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Drought and the water–energy nexus in?Texas

机译:德克萨斯州的干旱与水能关系

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Download video Transcript View all Environ. Res. Lett. video abstracts Texas experienced the most extreme drought on record in 2011 with up to 100 days of triple digit temperatures resulting in record electricity demand and historically low reservoir levels. We quantified water and electricity demand and supply for each power plant during the drought relative to 2010 (baseline). Drought raised electricity demands/generation by 6%, increasing water demands/consumption for electricity by 9%. Reductions in monitored reservoir storage <50% of capacity in 2011 would suggest drought vulnerability, but data show that the power plants were flexible enough at the plant level to adapt by switching to less water-intensive technologies. Natural gas, now ~50% of power generation in Texas, enhances drought resilience by increasing the flexibility of power plant generators, including gas combustion turbines to complement increasing wind generation and combined cycle generators with ~30% of cooling water requirements of traditional steam turbine plants. These reductions in water use are projected to continue to 2030 with increased use of natural gas and renewables. Although water use for gas production is controversial, these data show that water saved by using natural gas combined cycle plants relative to coal steam turbine plants is 25–50 times greater than the amount of water used in hydraulic fracturing to extract the gas.
机译:下载视频成绩单查看所有环境。 Res。来吧视频摘要得克萨斯州经历了2011年有史以来最严重的干旱,长达100天的三位数温度导致了创纪录的电力需求和历史最低的水库水位。相对于2010年(基线),我们量化了干旱期间每个发电厂的水和电力需求与供应。干旱使电力需求/发电量增加了6%,使水需求/电力消耗增加了9%。 2011年,受监控的水库存储量减少至容量的50%以下,这表明干旱很脆弱,但数据显示,发电厂在电厂级别上具有足够的灵活性,可以通过改用耗水量较小的技术来进行适应。天然气现在已成为德克萨斯州约50%的发电量,它通过提高电厂发电机的灵活性来增强抗旱能力,其中包括燃气涡轮机以补充不断增长的风力发电和联合循环发电机,其冷却水需求量约为30%传统的蒸汽轮机厂。随着天然气和可再生能源使用量的增加,这些用水量的减少预计将持续到2030年。尽管用于天然气生产的水存在争议,但这些数据表明,与天然气蒸汽轮机电厂相比,使用天然气联合循环电厂所节省的水量比水力压裂中提取气体所用的水量大25至50倍。

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