Mixing under laminar flow conditions is key to a wide variety of industrial fluid systems of size extending from micrometres to metres. Profound insight into three-dimensional laminar mixing mechanisms is essential for better understanding of the behaviour of such systems and is in fact imperative for further advancement of (in particular, microscopic) mixing technology. This insight remains limited to date, however. The present study concentrates on a fundamental transport phenomenon relevant to laminar mixing: the formation and interaction of coherent structures in the web of three-dimensional paths of passive tracers due to fluid inertia. Such coherent structures geometrically determine the transport properties of the flow and thus their...
The formation of coherent structures in three-dimensional (3D) unsteady laminar flows in a cylindric...
The formation of coherent structures in three-dimensional (3D) unsteady laminar flows in a cylindric...
Laminar mixing by the inline-mixing principle is key to many industrial fluids-engineering systems o...
Mixing under laminar flow conditions is key to a wide variety of industrial fluid systems of size ex...
Mixing under laminar flow conditions is key to a wide variety of industrial fluid systems of size ex...
Mixing under laminar flow conditions is key to a wide variety of industrial fluid systems of size exte...
Mixing under laminar flow conditions is key to a wide variety of industrial fluid systems of size exte...
Mixing under laminar flow conditions is key to a wide variety of industrial systems of size extendin...
Mixing under laminar flow conditions is key to a wide variety of industrial systems of size extendin...
Mixing under laminar flow conditions is key to a wide variety of industrial systems of size extendin...
Mixing under laminar flow conditions is key to a wide variety of industrial systems of size extendin...
The formation of coherent structures in three-dimensional (3D) unsteady laminar flows in a cylindric...
The formation of coherent structures in three-dimensional (3D) unsteady laminar flows in a cylindric...
The formation of coherent structures in three-dimensional (3D) unsteady laminar flows in a cylindric...
The formation of coherent structures in three-dimensional (3D) unsteady laminar flows in a cylindric...
The formation of coherent structures in three-dimensional (3D) unsteady laminar flows in a cylindric...
The formation of coherent structures in three-dimensional (3D) unsteady laminar flows in a cylindric...
Laminar mixing by the inline-mixing principle is key to many industrial fluids-engineering systems o...
Mixing under laminar flow conditions is key to a wide variety of industrial fluid systems of size ex...
Mixing under laminar flow conditions is key to a wide variety of industrial fluid systems of size ex...
Mixing under laminar flow conditions is key to a wide variety of industrial fluid systems of size exte...
Mixing under laminar flow conditions is key to a wide variety of industrial fluid systems of size exte...
Mixing under laminar flow conditions is key to a wide variety of industrial systems of size extendin...
Mixing under laminar flow conditions is key to a wide variety of industrial systems of size extendin...
Mixing under laminar flow conditions is key to a wide variety of industrial systems of size extendin...
Mixing under laminar flow conditions is key to a wide variety of industrial systems of size extendin...
The formation of coherent structures in three-dimensional (3D) unsteady laminar flows in a cylindric...
The formation of coherent structures in three-dimensional (3D) unsteady laminar flows in a cylindric...
The formation of coherent structures in three-dimensional (3D) unsteady laminar flows in a cylindric...
The formation of coherent structures in three-dimensional (3D) unsteady laminar flows in a cylindric...
The formation of coherent structures in three-dimensional (3D) unsteady laminar flows in a cylindric...
The formation of coherent structures in three-dimensional (3D) unsteady laminar flows in a cylindric...
Laminar mixing by the inline-mixing principle is key to many industrial fluids-engineering systems o...