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首页> 外文期刊>Journal of Applied Meteorology and Climatology >Impacts of Climate Warming on Aviation Fuel Consumption
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Impacts of Climate Warming on Aviation Fuel Consumption

机译:气候变暖对航空燃料消耗的影响

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摘要

Factors affecting aviation fuel efficiency are thermal and propulsive efficiencies, and overall drag on aircraft. An along-the-route integration is made for all direct flights in a baseline year, 2010, under current and future atmospheric conditions obtained from 26 climate models under the representative concentration pathway (RCP) 8.5 scenario. Thermal efficiency and propulsive efficiency are affected differently, with the former decreasing by 0.38% and the latter increasing by 0.35%. Consequently, the overall engine efficiency decrease is merely 0.02%. Over the same period, the skin frictional drag increases similar to 3.5% from the increased air viscosity. This component is only 5.7% of the total drag, and the similar to 3.5% increase in air viscosity accounts for a 0.2% inefficiency in fuel consumption. A t test is performed for the multiple-model ensemble mean time series of fuel efficiency decrease for two 20-yr periods centered on years 2010 and 2090, respectively. The trend is found to be statistically significant (p value = 0.0017). The total decrease in aircraft fuel efficiency is equivalent to similar to 0.68 billion gallons of additional fuel annually, a qualitatively robust conclusion, but quantitatively there is a large interclimate model spread.
机译:影响航空燃料效率的因素是热和推进效率,以及飞机上的总体拖动。在2010年基准年度的所有直航,2010年的所有直接航班都在从代表浓度途径(RCP)8.5场景下的26个气候模型中获得的当前和未来的大气条件下的所有直飞。热效率和推进效率受到不同的影响,前者降低0.38%,后者增加0.35%。因此,总发动机效率降低仅是& 0.02%。在同一时期,皮肤摩擦阻力从增加的空气粘度增加到3.5%。该组件仅占总阻力的5.7%,而空气粘度的增加3.5%占燃料消耗量的0.2%效率。对于多年2010和2090的多年期间,对多模型集合平均时间序列的多模型集合平均时间序列进行了T测试。发现趋势是统计学意义(P值= 0.0017)。飞机燃料效率的总减少相当于每年类似于0.68亿加仑的额外燃料,其定性坚固的结论,但定量地存在大的间间模型。

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