This work introduces a novel streamline seeding technique based on dual streamlines that are orthogonal to the vector field, instead of tangential. The greedy algorithm presented here produces a net of orthogonal streamlines that is iteratively refined resulting in good domain coverage and a high degree of continuity and uniformity. The algorithm is easy to implement and efficient, and it naturally extends to curved surfaces
We present three enchancements to accelerate the extraction of separatrices of three-dimensional vec...
Streamlines are commonly used in scientific visualization. They are the most used geometric items in...
Effective 3D streamline placement and visualization play an essential role in many science and engin...
Streamline seeding rakes are widely used in vector field visualization. We present new approaches fo...
This paper presents a novel seeding strategy for streamline visualization of 2D vector field. The ma...
This paper presents a novel seeding strategy for streamline visualization of 2D vector field. The ma...
The visualisation of 3D flow poses many challenges. Difficulties can stem from attempting to capture...
The Streamline based method is one of the most important vector field visualization methods. The phy...
Flow fields provide a mathematical model of fluid flows and arise in various fields of science and e...
Abstract—Stream surfaces and streamlines are two popular methods for visualizing three-dimensional f...
Most streamline generation algorithms either provide a particular density of streamlines across the ...
Understanding vector fields resulting from large scientific simulations is an important and often di...
Inspired by the abstracting, focusing and explanatory qualities of diagram drawing in art, in this p...
Streamline-based quad meshing algorithms use smooth cross fields to partition surfaces into quadrila...
Understanding vector fields resulting from large scientific simulations is an important and often di...
We present three enchancements to accelerate the extraction of separatrices of three-dimensional vec...
Streamlines are commonly used in scientific visualization. They are the most used geometric items in...
Effective 3D streamline placement and visualization play an essential role in many science and engin...
Streamline seeding rakes are widely used in vector field visualization. We present new approaches fo...
This paper presents a novel seeding strategy for streamline visualization of 2D vector field. The ma...
This paper presents a novel seeding strategy for streamline visualization of 2D vector field. The ma...
The visualisation of 3D flow poses many challenges. Difficulties can stem from attempting to capture...
The Streamline based method is one of the most important vector field visualization methods. The phy...
Flow fields provide a mathematical model of fluid flows and arise in various fields of science and e...
Abstract—Stream surfaces and streamlines are two popular methods for visualizing three-dimensional f...
Most streamline generation algorithms either provide a particular density of streamlines across the ...
Understanding vector fields resulting from large scientific simulations is an important and often di...
Inspired by the abstracting, focusing and explanatory qualities of diagram drawing in art, in this p...
Streamline-based quad meshing algorithms use smooth cross fields to partition surfaces into quadrila...
Understanding vector fields resulting from large scientific simulations is an important and often di...
We present three enchancements to accelerate the extraction of separatrices of three-dimensional vec...
Streamlines are commonly used in scientific visualization. They are the most used geometric items in...
Effective 3D streamline placement and visualization play an essential role in many science and engin...