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Bet and wind

bet and wind

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Bet And Wind Video

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Asset owners are understandably looking to reduce the uncertainty of energy output, despite subsidy scheme or wholesale marketing.

The number of market participants whose revenues are dependent on the supply of renewable energy is growing as well. To meet these needs, products such as insurances and futures are being developed.

However, given the heterogeneity of wind producing sites and the specifics of each asset park or class, a lot of issues arise around the applicability of a single standard product as a hedge.

Potentially significant basis risk might cause both cashflow implications and inadmissibility of the hedge for accounting treatment purposes.

Here is a list of some sources of risk:. As a result, the hedge instrument might result in a payoff from the buyer hedger to the seller dealer, exchange not compensated by higher revenues from high wind output.

A related issue is how to calibrate onshore met data to offshore wind conditions, as these might differ significantly. While turbine manufacturers guarantee a certain technical availability, any unexpected outages not covered by the insurance might trigger payments for the derivative while not generating actual revenues or compensations.

As the load factor is the main determinant of the Wind Power Index, the latter will be unsuitable to mitigate this kind of market price risk.

Each of these motivations—and combinations of them—will lead to different choices. Be realistic about why you are considering wind energy and make sure the actual results satisfy your expectations and goals.

But a wind system needs to make significant energy kilowatt-hours for years or decades to make environmental and financial sense. Scrutinizing your real cost of wind energy is crucial if your primary goal is to save money.

Many wind-electric systems are installed with unrealistic financial and durability projections, and end up generating energy that is more expensive than the local utility grid.

A low cost per kWh requires a productive and long-lasting wind-electric system. Couple of comments from my experience.

As opposed to solar PV, which is a passive system with no moving parts, wind is a mechanical system and so susceptible to wear and tear and mechanical failures.

There is no getting away from that fact. It is going to be more expensive to maintain. Plan for that when designing your system and selecting the tower.

The advantage to wind in the past was that the initial capital cost per installed watt could be lower. With the plummeting PV module prices, that advantage is largely gone.

Add to that the hype and overstated performance and durability claims you spoke about, and it's been a tough time for small wind.

You are absolutely correct. Knowing the average wind speed and, to some extent, the distribution is critical in assessing the viability and payback.

Unfortunately, a lot of folks are reluctant to take the time preferably one year and expense of conducting a wind study. So decisions are based on personal observations.

The two most consistently common errors I've seen through the years are under-sizing the battery bank in off-grid applications and installing a wind turbine tower that is too short.

A long time ago I did a simple cost-benefit analysis based on tower height. Looking solely at wind shear assuming flat, relatively smooth surface , the optimal tower height was 80 ft.

There were still performance gains to be made with taller towers but the associated costs started offsetting a larger percentage of the gains.

So a word of caution - take a hard look at the history of the turbine and the reputation of the mfgr. There are very few turbines that have withstood the test of time.

But there are some. A major issue you want to address regarding the turbine is the method used to control rotational speed.

Since the power is the cube of the wind speed, you want the turbine to be able to effectively capture power from wind events, while also protect itself from excessive winds.

Not an easy task, and one that turbine manufacturers wrestle with. There is a place for small wind. In off-grid systems, a combination of wind and solar can produce a more balanced power production mix.

With both off and on grid, if you have a viable wind resource, a good turbine, and a well designed and installed system, it can make economic sense.

And they are fun to watch. I have spent hours watching and studying wind turbine performance. I'm not a fan of large battery banks as batteries are a reoccurring expense.

On a day of heavy cloud cover panels at this latitude I imagine that is much higher as one moves further south. With today's solar prices that is not outrageous.

People commonly spend way more on new vehicles that do not have a 25 year warranty. They are not known for their longevity but I have had this up and running since with little problems.

I made some modifications early on which has contributed greatly to the long life. One of it's greatest design assets is that it turns 90 degrees out of the wind when it exceeds 35 MPH.

Sure it will limit output in storms but it survives them. I can leave here on vacation and never worry about a big storm coming through.

In this day and age of electronics it is unreasonable to rely on manually shutting down a wind turbine because of a storm, but that is how most small turbines are designed.

Also I suspect there is a way to modify these WhirlWinds to govern the RPM's with an electromechanical device that counts the RPM's, maybe a hall device feeds that info back to electromagnets that align the yaw drive fan into the wind only enough to produce designed RPM's.

