Set as Homepage - Add to Favorites

日韩欧美成人一区二区三区免费-日韩欧美成人免费中文字幕-日韩欧美成人免费观看-日韩欧美成人免-日韩欧美不卡一区-日韩欧美爱情中文字幕在线

【??? ????? ?????】Why wind turbines thrive in Antarctica and colder places than Texas

At the main U.S. research station in Antarctica,??? ????? ????? annual temperatures average zero degrees Fahrenheit, but often drop much lower. There, near the United States' McMurdo Station, a few wind turbines can provide enough electricity to power 100 American homes, and avoid burning over 120,000 gallons of diesel fuel each year.

This is no surprise. Wind turbines, cleverly designed from airplane wings, provide reliable, ever-cheaper energy that doesn't emit deadly air pollution and planet-warming greenhouse gases into the atmosphere. Such lofty turbines were far from responsible for Texas' disastrous energy collapse following a well-predicted surge of Arctic air into the region (it was largely a failure of gas power plants and infrastructure along with an ill-equipped, vulnerable grid). Yet, grossly irresponsible reporting inaccurately blamed a "MASSIVE GREEN ENERGY FAILURE," specifically Texas' over 13,000 wind turbines, for the historic collapse.

The reality about wind turbines, however, is they regularly operate in frigid conditions and can be weatherized to perform in wintry extremes. That's why they work in places like Sweden, Antarctica, and Iowa (over 40 percentof Iowa's electricity comes from wind). At times, some turbines (particularly those that aren't weatherized like many in Texas) are temporarily shut down during excessively icy conditions, wherein other energy sources, be it nuclear, solar, gas, or hydropower, are meant to pick up the slack.

And just like solar, nuclear, and hydropower, wind energy is one important contributor to a greater energy system — a system that's gradually growing more efficient, more reliable, and clean. Sure, some turbines today aren't weatherized and the wind doesn't always blow, but that's well known. That's OK.

"That's normal. We've thought of solar and wind as part of our overall supply of electricity," said Grant Goodrich, the executive director of the Great Lakes Energy Institute at Case Western Reserve University, which operates and researches wind turbines.

Working in the cold

Wind energy will continue to expand in the United States. That's because in the U.S. money talks, and the prices of wind turbines have plunged. What's more, wind energy doesn't come with the cost and risk of transporting fossil fuels through hundreds of miles of pipelines, and the realistic potential for massive leaks and grim explosions.

"The economics are there," emphasized Gavin Dillingham, the energy director at the Houston Advanced Research Center, an energy research organization in Texas. Solar and wind are often cheaper than natural gas, added Dillingham, who is also the director of the U.S. Department of Energy’s Southcentral and Upper West Combined Heat and Power Technical Assistance Partnership, which works to improve the region's energy efficiency and resilience.

When accounting for weather extremes, the engineering is there, and improving, too. To operate in cold places like Canada, heating can be applied to some essential components of the turbines, such as the motor and gears.

Mashable Light Speed Want more out-of-this world tech, space and science stories? Sign up for Mashable's weekly Light Speed newsletter. By clicking Sign Me Up, you confirm you are 16+ and agree to our Terms of Use and Privacy Policy. Thanks for signing up!

"Cold climate weatherized wind turbines are not rocket science," explained Vijay Modi, a professor of mechanical engineering at Columbia University's School of Engineering and Applied Science. However, weatherizing turbines adds costs, perhaps less than 10 percent of the price of a new turbine, he said. And during freezing events, some wind energy is then diverted to warming the turbines.

"The electricity output of the turbine reduces slightly when heating elements that prevent freeze-up kick in," said Modi. "But this is a very small reduction in turbine output considering that otherwise you risk having no output at all."

Mashable ImageA wind farm in Marshalltown, Iowa. Credit: Getty Images / Timothy Fadek / Corbis

A current area of turbine innovation today, however, is not how to just deal with the cold, but what to do with ice (which is caused by moist and freezing weather conditions). "Temperature really isn't the important factor for operating the turbine," said Goodrich. "The issue is ice formation on the blades." Lots of ice accumulation on the blades can make them too heavy to productively, or safely, spin.

