We present an improved three-dimensional stochastic model concerning the fiber lay-down in the production process of nonwoven materials. The model describes the position of the deposited fibers on a conveyor belt, which is determined by a system of stochastic differential equations. Here we remove a drawback of a previous 3D model, that is the non-smoothness of the fiber paths. Besides the derivation of the smooth 3D model we show its connection to the non-smooth model in a white noise limit
An elementary algorithm is used to simulate the industrial production of a fiber of a 3-dimensional ...
Non–woven materials consist of many thousands of fibres laid down on a conveyor belt under the infl...
A stochastic multi-layer model is developed describing the microstructure of materials which are bui...
In this paper we develop an improved three dimensional stochastic model for the lay-down of fibers o...
In this paper a three dimensional stochastic model for the lay-down of fibers on a moving conveyor b...
In this work we present the industrial application of fiber lay-down models that enable an efficient...
In this paper we improve and investigate a stochastic model and its associated Fokker-Planck equatio...
In this work we present fiber lay-down models that enable an efficient simulation of nonwoven struct...
In this paper we present and investigate a stochastic model and its associated Fokker-Planck equatio...
A stochastic model for the lay-down of fibers on a conveyor belt in the production process of nonwov...
In this paper, a stochastic model [5] for the turbulent fiber laydown in the industrial production o...
The mechanical and functional performance of nonwoven fabric critically depends on the fibre archite...
In this paper we investigate the parameter estimation of the fiber lay–down process in the productio...
We analyze the large time behavior of a stochastic model for the lay down of fibers on a moving con...
A novel, realistic 3D model is developed describing the microstructure of non-woven GDL in PEMFC whi...
An elementary algorithm is used to simulate the industrial production of a fiber of a 3-dimensional ...
Non–woven materials consist of many thousands of fibres laid down on a conveyor belt under the infl...
A stochastic multi-layer model is developed describing the microstructure of materials which are bui...
In this paper we develop an improved three dimensional stochastic model for the lay-down of fibers o...
In this paper a three dimensional stochastic model for the lay-down of fibers on a moving conveyor b...
In this work we present the industrial application of fiber lay-down models that enable an efficient...
In this paper we improve and investigate a stochastic model and its associated Fokker-Planck equatio...
In this work we present fiber lay-down models that enable an efficient simulation of nonwoven struct...
In this paper we present and investigate a stochastic model and its associated Fokker-Planck equatio...
A stochastic model for the lay-down of fibers on a conveyor belt in the production process of nonwov...
In this paper, a stochastic model [5] for the turbulent fiber laydown in the industrial production o...
The mechanical and functional performance of nonwoven fabric critically depends on the fibre archite...
In this paper we investigate the parameter estimation of the fiber lay–down process in the productio...
We analyze the large time behavior of a stochastic model for the lay down of fibers on a moving con...
A novel, realistic 3D model is developed describing the microstructure of non-woven GDL in PEMFC whi...
An elementary algorithm is used to simulate the industrial production of a fiber of a 3-dimensional ...
Non–woven materials consist of many thousands of fibres laid down on a conveyor belt under the infl...
A stochastic multi-layer model is developed describing the microstructure of materials which are bui...