Title :
Numerical Calculation of Flow Field by Application of Superposition Theory of Partial Differential Equation
Author :
Wang, Hong-gang ; Zhang, Jian-rang ; Wu, Feng-liang ; Lin, Hai-fei ; Chang, Xin-tan
Author_Institution :
Sch. of Energy, Xi´´an Univ. of Sci. & Technol., Xi´´an, China
Abstract :
Based on the superposition theory of partial differential equation (PDE), a new method is introduced here to solve complicated problems of flow field. In this method, a problem of flow field with complex boundary conditions and source items is divided into several problems of flow fields with simple boundary conditions and source items, and then the solution of a complicated problem of flow field can be determined by the solutionspsila superposition of several simple problems of flow fields. For an instance, by using a software in computational fluid dynamics (CFD), a linear seeping problem in porous media is solved by numerical simulation as well as solutionspsila superposition of two simpler problems deriving from the proto-problem, and thus the application feasibility of superposition theory in numerical simulation of flow field is verified. More importantly, the application of the new method in CFD can decrease the number of necessary numerical examination greatly.
Keywords :
computational fluid dynamics; flow through porous media; numerical analysis; partial differential equations; computational fluid dynamics; flow field; linear seeping problem; numerical simulation; partial differential equation; porous media; proto-problem; superposition theory; Application software; Boundary conditions; Computational fluid dynamics; Computational modeling; Computer simulation; Differential equations; Numerical simulation; Partial differential equations; Power engineering and energy; Quantum computing; boundary condition; computational fluid dynamics; linear seepage; superposition theory;
Conference_Titel :
Engineering Computation, 2009. ICEC '09. International Conference on
Conference_Location :
Hong Kong
Print_ISBN :
978-0-7695-3655-2
DOI :
10.1109/ICEC.2009.27