Showing posts with label energy. Show all posts
Showing posts with label energy. Show all posts

Saturday, June 28, 2014

Thomas Edison’s Dream Smashed

By Adam J. Crawford, Analyst

The incandescent light bulb was invented in the very early 1800s, but at that time was a device too crude and impractical for mass adoption. Over the next 80 years, at least 20 inventors contributed to its improvement, until, in 1880, Thomas Edison developed and patented a bulb that would last a miraculous 1,200 hours. Edison’s product was the first to offer the levels of functionality, durability, and affordability necessary for widespread commercial appeal. That’s why he gets credit for inventing the light bulb, even though he was decades late to the party.


Some 130 years after Edison’s patent was approved, the incandescent light bulb has basically the same features… a filament inside a glass bulb with a screw base. And for all those years, it’s been doing yeoman-like work providing clean, quality lighting (compared to the candles and oil lanterns of the 19th century), in millions of homes and offices. Today, however, the incandescent light bulb is on its way out… and a multibillion-dollar industry will be forever changed.

Done In by Inefficiency

The incandescent bulb, though very effective, is notoriously inefficient. To understand why, one need only understand how it produces light. The filament (or wire) inside a bulb is heated by an electric current until it becomes so hot it glows.

The problem: only about 10% of the energy used by an incandescent bulb is converted into light; the rest is dissipated as usually unwanted heat.

This is a problem, not just for the homes and businesses using these bulbs, but also upstream at the power plants that produce the required energy. In an era when producers are wondering how they’re going to keep up with the surging demand amidst rising fuel costs and concern about the environmental impact of energy production is running high, such inefficiencies are frowned on.

Governments, of course, have the ability to put muscle behind their frowns… and they’re doing just that. In 2013, it became illegal in the United States to manufacture or import 75 and 100 watt incandescent bulbs. 40 and 60 watt bulbs were added to the ban in January of this year. The U.S. isn’t the only government actively limiting the use of incandescent bulbs. The European Union, Canada, Brazil, Australia, and even China are among many that have phase out programs aimed at forcing users to convert to an alternative technology.

For household applications, that primarily means a switch to those twisty shaped compact fluorescent lamps (CFLs), or the newest competition in town, light emitting diodes (LEDs).

A CFL’s spiral tube contains argon and mercury vapors, and they are far more efficient than the old Edison bulb. When an electrical current is passed through the vapors, invisible ultraviolet light is produced. The ultraviolet light is transformed into visible light when it strikes a fluorescent coating on the inside of the tube.. all at about one fourth the electrical cost for an equivalent amount of light from an incandescent lamp.

LEDs, in contrast, don’t use commonplace materials. Rather, they’re made from somewhat exotic semiconductor materials, like indium and gallium nitride. When an electrical current is passed through these semiconductors, energy is released in the form of particles called photons—the most basic units of light in physics, i.e., light’s equivalent of individual electrons. In the process, little is lost to heat and the materials take minimal wear, making for another very efficient light source, and one that lasts far longer than its competitors.

Comparing the Alternatives

Right now, LED bulbs are relatively expensive to produce. That’s because a bulb is not just a bulb when it comes to LEDs—it can’t be made brighter by just putting in a thicker filament or tube. Instead, each bulb is a complex web of up to dozens of small diodes, each roughly the size of a pinhead, wired together and to a ballast that regulates the electricity flowing through them.

When compared head to head with incandescent and CFL light bulbs, LEDs come out the clear winner in operating costs. But even with millions of these bulbs now shipping to Home Depot, they still fall down on initial cost:

60-WATT
Equivalent
Incandescent
CFL
LED
Lumen 880 800 800
Life (hours) 1,000 8,000 25,000
Initial cost $1.19 $5.00 $9.98
Yearly operating cost $7.23 $1.81 $1.45


However, when you add up those advantages over that 25,000 hour lifetime, then the advantages start to become clear:


60-WATT
Equivalent
Incandescent
CFL
LED
Yearly
operating cost
$7.23 $1.81 $1.45
Years 23 23 23
23-year
operating cost
$166.29 $41.63 $33.35
Initial cost $1.19 $5.00 $10.00
Replacement
cost
$28.56 $10.00 $0.00
Total cost $196.04 $56.63 $43.35

As you can see, to produce roughly the same lumens (a measure of the amount of visible light emitted by a source), both CFLs and LEDs are hands-down more economical than incandescent bulbs.

