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Design of a decision support system to reduce net radiative forcing via optimal contrail generation

机译:决策支持系统的设计,可通过优化轨迹转换来减少净辐射强迫

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With global flight distance projected to increase by a factor of four by 2050, contrail generation is expected to increase by a similar factor. Optimized contrail presence can lead to decreased net radiative forcing (RF): the phenomenon that occurs when heat is trapped within the Earth's atmosphere. RF is projected to increase by 280% by 2050, adding significantly to global warming. A system needs to be developed to utilize the opportunity in aircraft contrail generation optimization; this will help to prevent radiation from entering the Earth's atmosphere and allow outgoing heat to escape. Controptimal is a decision support system for airline dispatch that was created to help address this gap and reduce net radiative forcing. Specifically, a simulation was developed to optimize contrail generation to lower net radiative forcing. Of the nine altitudes analyzed, two proved to lower net RF by at least 20% with the most optimal route flying at FL 330 and decreasing the baseline RF value by 94%. However, RF values were found to decrease further when the system used live weather data. The simulation utilized a network optimization to then conduct a tradeoff between net radiative forcing, fuel burn, and duration of flight. In a specific case study timestamped `2015-08-16 09:00,' Controptimal found an optimal route that began at FL 330 and ascended to FL 380 one hour into the flight. By flying this route, it decreased net RF by 94%, increased fuel burn by 3%, and increased flight time by approximately 4 minutes. This trajectory had a utility of 0.65, followed by an alternatives with the utility of 0.49. The results indicate that contrail presence could be planned to lower the net RF.
机译:预计到2050年,全球飞行距离将增加四倍,轨迹转换的产生也将增加类似的倍数。优化的轨迹转换会导致净辐射强迫(RF)降低:当热量被困在地球大气中时会发生的现象。预计到2050年,射频将增加280%,这将大大加剧全球变暖。需要开发一个系统,以利用机会优化飞机轨迹转换;这将有助于防止辐射进入地球大气层,并使散发的热量散逸出去。 Controptimal是用于航空公司调度的决策支持系统,旨在帮助解决这一差距并减少净辐射强迫。具体而言,开发了一个模拟,以优化轨迹转换产生,以降低净辐射强迫。在所分析的9个海拔高度中,有2个被证明可将净RF降低至少20%,而最佳航线在FL 330上飞行,并且将基线RF值降低94%。但是,发现当系统使用实时天气数据时,RF值会进一步降低。该模拟利用网络优化在净辐射强迫,燃油消耗和飞行持续时间之间进行权衡。在时间戳为“ 2015-08-16 09:00”的特定案例研究中,Controptimal发现了一条最佳航线,该航线始于FL 330,飞行一个小时后便升至380 FL。通过这条航线,它使净RF降低了94%,燃油消耗增加了3%,​​飞行时间增加了大约4分钟。该轨迹的效用为0.65,其次是效用为0.49的替代方案。结果表明,可以计划存在凝结尾迹以降低净RF。

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