textabstractIn this paper, an accurate method, using a novel immersed-boundary approach, is presented for numerically solving linear, scalar convection problems. As is standard in immersed-boundary methods, moving bodies are embedded in a fixed Cartesian grid. The essence of the present method is that specific fluxes in the vicinity of a moving body are computed in an intelligent way such that they accurately accommodate the boundary conditions valid on the moving body. The first results obtained are very accurate, without requiring much computational overhead. It is anticipated that the method can be easily and successfully extended to real fluid-flow equations
In this chapter, an accurate method, using a novel immersed-boundary approach, is presented for nume...
In this chapter, an accurate method, using a novel immersed-boundary approach, is presented for nume...
An accurate method, using a novel immersed-boundary approach, is presented for numerically solving l...
In this paper, an accurate method, using a novel immersed-boundary approach, is presented for nu-mer...
In this paper, an accurate method, using a novel immersed-boundary approach, is presented for numeri...
In this paper, an accurate method, using a novel immersed-boundary approach, is presented for numeri...
In this paper, an accurate method, using a novel immersed-boundary approach, is presented for numeri...
htmlabstractAn accurate method, using a novel immersed-boundary approach, is presented for numerical...
In this paper, an accurate method, using a novel immersed-boundary approach, is presented for numeri...
In this chapter, an accurate method, using a novel immersed-boundary approach, is presented for nume...
In this chapter, an accurate method, using a novel immersed-boundary approach, is presented for nume...
In this chapter, an accurate method, using a novel immersed-boundary approach, is presented for nume...
In this chapter, an accurate method, using a novel immersed-boundary approach, is presented for nume...
An accurate method, using a novel immersed-boundary approach, is presented for numerically solving a...
In this chapter, an accurate method, using a novel immersed-boundary approach, is presented for nume...
In this chapter, an accurate method, using a novel immersed-boundary approach, is presented for nume...
In this chapter, an accurate method, using a novel immersed-boundary approach, is presented for nume...
An accurate method, using a novel immersed-boundary approach, is presented for numerically solving l...
In this paper, an accurate method, using a novel immersed-boundary approach, is presented for nu-mer...
In this paper, an accurate method, using a novel immersed-boundary approach, is presented for numeri...
In this paper, an accurate method, using a novel immersed-boundary approach, is presented for numeri...
In this paper, an accurate method, using a novel immersed-boundary approach, is presented for numeri...
htmlabstractAn accurate method, using a novel immersed-boundary approach, is presented for numerical...
In this paper, an accurate method, using a novel immersed-boundary approach, is presented for numeri...
In this chapter, an accurate method, using a novel immersed-boundary approach, is presented for nume...
In this chapter, an accurate method, using a novel immersed-boundary approach, is presented for nume...
In this chapter, an accurate method, using a novel immersed-boundary approach, is presented for nume...
In this chapter, an accurate method, using a novel immersed-boundary approach, is presented for nume...
An accurate method, using a novel immersed-boundary approach, is presented for numerically solving a...
In this chapter, an accurate method, using a novel immersed-boundary approach, is presented for nume...
In this chapter, an accurate method, using a novel immersed-boundary approach, is presented for nume...
In this chapter, an accurate method, using a novel immersed-boundary approach, is presented for nume...
An accurate method, using a novel immersed-boundary approach, is presented for numerically solving l...