LAPSE:2023.34811
Published Article
LAPSE:2023.34811
Integrating Prospective Scenarios in Life Cycle Engineering: Case Study of Lightweight Structures
Moritz Ostermann, Julian Grenz, Marcel Triebus, Felipe Cerdas, Thorsten Marten, Thomas Tröster, Christoph Herrmann
April 28, 2023
Lightweight design is a common approach to reduce energy demand in the use stage of vehicles. The production of lightweight materials is usually associated with an increase in energy demand, so the environmental impacts of lightweight structures need to be assessed holistically using a life cycle assessment. To estimate the life cycle environmental impacts of a product in its developmental stage, for example, by life cycle engineering, future changes in relevant influencing factors must be considered. Prospective life cycle assessment provides methods for integrating future scenarios into life cycle assessment studies. However, approaches for integrating prospective life cycle assessment into product development are limited. The objective of this work is to provide the methodological foundation for integrating future scenarios of relevant influencing factors in the development of lightweight structures. The applicability of the novel methodology is demonstrated by a case study of a structural component in a steel, aluminium, and hybrid design. The results show that appropriate decarbonisation measures can reduce the life cycle greenhouse gas emissions by up to 95 percent until 2050. We also found that shifts in the environmentally optimal design are possible in future scenarios. Therefore, the methodology and data provided contribute to improved decision-making in product development.
Keywords
energy system, future-oriented LCA, life cycle assessment, life cycle engineering, lightweight design, material production, prospective LCA, sustainable production
Subject
Suggested Citation
Ostermann M, Grenz J, Triebus M, Cerdas F, Marten T, Tröster T, Herrmann C. Integrating Prospective Scenarios in Life Cycle Engineering: Case Study of Lightweight Structures. (2023). LAPSE:2023.34811
Author Affiliations
Ostermann M: Chair of Automotive Lightweight Design (LiA), Institute for Lightweight Design with Hybrid Systems (ILH), Paderborn University, Warburger Str. 100, 33098 Paderborn, Germany [ORCID]
Grenz J: BENTELER Business Services GmbH, Residenzstraße 1, 33104 Paderborn, Germany [ORCID]
Triebus M: Chair of Automotive Lightweight Design (LiA), Institute for Lightweight Design with Hybrid Systems (ILH), Paderborn University, Warburger Str. 100, 33098 Paderborn, Germany
Cerdas F: Chair of Sustainable Manufacturing & Life Cycle Engineering, Institute of Machine Tools and Production Technology (IWF), Technische Universität Braunschweig, Langer Kamp 19b, 38106 Braunschweig, Germany
Marten T: Chair of Automotive Lightweight Design (LiA), Institute for Lightweight Design with Hybrid Systems (ILH), Paderborn University, Warburger Str. 100, 33098 Paderborn, Germany
Tröster T: Chair of Automotive Lightweight Design (LiA), Institute for Lightweight Design with Hybrid Systems (ILH), Paderborn University, Warburger Str. 100, 33098 Paderborn, Germany
Herrmann C: Chair of Sustainable Manufacturing & Life Cycle Engineering, Institute of Machine Tools and Production Technology (IWF), Technische Universität Braunschweig, Langer Kamp 19b, 38106 Braunschweig, Germany
Journal Name
Energies
Volume
16
Issue
8
First Page
3371
Year
2023
Publication Date
2023-04-11
Published Version
ISSN
1996-1073
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Original Submission
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PII: en16083371, Publication Type: Journal Article
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LAPSE:2023.34811
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doi:10.3390/en16083371
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Apr 28, 2023
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CC BY 4.0
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