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Integration of Linear Dynamic Emission and Climate Models with Air Traffic Simulations

机译:线性动态排放和气候模型与空中交通模拟的集成

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Future air traffic management systems are required to balance the conflicting objectives of maximizing safety and efficiency of traffic flows while minimizing the climate impact of aviation emissions and contrails. Integrating emission and climate models together with air traffic simulations improve the understanding of the complex interaction between the physical climate system, carbon and other greenhouse gas emissions and aviation activity. This paper integrates a national-level air traffic simulation and optimization capability with simple climate models and carbon cycle models, and climate metrics to assess the impact of aviation on climate. The capability can be used to make trade-offs between extra fuel cost and reduction in global surface temperature change. The parameters in the simulation can be used to evaluate the effect of various uncertainties in emission models and contrails and the impact of different decision horizons. Alternatively, the optimization results from the simulation can be used as inputs to other tools that monetize global climate impacts like the FAA's Aviation Environmental Portfolio Management Tool for Impacts.
机译:需要未来的空中交通管理系统来平衡相互矛盾的目标,即最大化交通流的安全性和效率,同时将航空排放和凝结尾迹对气候的影响最小化。将排放和气候模型与空中交通模拟结合在一起,可以更好地理解物理气候系统,碳和其他温室气体排放与航空活动之间的复杂相互作用。本文将国家级空中交通模拟和优化功能与简单的气候模型和碳循环模型以及气候指标相结合,以评估航空对气候的影响。该功能可用于在额外的燃料成本和减少全球表面温度变化之间进行权衡。模拟中的参数可用于评估排放模型和凝结尾迹中各种不确定性的影响以及不同决策视野的影响。另外,来自模拟的优化结果也可以用作其他工具的输入,这些工具可以将全球气候影响货币化,例如FAA的“航空环境影响管理工具”。

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