Inicio  /  Aerospace  /  Vol: 11 Par: 2 (2024)  /  Artículo
ARTÍCULO
TITULO

A Multidisciplinary Optimization Framework for Ecodesign of Reusable Microsatellite Launchers

Girolamo Musso    
Iara Figueiras    
Héléna Goubel    
Afonso Gonçalves    
Ana Laura Costa    
Bruna Ferreira    
Lara Azeitona    
Simão Barata    
Alain Souza    
Frederico Afonso    
Inês Ribeiro and Fernando Lau    

Resumen

The commercial space launch sector is currently undergoing a significant shift, with increasing competition and demand for launch services, as well as growing concerns about the environmental impact of rocket launches. To address these challenges, within the New Space Portugal project scope, a multidisciplinary framework for designing and optimizing new launch vehicles is proposed. Creating a more resilient and responsible space industry can be achieved by combining technological innovation and environmental sustainability, as emphasized by the framework. The main scope of the framework was to couple all the disciplines relevant to the space vehicle design in a modular way. Significant emphasis was placed on the infusion of ecodesign principles, including Life Cycle Assessment (LCA) considerations. Optimization techniques were employed to enhance the design and help designers conduct trade-off studies. In general, this multidisciplinary framework aims to provide a comprehensive approach to designing next-generation launch vehicles that meet the demands of a rapidly changing market while also minimizing their environmental impact. A methodology that leverages the strengths of both genetic and gradient-based algorithms is employed for optimizations with the objectives of maximizing the apogee altitude and minimizing the Global Warming Potential (GWP). Despite only being tested at the moment for sounding rockets, the framework has demonstrated promising results. It has illuminated the potential of this approach, leading to the identification of three optimal designs: one for maximizing the apogee, another for minimizing GWP, and a compromise design that strikes a balance between the two objectives. The outcomes yielded a maximum apogee of 6.41 6.41 km, a minimum GWP of 9.06 9.06 kg CO2???? CO 2 e q , and a balanced compromise design featuring an apogee of 5.75 5.75 km and a GWP of 25.64 25.64 kg CO2???? CO 2 e q .

 Artículos similares

       
 
Dongwen Xue, Qun Yan, Zhuohan Li and Kai Wei    
In this paper, a multidisciplinary optimization design method and its verification of low-noise aircraft propellers considering aerodynamics, noise, and structural strength were carried out to further reduce the aerodynamic noise of the aircraft propelle... ver más
Revista: Aerospace

 
Jiwei Tang, Weicheng Xie, Pingfang Zhou, Hui Yang, Tongxin Zhang and Quanbao Wang    
Stratospheric airships have much potential in military and commercial applications. Design, analysis and optimization of stratospheric airships involves complex trade-off of different disciplines, and hence a multidisciplinary approach is essential. This... ver más
Revista: Aerospace

 
Frédéric Moëns    
A multidisciplinary design analysis and optimization process is developed at ONERA for the design of tube and wing and blended wing?body aircraft configurations. This process is composed of different disciplinary modules (geometry, propulsion, aerodynami... ver más
Revista: Aerospace

 
Jongho Jung, Kwanjung Yee and Shinkyu Jeong    
A large amount of heat flux from aerodynamic heating acts on reusable spacecraft; thus, an accurate heat flux prediction around spacecraft reentry is essential for developing a high-performance reusable spacecraft. Although the approximate convective-hea... ver más
Revista: Aerospace

 
Thomas Planès, Scott Delbecq, Valérie Pommier-Budinger and Emmanuel Bénard    
The aircraft environmental control system (ECS) is the second-highest fuel consumer system, behind the propulsion system. To reduce fuel consumption, one research direction intends to replace conventional aircraft with more electric aircraft. Thus, new e... ver más
Revista: Aerospace