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Coupled versus uncoupled optimal solutions for thermal and dynamic problems in spacecraft atmospheric flight

机译:航天器大气飞行中热力和动力问题的耦合与非耦合最优解

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Purpose - This paper aims to address a significant issue related to the coupled and uncoupled treatment of the thermal and dynamic problems in the optimization of aeroassisted orbital maneuvers and the simultaneous optimal sizing of the associated heat shields. The literature generally focuses on decoupled treatments that reduce the computational load; in this manner, consequently, a decrease in the representativity of the solution manifests. The general operating mode first optimizes the trajectory and subsequently defines the optimal heat shield design based on that trajectory. Design/methodology/approach - This paper analyzes the impact of both treatments on the evaluation of the convenience of an aeroassisted maneuver with respect to an equivalent purely propulsive exoatmospheric maneuver in relation to the achievable total mass savings of the propellant and the heat shield. Two case studies are analyzed via an optimization methodology that references genetic algorithms: the first case study is related to an aerobraking maneuver and the second case study is related to an orbital plane change. Findings - The results demonstrate that the adoption of decoupling produces conservative solutions, i.e. unfavorable estimates, with a lower level of convenience of the aeroassisted technique compared to equivalent purely propulsive exoatmospheric maneuvers. Originality/value - This type of analysis can provide an appropriate discernment criterion for the selection of the modus operand based on the available computational power and the desired level of representativity.
机译:目的-本文旨在解决与航空动力学轨道优化和相关隔热板同时优化尺寸相关的热力学和动力学问题的耦合和非耦合处理相关的重要问题。文献通常集中在减少计算量的解耦处理上。结果,以这种方式,解决方案的代表性降低了。常规操作模式首先优化轨迹,然后根据该轨迹定义最佳的隔热板设计。设计/方法/方法-本文分析了两种处理方法对相对于推进剂和隔热板可实现的总质量节省而言的等效于纯粹的推进大气层操作的航空辅助操作便利性评估的影响。通过参考遗传算法的优化方法分析了两个案例研究:第一个案例研究与航空制动操纵有关,第二个案例研究与轨道平面变化有关。发现-结果表明,与等效的纯推进式大气外机动相比,采用去耦产生了保守的解决方案,即不利的估算,航空辅助技术的便利性较低。独创性/值-这种类型的分析可以基于可用的计算能力和所需的表示性水平,为选择操作数类型提供适当的区分标准。

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