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首页> 外文期刊>Journal of Applied Meteorology and Climatology >Climate Impacts on Density Altitude and Aviation Operations
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Climate Impacts on Density Altitude and Aviation Operations

机译:对密度高度和航空运营的气候影响

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摘要

A critical determinant of aircraft performance is density altitude, or the density given as a height above mean sea level, which is dependent on air temperature, pressure, and humidity. These meteorological variables change on various time scales (e.g., hourly, seasonal, and decadal) and are regionally impacted by large-scale climate variability as the result of phenomena such as El Nino-Southern Oscillation or the Arctic Oscillation. Here a statistical analysis is performed to determine the impacts of climate variability on seasonally averaged density altitude, a key metric used by pilots to determine aircraft performance and efficiency, as a function of El Nino-Southern Oscillation and the Arctic Oscillation using NCEP-NCAR reanalysis data and historical aviation meteorological records. Regressions show regional dependencies and impacts to density altitudes that vary as a function of season for both El Nino-Southern Oscillation and Arctic Oscillation cases. The results highlight the importance of understanding the regional nature of the impact of climate variability on density altitude and the potential impacts on aviation operations.
机译:飞机性能的临界决定因素是密度高度,或者作为高度高于平均海平面的密度,这取决于空气温度,压力和湿度。这些气象变量在各种时间尺度(例如,每小时,季节性和额外数)上变化,并且由于EL Nino-Southern振荡或北极振荡等现象而导致的大规模气候变异地影响。在这里,进行统计分析以确定气候变异性对季节性平均密度高度的影响,通过使用NCEP-NCAR再分析的EL Nino-Southern振荡和北极振荡来确定飞行器性能和效率的季节性平均密度高度。数据和历史航空气象记录。回归显示区域依赖性和对密度高度的影响,以eL Nino-Southern振荡和北极振荡案件的季节变化。结果突出了了解气候变化影响对密度高度的影响的重要性以及对航空业务的潜在影响。

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