1Zhang, Peixin Singular solution of a quasilinear convection diffusion degenerate parabolic equation with absorption. J. Partial Differential Equations 20 (2007), no. 4, 349–364.
2Zhang, Peixin; Deng, Xuemei; Zhao, Junning Global classical solutions to the 3-D isentropic compressible Navier-Stokes equations with general initial energy. Acta Math. Sci. Ser. B Engl. Ed. 32 (2012), no. 6, 2141–2160. (SCI) 3Deng, XueMei; Zhang, PeiXin; Zhao, JunNing Global classical solution to the three-dimensional isentropic compressible Navier-Stokes equations with general initial data. Sci. China Math. 55 (2012), no. 12, 2457–2468. (SCI)
4. Zhang, Peixin Blow-up criterion for 3D compressible viscous magneto-micropolar fluids with initial vacuum. Bound. Value Probl. 2013, 2013:160, 16 pp. (SCI)
5. Zhang, Peixin; Zhao, Junning The existence of local solutions for the compressible Navier-Stokes equations with the density-dependent viscosities. Commun. Math. Sci. 12 (2014), no. 7, 1277–1302. (SCI)
6 . Zhang, PeiXin; Zhao, JunNing Existence and uniqueness of global classical solutions to 3D isentropic compressible Navier-Stokes equations with general initial data. Sci. China Math. 57 (2014), no. 7, 1463–1478. (SCI)
7. Zhang, Peixin; Deng, Xuemei; Zhao, Junning Global well-posedness of classical solutions with large initial data to the two-dimensional isentropic compressible Navier-Stokes equations. J. Partial Differ. Equ. 27 (2014), no. 2. 143–157.
8. Zhang, Peixin; Zhao, Chong; Zhang, Jianwen Global regularity of the three-dimensional equations for nonhomogeneous incompressible fluids. Nonlinear Anal. 110 (2014), 61–76. (SCI)
9. Zhang,peixinGlobal classical solution to the 3D isentropic compressible Navier–Stokes equations with general initial data and a density-dependent viscosity coefficient. Math. Meth. Appl. Sci. 38(2014), 1158–1177. (SCI)
10. Zhang, peixinYu, Haibo: Global regularity to the 3D incompressible MHD equations. J. Math. A. A. 432(2015), 613–631. (SCI)
11. Zhang, peixin, Zhang,Jianwen, Zhao, Junning: On the global existence of classical solutions for compressible Navier-Stokes equations with vacuum. Discrete Contin. Dyn. Syst. 36 (2016), no. 2, 1085–1103. . (SCI)
12. Liu, Qingqing; Zhang, Peixin Optimal time decay of the compressible micropolar fluids. J. Differential Equations 260 (2016), no. 10, 7634–7661. (SCI)
13. Yu, Haibo; Zhang, Peixin Global strong solutions to the incompressible Navier-Stokes equations with density-dependent viscosity. J. Math. Anal. Appl. 444 (2016), no. 1, 690–699. (SCI)
14. Cui, Haibo; Gao, Zhensheng; Yin, Haiyan; Zhang, Peixing Stationary waves to the two-fluid non-isentropic Navier-Stokes-Poisson system in a half line: existence, stability and convergence rate. Discrete Contin. Dyn. Syst.36 (2016), no. 9, 4839–4870. (SCI)
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