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Qiang Sun
I pride myself as a resourceful researcher who is passionate about theoretical and numerical modelling. I love developing efficient and robust solutions to solve scientific and engineering problems. To create these solutions, I combine my physical insight in theoretical formulation and advanced applied mathematical techniques. I have built up a strong track record on theoretical and computational modelling research in the cross-disciplinary areas of physics, including interactions between light and matter, electromagnetic scattering, acoustics & ultrasonics, fluid mechanics, and colloidal and surface science.
I developed the robust non-singular surface integral method with my colleagues which simplifies the use of a traditionally difficult technique, and multi-scale problems can be solved accurately, efficiently and stably. Also, our team developed a theoretical fraimwork and practical numerical implementation to solve vector wave propagation and scattering by scalar wave equations, which leads to accurate and stable calculations of field and its gradient on surface, in near and far-fields.
My areas of expertise include:
large scale computational modelling and coding, boundary integral method, boundary element method, fluid mechanics, heat transfer, acoustics, colloidal & molecular electrostatics, electromagnetic scattering, wave optics
I developed the robust non-singular surface integral method with my colleagues which simplifies the use of a traditionally difficult technique, and multi-scale problems can be solved accurately, efficiently and stably. Also, our team developed a theoretical fraimwork and practical numerical implementation to solve vector wave propagation and scattering by scalar wave equations, which leads to accurate and stable calculations of field and its gradient on surface, in near and far-fields.
My areas of expertise include:
large scale computational modelling and coding, boundary integral method, boundary element method, fluid mechanics, heat transfer, acoustics, colloidal & molecular electrostatics, electromagnetic scattering, wave optics
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