This work presents a 2-layer uniform facet elastic object for real-time simulation based on physics modeling. It describes the elastic object procedural modeling algorithm with particle system from the simplest 1D object, to more complex 2D and 3D objects. The 2-layered elastic object consists of inner and outer mass spring surfaces and compressible internal pressure. The density of the inner layer can be different from the outer layer; the motion of the inner layer can be opposite to the motion of the outer layer. These special features, which cannot be achieved by a single layered object, result in improved imitation of a soft body, such as tissue's liquidity non-uniform deformation. The construction of the 2-layered elastic object is closer to the real tissue's physical structure. The inertial behavior of the elastic object is well illustrated in environments with gravity and collisions with the environment. The collision detection is defined by the collision penalty method and the motion of the object is guided by the Ordinary Differential Equation computation. Users can interact with the modeled objects, deform them, and observe the response to their action in real-time.
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This work presents a 2-layer uniform facet elastic object for real-time simulation based on physics modeling. It describes the elastic object procedural modeling algorithm with particle system from the simplest 1D object, to more complex 2D and 3D objects. The 2-layered elastic object consists of inner and outer mass spring surfaces and compressible internal pressure. The density of the inner layer can be different from the outer layer; the motion of the inner layer can be opposite to the motion of the outer layer. These special features, which cannot be achieved by a single layered object, result in improved imitation of a soft body, such as tissue's liquidity non-uniform deformation. The construction of the 2-layered elastic object is closer to the real tissue's physical structure. The inertial behavior of the elastic object is well illustrated in environments with gravity and collisions with the environment. The collision detection is defined by the collision penalty method and the motion of the object is guided by the Ordinary Differential Equation computation. Users can interact with the modeled objects, deform them, and observe the response to their action in real-time.
Ms. Song's PhD research covers interactive documentary, 3D graphics, physical based sim. and haptic responsive environments. She got her Bachelor's in Perf. Arts and Direction, Shandong Uni. of Fine Arts, China, followed by the Bachelor's and Master's in Comp. Science, Concordia Uni., Canada, focusing on interactive 2-layer softbody simulation w/OpenGL.
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Taschenbuch. Zustand: Neu. This item is printed on demand - it takes 3-4 days longer - Neuware -This work presents a 2-layer uniform facet elastic object for real-time simulation based on physics modeling. It describes the elastic object procedural modeling algorithm with particle system from the simplest 1D object, to more complex 2D and 3D objects. The 2-layered elastic object consists of inner and outer mass spring surfaces and compressible internal pressure. The density of the inner layer can be different from the outer layer; the motion of the inner layer can be opposite to the motion of the outer layer. These special features, which cannot be achieved by a single layered object, result in improved imitation of a soft body, such as tissue's liquidity non-uniform deformation. The construction of the 2-layered elastic object is closer to the real tissue's physical structure. The inertial behavior of the elastic object is well illustrated in environments with gravity and collisions with the environment. The collision detection is defined by the collision penalty method and the motion of the object is guided by the Ordinary Differential Equation computation. Users can interact with the modeled objects, deform them, and observe the response to their action in real-time. 108 pp. Englisch. Bestandsnummer des Verkäufers 9783838341378
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Zustand: New. Dieser Artikel ist ein Print on Demand Artikel und wird nach Ihrer Bestellung fuer Sie gedruckt. This work presents a 2-layer uniform facet elastic object for real-time simulation based on physics modeling. It describes the elastic object procedural modeling algorithm with particle system from the simplest 1D object, to more complex 2D and 3D objects. . Bestandsnummer des Verkäufers 5414647
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Taschenbuch. Zustand: Neu. Neuware -This work presents a 2-layer uniform facet elastic object for real-time simulation based on physics modeling. It describes the elastic object procedural modeling algorithm with particle system from the simplest 1D object, to more complex 2D and 3D objects. The 2-layered elastic object consists of inner and outer mass spring surfaces and compressible internal pressure. The density of the inner layer can be different from the outer layer; the motion of the inner layer can be opposite to the motion of the outer layer. These special features, which cannot be achieved by a single layered object, result in improved imitation of a soft body, such as tissue''s liquidity non-uniform deformation. The construction of the 2-layered elastic object is closer to the real tissue''s physical structure. The inertial behavior of the elastic object is well illustrated in environments with gravity and collisions with the environment. The collision detection is defined by the collision penalty method and the motion of the object is guided by the Ordinary Differential Equation computation. Users can interact with the modeled objects, deform them, and observe the response to their action in real-time.Books on Demand GmbH, Überseering 33, 22297 Hamburg 108 pp. Englisch. Bestandsnummer des Verkäufers 9783838341378
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Taschenbuch. Zustand: Neu. nach der Bestellung gedruckt Neuware - Printed after ordering - This work presents a 2-layer uniform facet elastic object for real-time simulation based on physics modeling. It describes the elastic object procedural modeling algorithm with particle system from the simplest 1D object, to more complex 2D and 3D objects. The 2-layered elastic object consists of inner and outer mass spring surfaces and compressible internal pressure. The density of the inner layer can be different from the outer layer; the motion of the inner layer can be opposite to the motion of the outer layer. These special features, which cannot be achieved by a single layered object, result in improved imitation of a soft body, such as tissue's liquidity non-uniform deformation. The construction of the 2-layered elastic object is closer to the real tissue's physical structure. The inertial behavior of the elastic object is well illustrated in environments with gravity and collisions with the environment. The collision detection is defined by the collision penalty method and the motion of the object is guided by the Ordinary Differential Equation computation. Users can interact with the modeled objects, deform them, and observe the response to their action in real-time. Bestandsnummer des Verkäufers 9783838341378
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