Graphical Simulation of Deformable Models

Nonfiction, Computers, Advanced Computing, Engineering, Computer Vision, General Computing
Cover of the book Graphical Simulation of Deformable Models by Jianping Cai, Feng Lin, Hock Soon Seah, Springer International Publishing
View on Amazon View on AbeBooks View on Kobo View on B.Depository View on eBay View on Walmart
Author: Jianping Cai, Feng Lin, Hock Soon Seah ISBN: 9783319510316
Publisher: Springer International Publishing Publication: December 20, 2016
Imprint: Springer Language: English
Author: Jianping Cai, Feng Lin, Hock Soon Seah
ISBN: 9783319510316
Publisher: Springer International Publishing
Publication: December 20, 2016
Imprint: Springer
Language: English

This book covers dynamic simulation of deformable objects, which is one of the most challenging tasks in computer graphics and visualization. It focuses on the simulation of deformable models with anisotropic materials, one of the less common approaches in the existing research. Both physically-based and geometrically-based approaches are examined. 

The authors start with transversely isotropic materials for the simulation of deformable objects with fibrous structures. Next, they introduce a fiber-field incorporated corotational finite element model (CLFEM) that works directly with a constitutive model of transversely isotropic material. A smooth fiber-field is used to establish the local frames for each element. 

To introduce deformation simulation for orthotropic materials, an orthotropic deformation controlling frame-field is conceptualized and a frame construction tool is developed for users to define the desired material properties. The orthotropic frame-field is coupled with the CLFEM model to complete an orthotropic deformable model.

Finally, the authors present an integrated real-time system for animation of skeletal characters with anisotropic tissues. To solve the problems of volume distortion and high computational costs, a strain-based PBD framework for skeletal animation is explained; natural secondary motion of soft tissues is another benefit. 

The book is written for those researchers who would like to develop their own algorithms. The key mathematical and computational concepts are presented together with illustrations and working examples. It can also be used as a reference book for graduate students and senior undergraduates in the areas of computer graphics, computer animation, and virtual reality. Academics, researchers, and professionals will find this to be an exceptional resource.

View on Amazon View on AbeBooks View on Kobo View on B.Depository View on eBay View on Walmart

This book covers dynamic simulation of deformable objects, which is one of the most challenging tasks in computer graphics and visualization. It focuses on the simulation of deformable models with anisotropic materials, one of the less common approaches in the existing research. Both physically-based and geometrically-based approaches are examined. 

The authors start with transversely isotropic materials for the simulation of deformable objects with fibrous structures. Next, they introduce a fiber-field incorporated corotational finite element model (CLFEM) that works directly with a constitutive model of transversely isotropic material. A smooth fiber-field is used to establish the local frames for each element. 

To introduce deformation simulation for orthotropic materials, an orthotropic deformation controlling frame-field is conceptualized and a frame construction tool is developed for users to define the desired material properties. The orthotropic frame-field is coupled with the CLFEM model to complete an orthotropic deformable model.

Finally, the authors present an integrated real-time system for animation of skeletal characters with anisotropic tissues. To solve the problems of volume distortion and high computational costs, a strain-based PBD framework for skeletal animation is explained; natural secondary motion of soft tissues is another benefit. 

The book is written for those researchers who would like to develop their own algorithms. The key mathematical and computational concepts are presented together with illustrations and working examples. It can also be used as a reference book for graduate students and senior undergraduates in the areas of computer graphics, computer animation, and virtual reality. Academics, researchers, and professionals will find this to be an exceptional resource.

More books from Springer International Publishing

Cover of the book Kasimir Twardowski by Jianping Cai, Feng Lin, Hock Soon Seah
Cover of the book Embodied Social Cognition by Jianping Cai, Feng Lin, Hock Soon Seah
Cover of the book Drug and Gene Delivery to the Central Nervous System for Neuroprotection by Jianping Cai, Feng Lin, Hock Soon Seah
Cover of the book Biochemistry of Beer Fermentation by Jianping Cai, Feng Lin, Hock Soon Seah
Cover of the book E-Learning and Games by Jianping Cai, Feng Lin, Hock Soon Seah
Cover of the book The Immune System in Space: Are we prepared? by Jianping Cai, Feng Lin, Hock Soon Seah
Cover of the book Tools for High Performance Computing 2016 by Jianping Cai, Feng Lin, Hock Soon Seah
Cover of the book Information and Communication Technologies in Tourism 2016 by Jianping Cai, Feng Lin, Hock Soon Seah
Cover of the book Politics of Benjamin’s Kafka: Philosophy as Renegade by Jianping Cai, Feng Lin, Hock Soon Seah
Cover of the book Diagnostic Clusters in Shoulder Conditions by Jianping Cai, Feng Lin, Hock Soon Seah
Cover of the book Pharmacologic Therapy of Ocular Disease by Jianping Cai, Feng Lin, Hock Soon Seah
Cover of the book Reimagining State and Human Security Beyond Borders by Jianping Cai, Feng Lin, Hock Soon Seah
Cover of the book RNA Processing by Jianping Cai, Feng Lin, Hock Soon Seah
Cover of the book Uranium in Plants and the Environment by Jianping Cai, Feng Lin, Hock Soon Seah
Cover of the book Information Security Applications by Jianping Cai, Feng Lin, Hock Soon Seah
We use our own "cookies" and third party cookies to improve services and to see statistical information. By using this website, you agree to our Privacy Policy