Developing ice-resistant coatings for big turbine blades is an ongoing, important area of research, explained Hui Hu, the director of the Aircraft Icing Physics and Anti-/De-icing Technology Laboratory at Iowa State University. Coatings (made with chemicals intended to repel water droplets) are ideal because they don't require energy to heat up the blades, said Hu. Yet warming the blades might be a viable option, too. In Sweden, the power company Skellefteå Kraft has started both heating a carbon fiber layer on blades and circulating warm air inside the blades.

See Also: Why winter, yes winter, fires are burning in California

Wind turbines, of course, aren't the only energy infrastructure that should be weatherized for the potential of extreme temperatures. After wintry extremes led to major outages in Texas and New Mexico in 2011, the Federal Energy Regulatory Commission recommended making Texas' electrical infrastructure — including gas plants, gas pipelines, wind turbines, and transmission lines — winter-ready, such as by insulating pipes. This didn't happen. As a result, cold weather (which Texas knew was coming) just collapsed large swathes of the grid. Misery and death ensued.

"The whole infrastructure was comprised because the state did not take the appropriate steps to weatherize its infrastructure," said the Houston Advanced Research Center's Dillingham, noting that the shutdown of gas plants was the greatest factor in Texas' grid failure.

In the coming decade, and beyond, wind power will be bolstered by the ability to store excess energy in batteries. This will provide more reliable renewable energy when, for example, some turbines might be less productive. "We need to build [wind farms] with storage in mind," said Goodrich. Battery storage costs plunged by nearly 70 percent between 2015 and 2018, according to the U.S. Energy Information Administration.

As wind energy is set to multiply across the nation, Modi emphasizes that it's wise to consider weatherizing more wind turbines. The wind is free, and our ability to expertly harness energy from air currents still impresses even mechanical engineers.

"The modern wind turbine of the 21st century is an ingenious technology," said Modi.

Related Video: Even the 'optimistic' climate change forecast is catastrophic

0.1449s , 9946.796875 kb

Copyright © 2025 Powered by 【??? ????? ?????】Why wind turbines thrive in Antarctica and colder places than Texas,Public Opinion Flash  

Sitemap

Top 主站蜘蛛池模板: 91久久嫩草影院免费看 | 日产精品卡二卡三卡四卡视 | 国产精品久久久爽爽爽麻豆色哟哟 | 2024久久免费精品国产72精品 | 成人片在线观看地址KK4444 | 久久成人精品视频11 | 2024最新无码片中文字 | 亚洲A片国产AV一区无码 | 狠狠干网站 | 久久午夜精品视频 | 校花高潮一区日韩 | 日本熟妇乱妇熟色A片在线观看 | 国产熟女福利 | 国产精品久久久久永久免费看 | 2019久久久高清456 | 激情四房| 色综合久久天天综 | 久久精品人人妻一区二区三 | 少妇高潮潮喷到猛进猛出小说 | 日本jizzjizz| 久久精品高清视频 | 国色天香精品卡一卡二卡三二百 | 乱人伦人妻中文字幕无码久久网 | 亚洲一区二区三区无码毛片 | 日日夜夜人人精品一区三区 | 国产一区二区精品久久麻豆 | 色情免费100部A片看片 | 精品久久久久久成人 | 久久精品av | 快播3d肉蒲团 | 成人免费视频无码专区 | 久久伊伊香蕉综合精品 | 久久6699精品国产人妻 | 亚洲欧美中文 | 亚洲午夜视频在线观看 | 91精品国产福利在线 | 精品综合久久久久久97 | 日韩成人不卡福利一区二区 | 国产乱子轮xxx农村 国产乱子视频一区二区三 国产乱子影视频上 | 国产成人亚洲综合色影视 | 99久久国产免费福利 |