风力发电塔架储氢技术综述

B. R. Bapu, J. Karthikeyan, K. Reddy
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引用次数: 6

摘要

风能是清洁的、可再生的,在考虑“绿色”能源替代方案时,风能经常排在首位。在考虑风能时,也会出现许多具有挑战性的问题。一些人说,最大的问题是风能不可靠,不可靠,也不稳定,不值得认真对待;至少在小规模应用中是如此。由于风的不稳定性,它不能成为基本负荷能源生产的贡献者。该行业已经并且目前正在解决通过储能方式从风能中“间歇性”发电的问题。也就是说,在机会出现时生产能源,并在需求增加时储存能源以供以后使用。针对各种类型的可再生能源,储能技术不断得到发展。这适用于两个主要的能源平台是风能和太阳能。风不会24小时不停地吹,太阳也不会永远照耀。为了克服这些缺点,需要对我国传统的风力发电机结构进行以下修改。通过在涡轮机叶片上固定太阳能条,我们可以在风力涡轮机减速或停止时发电。b.在涡轮机塔中放置储氢室,当有多余的风能可用时,可以通过电解槽产生氢气,然后通过燃料电池和氢燃烧发动机向国内用户提供电力。拟议的解决方案在电力生产不足或电力基础设施不足的地区将特别有用。例如,储存的氢气可用于提供备用/应急电源或确保更可靠和更高质量的电力供应。
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Hydrogen storage in wind turbine tower — A review
Wind energy is clean, renewable, and often rises to the top of the list when considering “green” energy alternatives. Many challenging issues also arise when considering wind energy. The biggest issue, some say, is that wind energy is not reliable, dependable, or consistent enough to be taken seriously; any more than on small scale applications. Due to the inconsistent nature of wind, it cannot be a contributor for base load energy production. The industry has, and is currently addressing this issue of “intermittent” power generation from wind by means of energy storage. That is to say, produce the energy when the opportunity arises and store the energy for later use when demand levels increase. Energy storage technology has been continuously being developed for various types of renewable energy. The two primary energy platforms this applies to is wind and solar. Wind doesn't blow 24/7 nor does the sun always shine. In order to overcome these drawbacks, the following modifications requires in our traditional wind mill structure. a. By fixing solar strip over turbine blades, we could generate electricity when the wind turbine slows or stop. b. By placing hydrogen storage compartment in a turbine tower, the plant could produce hydrogen through an electrolyser when there is excess wind energy available, and then provide electricity to domestic customers via a fuel cell and a hydrogen combustion engine. The proposed solution will be especially useful in areas with insufficient power production or insufficient electricity infrastructure. For instance, stored hydrogen can be used to provide back-up/emergency power or to secure a more reliable and higher quality power supply.
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