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His main interest is the development and application of numerical methods for engineering applications in solid mechanics, fluid dynamics, and coupled problems. Clemens’ current research focuses on scan-based immersed isogeometric analysis, an analysis paradigm that enables the simulation of complex geometries based on scan data. Compared to traditional finite element methods, using this methodology, meshing and geometry clean-up operations can be eliminated from the analysis work flow, resulting in a substantial time reduction of the design-through-analysis cycle. Clemens' research also considers uncertainty quantification, focusing on the tailoring of numerical methods to enable the application of Bayesian inference to complex engineering problems.
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Computer Methods in Applied Mechanics and Engineering (2024): 116958
Journal of the Mechanics and Physics of Solids (2023): 105082-105082
PSYCHONOMIC BULLETIN & REVIEW (2023)
COMPUTER METHODS IN APPLIED MECHANICS AND ENGINEERING (2023): 116483-116483
JOURNAL OF NON-NEWTONIAN FLUID MECHANICS (2023): 105154-105154
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