A two-segment simulation model of long horse vaulting
The optimum pre-flight characteristics of the Hecht and handspring somersault vaults were determined using a two-segment
simulation model. The model consisted of an arm segment and a body segment connected by a frictionless pin joint, simulating the vault from the Reuther board take-off through to landing. During horse contact, shoulder torque was set to zero in the model. Five independent pre-flight variables were varied over realistic ranges and an objective function was maximized to find the optimum pre-flight for each vault. The Hecht vault required a low trajectory of the mass centre during pre-flight, with a low vertical velocity of the mass centre and a low angular velocity of the body at horse contact. In contrast, the optimum handspring somersault required a high pre-flight trajectory, with a high angular velocity of the body and a high vertical velocity at horse contact. Despite the simplicity of the model, the optimum pre-flights were similar to those used in competitive performances.
© Copyright 1999 Journal of Sports Sciences. Taylor & Francis. All rights reserved.
| Subjects: | |
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| Notations: | technical and natural sciences technical sports |
| Published in: | Journal of Sports Sciences |
| Language: | English |
| Published: |
1999
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| Online Access: | http://www.ncbi.nlm.nih.gov/entrez/query.fcgi?cmd=Retrieve&db=PubMed&list_uids=10373040&dopt=Abstract |
| Volume: | 17 |
| Issue: | 4 |
| Pages: | 313-324 |
| Document types: | article |
| Level: | intermediate |