop-start.

Triggered by the impending energy crisis, the past 20 years saw huge improvements in technology and manufacturing methods, driving costs down and expanding the market, and each time the market for solar energy increases, costs are further reduced. Solar energy still accounts for a small percentage of the world’s energy consumption (currently just 1%) but that is tipped to change imminently. Recent advances in technology are leading the way for huge growth in the solar energy market. In 2008, spherical solar cells were developed in Japan, a technology which is up to five times cheaper, uses far less material, consumes half the energy to reproduce and has flexible applications. Residential solar panels are proving increasingly popular, with companies such as AGL Solar Energy installing them on rooftops in thousands of homes in Australia.  

In 15 years, commercial buildings will be built to make the most of solar power – indeed, the technology is already almost there to do so. Buildings will be constructed from glass coated with a network of tiny Organic Photovoltaic Cells which are so fine that light isn’t obstructed. This way, entire buildings can become energy producers. Similar technology is also being utilised to develop paint-on solar cells so that you can paint the outside of your house with solar energy-producing cells. The next 20 years will see the cost of solar come down and technologies improve. Look out for new technologies such as super-fine solar films made from cheaper CIGS (copper, indium, gallium, selenide) rather than silicone, and glass or plastic plates coated with dye which will help to focus photons onto solar panels. One thing’s for sure – the solar energy revolution has only just begun. The future is bright!

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Solar in the Middleast – When the oil producers get it and the price drops the change will come

But will the change come in time. I still got my doubts about that.

http://customwire.ap.org/dynamic/stories/C/CLIMATE_TALKS_SOLAR_DREAMS?SITE=NDBIS&SECTION=HOME&TEMPLATE=DEFAULT&CTIME=2012-12-06-02-01-22

Middle East beginning to embrace solar energy

By MICHAEL CASEY
AP Environment Writer

ABU DHABI, United Arab Emirates (AP) — Covering nearly 300 football fields in a remote patch of desert, the Shams 1 solar project carries off plenty of symbolic significance for the United Arab Emirates.

It will be the first, large-scale solar project in the oil-rich country when it is completed at the end of the year, and the largest of its kind in the Middle East. At full capacity, the 100-megawatt, concentrated solar project will be able to power 20,000 homes. For those behind the project, it’s the surest sign yet that solar is coming to the region in a big way.

“We truly believe solar will be a major contributor to meeting our own requirements,” said Sultan Ahmed al-Jaber, the UAE’s Special Envoy for Energy and Climate Change and the chief executive officer of government-funded Masdar, which is the majority investor in the project.

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