I tried to contact Elliot Bayly to discuss this with him and found out he had just passed. This is my project 4, I am glad to see an article on wind power that tells it like it is.

Way too many machines were installed in my area on short poles that will never pay themselves off. One wind machine that shows great promise is the WindSpot, made in Spain.

They are very well built and heavy machines and run at very low RPM's. Something like RPM for the 3. Swept area isn't the greatest but it seems to be adequate.

Search form Article Search. For best performance, wind turbines need to be installed atop tall towers, which gives them access to less-turbulent winds.

Towers need to be tall, tall, tall.

Bet and wind -

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To meet these needs, products such as insurances and futures are being developed. However, given the heterogeneity of wind producing sites and the specifics of each asset park or class, a lot of issues arise around the applicability of a single standard product as a hedge.

Potentially significant basis risk might cause both cashflow implications and inadmissibility of the hedge for accounting treatment purposes.

Here is a list of some sources of risk:. As a result, the hedge instrument might result in a payoff from the buyer hedger to the seller dealer, exchange not compensated by higher revenues from high wind output.

A related issue is how to calibrate onshore met data to offshore wind conditions, as these might differ significantly.

While turbine manufacturers guarantee a certain technical availability, any unexpected outages not covered by the insurance might trigger payments for the derivative while not generating actual revenues or compensations.

Barnet v Bristol Rovers. Port Vale v Sunderland. Hampton and Richmond v Oldham. Man City v Man Utd. Barcelona v Real Betis. Celta de Vigo v Real Madrid.

Crystal Palace v Tottenham. Wisla Plock v Zaglebie Sosnowiec. Fortuna Dusseldorf v Hertha Berlin. Nurnberg v VfB Stuttgart.

Jonkoping Sodra v Norrby IF. Gefle v Vasby United. Something like RPM for the 3. Swept area isn't the greatest but it seems to be adequate.

Search form Article Search. For best performance, wind turbines need to be installed atop tall towers, which gives them access to less-turbulent winds.

Towers need to be tall, tall, tall. Wind power systems require regular maintenance, which usually means routine climbs to the tower top.

The turbine is only part of the system mechanics and cost. The larger the turbine and tower, the more infrastructure involved.

But because of the characteristics of the wind, wind systems have several strikes against them: Tall towers are required for meaningful production Reliability and robustness are hard to come by Compared to solar electricity, the cost per kWh can be high Qualified local installation and maintenance help is difficult to find Hype, misinformation, and outright scams are too common This article will help you sift through the rhetoric and numbers, and make a wise decision about whether or not to tap local wind energy.

People choose wind energy for several reasons, including: Environmental concerns Decreased cost of energy Desire for independence Fun and interest Each of these motivations—and combinations of them—will lead to different choices.

A Home Power reader wants to know about the best way to do wind machine governing, and our expert replies. A Home Power reader asks about vertical axis wind turbines, and our expert responds.

Wind Power for Charging Batteries. A Home Power reader wonders about changing the spinning direction of wind generators, and our expert answers.

Two seasoned wind-energy experts share their perspectives on small-scale systems. Covers design issues that make wind systems most productive.

Home Power announces the latest in climbing gear for wind towers. For small windturbines what kind of AVR is used. Thanks for your cogent comments, Jim.

A couple of cautions: PV has a predictable output based on rated wattage if you know the peak sun hours and the appropriate factor.

Wind rated wattage is at peak, and since wind is a cubic resource, there's no easy way to predict energy kWh output from peak wattage of a wind generator.

You really need the average wind speed on the site and good data on the specific machine. So comparing "cost per installed watt" just isn't a sound comparison.

What's needed is comparing cost per kWh delivered over time. But be careful with statements about "optimal" tower height. It very much depends on the terrain, the machine, and the application.

If money isn't an object, higher is always better. And really, instead of talking about optimum total height, it would be wiser to talk about height above nearby obstructions.

A common rule of thumb is "at least 30 feet above anything within feet. Batteries have a cost, both financially and in energy losses.

A larger bank has larger losses, and takes more energy to keep fully charged. It also presents a temptation to overuse the system, and then has the major drawback of being harder to bring up to full charge.

Most off-grid systems have back-up fuel-fired generators, so the significant question becomes, "How often will I need to fire up the generator?

This strategy works at my homestead, where most days I have a surplus, because I have substantial wind and PV capacity, while maybe 15 times a year I need to run the generator.

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