Of course, in a residential scenario where a bulb is run for maybe three hours a day, it would take about 23 years to realize that big a savings. But put them in place in a commercial or industrial setting like the hundreds of lights running 24 hours a day in the local Walmart, and the savings add up quickly.

Still, why are we so bullish on the prospects for LEDs if they barely edge out their CFL competitors over tens of thousands of hours?

The first difference is environmental. CFLs have the inherent disadvantage of containing mercury, a toxic metal that poses health and environmental risks. Break one of these bulbs and you have a biohazard on your hands. There’s a real cost to recycling these bulbs and containing the mess from those that are just tossed in the trash heap. It’s a cost that will certainly be shifted back to consumers of the bulbs if environmental legislation continues on its same path.

Further still, over its life, an LED bulb is already 25% more economical than a CFL. When compared to an incandescent bulb, either is a huge cost winner. But when it comes down to dollars and cents, the LED wins today. The only reason not go that route is the big upfront cost difference, which when buying tens of thousands of bulbs at a time (as many commercial companies do) can be a hard pill to swallow.

However, the cost of LEDs has been falling fast in recent years and will continue to do so. In 2011, a 60 watt equivalent LED bulb retailed for about $40. In 2012, the price fell below $20. Today, it’s less than $10.

As volumes increase and competition among manufacturers and retailers intensifies, prices will continue to fall. Some industry analysts see a $5 LED on the near horizon. We wouldn’t bet against it.

The price could go even lower if manufacturers can successfully implement a cost-reduction break through. Specifically, LED devices are built on expensive aluminum oxide substrates. But manufacturers are working on ways to build on substrates made of silicon, which would substantially reduce defects and thus costs. As prices drop, and if environmental law hits mercury laced CFLs next, LED’s cost advantage will start to widen significantly.

Inflection Point

This all means that the LED’s time has arrived. According to IHS, a global market and economic research firm, unit shipments of LED lighting devices will grow at a compounded annual rate of 40% between now and 2020.


In 2011, the size of the global lighting market was about $96 billion, and LED devices accounted for about 12% of that amount. By 2020, McKinsey & Company projects, the size of the market will be $136 billion, of which 63% will be attributable to LEDs.

With the LED bulb, we have a trend that’s been in the making for several years… and it’s now ready to surge. How should an investor play it? Certainly not with a blindfold and a dartboard, or a whole sector buy like an ETF, because not all participants in this market will prosper.

Some will not be a pure enough play to benefit, or will be cannibalizing their own incandescent and CFL business… like GE and Phillips. Others will find themselves producing a commodity with ever thinning margins… like Cree. And others still already have much of the anticipated growth priced into their shares.
However, we scanned the field and found a company that is well positioned to benefit from the growth of the LED market while, at the same time, actually improving its margins.

We believe this company’s stock is undervalued. That’s why we’re recommending it in the next issue of BIG TECH

For access to this recommendation and many more, simply sign up for a risk free trial of BIG TECH. 

If you decide to keep your subscription, it will only cost a mere $99, nothing compared to the profits just this one investment should bring. But, if for any reason you’re unsatisfied, simply cancel to receive a prompt, courteous, and complete refund of the entire subscription price. You have 3 full months to make up your mind.

The article Thomas Edison’s Dream Smashed was originally published at Casey Research


Friday, May 18, 2012

Let's Put Your Starter Solar System Together

The most common first step in learning to create your own solar energy is buying one of the widely distributed "solar panels kits". And that's great, nothing has done more for helping the newcomer get started then to walk into a Harbor Freight store or Costco and buy a ready to set up kit.

But like any sport or hobby a large percentage of these kits get put into the closet to gather dust. And the remaining percentage that do get put to good use get replaced or updated almost immediately.

Our goal here is to walk you through picking out individual parts that will help you avoid not only having to update your system right away but to generate 3 times the power right from the start avoiding the realization that you bought what amounts to a "trickle charger".

Most of the more common kits, the Harbor Freight 45 Watt Kit and the Sunforce 60 Watt Kit are what is known as "amourphous panels". While amorphous panels are less expensive to produce one of the biggest draw backs to using them is that they require much more real estate per watt. A standard 50 watt crystalline panel requires only as much space as is needed for 1 of the 3 or 4 panels from these kits. And while crystalline panels use to be out of the dollar range of most DIY energy makers that has changed dramatically.

