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Detail-preserving smoke simulation using an efficient high-order numerical scheme

查看全文 作  者:Jian [1]ZHU;Zhuo [1]YANG;Hanqiu [4]SUN;Enhua [2,3]WU;Ruichu [1]CAI;Zhifeng [1,5]HAO 高影响力作者 机构地区:[1]School of Computer Science,Guangdong University of Technology,Guangzhou 510006,China;[2]State Key Laboratory of Computer Science,Institute of Software,Chinese Academy of Sciences,Beijing 100190,China;[3]Faculty of Science and Technology,University of Macao,Macao 999078,China;[4]Institute of Space and Earth Info.Science,the Chinese University of Hong Kong,Hong Kong 999077,China;[5]School of Mathematics and Big Data,Foshan University,Foshan 528000,China高影响力机构 出  处:《Science China(Information Sciences)》索引2020年第63卷第6期,共3页高影响力期刊 基  金:supported by National Natural Science Foundation of China(Grant Nos.61502109,61672502,61402038);Natural Science Foundation of Guangdong Province(Grant Nos.2016A030310342,2018A030313802);National Key R&D Program of China(Grant No.2017YFB1002701);Science and Technology Planning Project of Guangdong Province(Grant Nos.2017B010110015,2017B010110007);Open Research Fund of Guangdong Provincial Key Laboratory of CyberPhysical System(Grant No.2016B030301008)。 摘  要:The advection step in Eulerian fluid simulation is prone to numerical dissipation[1],resulting in the loss of fluid details.Among the various attempts to develop accurate advection solvers,high-order advection schemes such as back and forth error compensation and correction(BFECC)[2]and MacCormack[3]are effective solutions. 关 键 词:CIP SIMULATION numerical scheme
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