Search Results - Applied Mathematical Modelling
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A mathematical model for the take-off in platform diving.
Noth, N., Köthe, T.Published in Journal of Human Kinetics (2021)“…Therefore, we developed a mathematical model using a multi-step examination plan with the following parts: (1) variables defined using nonparametric correlation analyses r s of the motion parameters, (2) statistical modelling to predict values of the parameters, (3) stochastic modelling. …”
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A coupled biomechanical-smoothed particle hydrodynamics model for predicting the loading on the body during elite platform diving
Harrison, S., Cohen, R., Cleary, P., Barris, S., Rose, G.Published in Applied Mathematical Modelling (2016)“…Applied Mathematical Modelling…”
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Modeling and optimal control of human platform diving with somersaults and twists
Koschorreck, J., Mombaur, KPublished in Optimization and Engineering (2012)“…The model-based investigation of fast dynamic motions of anthropomorphic systems is an interesting interdisciplinary field combining research efforts from applied mathematics, robotics, biomechanics, computer graphics and sports. …”
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Abstracts of the proceedings of UK-China sports engineering workshop
Published in International Journal of Sports Science and Engineering (2007)“…Ansell) Mathematical Model for Variation in Human Body Weight (Yong Jiang, Zhijun Chu, Wei Xong, Yao Sun) Mathematical Model of Variations Speed on Sprint (Yong Jiang, Zhijun Chu, Wei Xong, Yao Sun) A Study of Regulating Specialized SportQuality Index of Athletes by Utilizing Grey Systematic Analysis (Haibo Shi) Development of a Supervision System for Diving Coach (Shuming Xiao, Xiangchen Li, Jiali Yao, Qiang Li, Qi Chen, Wei He, Ying Xu, Jianhe Gao) The Performance and Application of PR-‡UModel of Multi-center Psychology Feedback Training Instrument (Si-hua Li, Jing-cheng Li and Shu-hui Liu) Development of LJ-I Typed Photoelectric Tread-jump Timer & Experimental Study on Time of Tread-jump in Long Jump (Shiming Li) Development of Research on Chinese Aquatic Sports Engineering (Weitao Zheng, Zihua Zhang, Haifeng He, Yong Ma, Jiurui Han) Development of the Computation of the Sails Aerodynamics (Yong Ma, Weitao Zheng, Haifeng He, Jiurui Han) A Study of Test Methods for External Performance of Table Tennis Rackets (Huiqun Zhao, Tianfu Tuo, Jing Sun, Hongyang Liu, Jichun Jin) Orienteering Based on System Simulation Technology (Lin Zhang and Guangcun Li) The Participial Virtual Reality Game and the Development of Chinese Family Sports (Bin Wang) On the Fusion of Traditional Chinese Culture and Modern Sports Architecture (Hailong Yang) Development and Application of Equipment for Specialized Strength Training and Testing (Haifeng He, Weitao Zheng, Yong Ma, Jiurui Han) The Establishment & Development Trend of Sports Engineering in China (Taisheng Wang) Outlook on Development Prospects for Modern Domestic Sports Entertainment Facility Industry (Yuan Gao, Zhixing Zhao) Reconstruct 3D Human Motion Using Motion Library (Xianjie Qiu, Wenzhong Wang, RongrongWang, Jintao Li and Zhaoqi Wang) Numerical Simulation on the Hydrodynamic Performance of the Flippers for the Fin Swimming (Yong Ma, Weitao Zheng, Jiurui Han) Current Situation and Developmental Countermeasures for Sports Engineering Education in China (Daifeng Yu, Yaping Zhong)…”
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Modelling the biomechanics of diving using the symbolic dynamics approach
Preston, S. B., Subic, A. J., Glover, B.Published 1996“…Some researchers, approached the problem from a predominantly biomechanical aspect, (Happee, 1994), whereas others used an engineering or applied mechanics approach, (Amirouche, 1990). Previous research in the areas of take-off such as jumping and diving, has concentrated on either experimental analysis, (Bobbert, 1988; Pandy, 1991; Anderson, 1993), or the development of mathematical models for the human musculoskeletal system, (Pandy, 1990), or computer aided simulation of human motion, (Yeadon, 1990; Angulo, 1991). …”