Abstract. Dense particulate flow simulations using integral equation methods demand accurate evaluation of Stokes layer potentials on arbitrarily close interfaces. In this paper, we generalize techniques for close evaluation of Laplace double-layer potentials in J. Helsing and R. Ojala, J. Comput. Phys. 227 (2008) 2899–2921. We create a “globally compensated ” trapezoid rule quadrature for the Laplace single-layer potential on the interior and exterior of smooth curves. This exploits a complex representation, a product quadrature (in the style of Kress) for the sawtooth function, careful attention to branch cuts, and second-kind barycentric-type formulae for Cauchy integrals and their derivatives. Upon this we build accurate single- and dou...
International audienceWe present an effective harmonic density interpolation method for the numerica...
International audienceWe present an effective harmonic density interpolation method for the numerica...
We present a numerical method for computing the Stokeslet and stresslet integrals in Stokes flow, mo...
Abstract. Dense particulate flow simulations using integral equation methods demand accurate evaluat...
Dense particulate flow simulations using integral equation methods demand accurate evaluation of Sto...
Dense particulate flow simulations using integral equation methods demand accurate evaluation of Sto...
Accurate evaluation of layer potentials near boundaries and interfaces are needed in many applicatio...
Dense particulate flow simulations using integral equation methods demand accurate evaluation of Sto...
Dense particulate flow simulations using integral equation methods demand accurate evaluation of Sto...
We present a simple and effective method for computing double-and single-layer potentials for Laplac...
A method is proposed for evaluation of single and double layer potentials of the Laplace and Helmhol...
International audienceWe present a simple and effective method for evaluating double- and single-lay...
International audienceWe present a simple and effective method for evaluating double-and single-laye...
International audienceWe present a simple and effective method for evaluating double- and single-lay...
International audienceAccurate evaluation of layer potentials near boundaries is needed in many appl...
International audienceWe present an effective harmonic density interpolation method for the numerica...
International audienceWe present an effective harmonic density interpolation method for the numerica...
We present a numerical method for computing the Stokeslet and stresslet integrals in Stokes flow, mo...
Abstract. Dense particulate flow simulations using integral equation methods demand accurate evaluat...
Dense particulate flow simulations using integral equation methods demand accurate evaluation of Sto...
Dense particulate flow simulations using integral equation methods demand accurate evaluation of Sto...
Accurate evaluation of layer potentials near boundaries and interfaces are needed in many applicatio...
Dense particulate flow simulations using integral equation methods demand accurate evaluation of Sto...
Dense particulate flow simulations using integral equation methods demand accurate evaluation of Sto...
We present a simple and effective method for computing double-and single-layer potentials for Laplac...
A method is proposed for evaluation of single and double layer potentials of the Laplace and Helmhol...
International audienceWe present a simple and effective method for evaluating double- and single-lay...
International audienceWe present a simple and effective method for evaluating double-and single-laye...
International audienceWe present a simple and effective method for evaluating double- and single-lay...
International audienceAccurate evaluation of layer potentials near boundaries is needed in many appl...
International audienceWe present an effective harmonic density interpolation method for the numerica...
International audienceWe present an effective harmonic density interpolation method for the numerica...
We present a numerical method for computing the Stokeslet and stresslet integrals in Stokes flow, mo...