Let's start with the solar panel

The panel we would suggest for our "starter system" is not exactly a crystalline panel but a Polycrystalline panel. The Epcom 50 watt panel is approxomately 32" X 22", has a tough metal frame and sells for only $99.00. The 125 watt version of this same panel sells for $199.00 and a little quick math tells you that spending a little bit more money when making your first purchase is going to pay off quickly. The 50 watt panel puts out 2.78 amps and the 125 version puts out a respectable 7.3 amps. So ask yourself "how many panels am I REALLY going to add to this little system of mine". Knowing this and being honest with yourself about what that answer is will help you make a sound decision on your charge controller.

The Charge Controller

The charge controller of these common kits come in either 4 amps for the Harbor Freight Kit 45 watt kit or 7 amps for the Sunforce 60 watt kit. You can make the jump to 10 amps for the reasonable price of $35.00 with the Sunforce 60031 Charge Controller. But you need to be honest with yourself, will you save money in the long run by stepping up and making your first purchase the Sunforce 60032 with 30 amp capabilities and LED digital voltage and battery condition read out.

Next is the Power Inverter

Last but not least is the power inverter that will convert your DC volt power to usable 110 volt to be used with common household appliances etc. The inverter is the most misunderstood and replaced item in any system. Beginners will most often buy the least expensive inverter to get started only to find out that it won't power what they intended to use it for. Be honest with yourself, do the math. How much power does it take to run that computer or shop light hat you want to run on your new solar system. Better then doing the math, purchase a "Kill A Watt Meter". It's a simple device that you plug into the wall and plug your appliance into to read the power useage of your item on it's LED screen.

The least expensive inverters are what is called "modified Sine Wave" and are almost non usable for electric motors, TV's, microwaves or computers. I have always had some inexpensive high wattage modified sine wave inverters in our arsenal, they have their place. But most likely you will want to use your new system for a computer or TV so it's best to step up and get a reliable, quality "Pure Sine Wave" inverter right from the start. In the 300 watt and under category we suggest the Samlex PST 30S that sells for around $128.00.

In the 1000 watt category you can get into the Xantrex ProWatt SW1000 for approximately $279.00 and you won't regret it. This Xantrex has features usually associated with much more expensive units. Remote capabilities, dual GFCI outlets, USB charging ports and more.

Let's put it all together.....

One of the few remaining items you will need is an assortment of wiring. Stranded copper wiring is a valuable commodity to the home energy producer. Start scrounging around and buying up all you can when you can get deals. Stranded only since solid wire has almost no place in the DC world in our opinion. And focus on 10 gauge and thicker. The most expensive wire you'll need will be for connecting your batteries to the inverter. You want to design your system to keep the inverter as close as possible to the batteries. Welding leads from dis guarded, out dated Lincoln welders have always been prime targets for this application. Or committing a set of heavy jumper cables to the cause can work as well. Don't make a move on your wiring though without referring to this chart. The number 1 mistake made by the first timer is under sized wiring.

So let's get it put together. If you need any help at all visit our forum that is 800+ members strong and they will answer any questions you have and have posted pictures and diagrams of their own systems there as well. Ask any question you want, our members love helping someone get started.


Everything You Need to Produce Your Own Solar Energy.....Check Out New World Solar Power!

Wednesday, March 16, 2011

Is it True.....Can You Sell Solar Power Into Your Grid and Make Money

A recent New York Times article blasted solar energy systems as making “no economic sense.”[1] The truth: solar photovoltaic systems aren’t cheap but they do payback. Sales of solar photovoltaic systems have been rising up to 50% annually in some states and it’s not just environmental do-gooders who are investing in the renewable energy. For many homeowners, solar energy is about dollars and cents.

Solar systems incur significant upfront costs but both federal and state governments offer incentives. The Energy Policy Act of 2005 included two ways to receive a tax credit for solar energy from the federal government. You can qualify for 30% of the system cost (up to $2,000) for either solar water heating or for solar photovoltaic (PV) electricity.

At the state level are more incentives. Over half of the states in the nation offer solar energy rebates offset the cost of solar power systems, New Jersey rebates cover more than 50% of retail costs. An additional income tax incentive is offered in 17 states. Add it all up and some homeowners are installing PV systems for a third of the retail price.....Read the entire article.



Everything You Need to Produce Your Own Solar Energy.....Check Out New World Solar Power!

Friday, September 17, 2010

Grid Tie Inverter Analysis

Analysis by Paul Gelling of an inexpensive grid tie inverter. This inverter will plug into a normal wall outlet and allow you to produce 110 V electricity from a wind turbine or solar panel and lower your electric bill. We are going to use this inverter on a wind turbine but first wanted to give it a thorough testing out to make sure it wasn't a lemon.



Everything You Need to Produce Your Own Solar Energy.....Check Out New World Solar Power!

Wednesday, August 4, 2010

Boris Gets New Solar Panels

Since Boris the Bus is turning 40 soon (he’s a ‘71 VW bus), we thought it was time to pimp him out with some new gear, like solar panels! Although they don’t create enough power to charge the bus, they create enough energy while we’re on the road to charge lights, fans, iPhones, and iPads, because that’s what camping’s all about. We can go without running water, but go without Facebook and Twitter? I don’t think so.

Mike got Boris’solar panel kit from Harbor Freight. It was on sale for $159 for a set of 3, which is a great price. Mike is demonstrating how heavy the were, they’re mostly made of glass. Each solar panel was labeled “solar panel”. Just in case you forgot what you spent your money on. The specs are labeled on the back. Each solar panel has a maximum output of 15W. The solar cells are attached to the backside of the glass. Each solar panel has a thin aluminum frame.....Read the entire article.

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Tuesday, June 29, 2010

Simple Combiner Box For DIY Solar and Wind Projects

Here is how to make a $8 combiner box that will let you combine your panel wires without soldering or using wire nuts.



Visit the Harbor Freight 45 Watt Solar Panel Kit Community Forum, a great way to get started!

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Friday, June 11, 2010

Do You Really Understand GTI's.....Grid Tie Inverters

With the new inexpensive GTI's [grid tie inverters] that have come on the market, the DIY market is all the rage for them. And with good reason. If you are just getting started making your own energy, the task of managing a battery bank can be pretty overwhelming for some folks. With GTI's anyone [with a little help from their handyman] can mount a couple of panels and be selling power back to their utility company in a couple of hours. So how does this work?

If you are connected to normal Utility company power and just want to add some Free Sun Power electricity to reduce your electric bill and you do not need a totally independent system, it is possible that a Grid Tie power inverter will suit your needs. With a Grid Tie power inverter, whatever electricity that your solar panels produce will reduce the amount supplied by the utility company, in effect lowering your bill.

And, if you are producing more power than you are using, you can actually sell the extra power back to the utility company! For this type of setup a much smaller battery bank can be installed just to cover short term outages from a few minutes to an hour or two. In fact, if you don't have frequent long term power outages and don't need back up power, then you will not need any batteries at all. (But, really, what utility company never fails? :)

Keep Reading to Discover How You Can Save Thousands on Your Electric Bill

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Tuesday, June 8, 2010

Off Grid RVing

I think it is pretty safe to say that people already know the answer to this question these days but for some there is just not enough information or inspiration to make it click in their mind that “Hey, this is a possibility!” One of the biggest reasons that I choose to live off grid is because of utility bills. The sun provides so much unused energy 365 days of the year and all that most of the population can do is use it for tanning? The second and I guess you could say this is the driving factor in all of my reasons, I want to save up for property and I cant figure out how to do that with the jobs available to me in this economy.
Living paycheck to paycheck is a trap! It does not have to even enter your mind if you only knew that it was possible when you first moved out of mom and dad’s house.

What is Off Grid
Between all of the publicity that the buzz term “Off Grid” has received on TV and in the news media it paints a picture of a rural property with solar panels on the roof and a wind generator in the back fervently pumping out the watts. Off Grid is more then just solar and wind, it is a hobby and a life style and many other things wrapped up into one term “Off Grid Living”. Now, when I say hobby I use that term because it becomes a pastime. You get into this rhythm of checking the voltage and watching the wind spin the blades of your wind generator while sipping coffee.....Read the entire article.


To Build a Wind Generator For That Off The Grid RV..... Just Click Here!


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Saturday, April 10, 2010

Boosting Your Solar Panels Output With Mirrors

Dan Rojas always comes up with some great projects. Now we are not recommending you do this, but please watch the ENTIRE VIDEO for safety reasons. But this sure gives us something to think about.



Everything You Need to Produce Your Own Solar Energy.....Check Out New World Solar Power!

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Monday, January 11, 2010

Russell Turner on Solar Power - ABC Radio Interview

Wodonga Senior Secondary College is proud to announce our contribution to the Solar in Schools Initiative. It is anticipated that its high visual impact, coupled with the contemporary architecture of the College's Technology wing itself, will create an immediate interest and stimulate discussion both within the learning environment, and the local community.



Save Money, Build Your Own Solar Panels

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