Zhenhua Pan
Jiangsu University
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Publication
Featured researches published by Zhenhua Pan.
Physics of Fluids | 2017
Yuejin Zhu; Lei Yu; Jianfeng Pan; Zhenhua Pan; Penggang Zhang
The computational results of two different cases on the evolution of the shock-SF6 heavy bubble interaction are presented. The shock focusing processes and jet formation mechanisms are analyzed by using the high resolution of computation schemes, and the influence of reflected shock waves is also investigated. It is concluded that there are two steps in the shock focusing process behind the incident shock wave, and the density and pressure values increase distinctly when the shock focusing process is completed. The local high pressure and vorticities in the vicinity of the downstream pole can propel the formation of the jet behind the incident shock wave. In addition, the gas is with the rightward velocity before the reflected shock wave impinges on the bubble; therefore, the evolutions of the waves and the bubble are more complicated when the reflected shock wave impinges on the SF6 bubble. Furthermore, the different end wall distances would affect the deformation degree of the bubble before the interact...
Advances in Materials Science and Engineering | 2016
Yuejin Zhu; Lei Yu; Gang Dong; Jianfeng Pan; Zhenhua Pan
The flow topologies of compressible large-scale distorted flames are studied by means of the analysis of the invariants of the velocity gradient tensor (VGT). The results indicate that compressibility plays a minor role in the distorted flame zone. And the joint probability density function (p.d.f.) of the diagram appears as a teardrop shape, which is a universal feature of turbulence. Therefore, the distorted flame exhibits the characteristic of large-scale turbulence combustion, especially behind the reflected shock wave, while the p.d.f. of the diagram implies that the dissipation is enhanced in the compression and expansion regions, where it is higher than that when . Furthermore, we identify that the flame evolution is dominated by rotation by means of a quantitative statistical study, and the SFS topology is the predominant flow pattern. Not surprisingly, negative dilatation could suppress the unstable topologies, whereas positive dilatation could suppress the stable topologies.
Energy Conversion and Management | 2015
Baowei Fan; Jianfeng Pan; Aikun Tang; Zhenhua Pan; Yuejin Zhu; H. Xue
Applied Thermal Engineering | 2015
Baowei Fan; Jianfeng Pan; Zhenhua Pan; Aikun Tang; Yuejin Zhu; H. Xue
Energy | 2017
Baowei Fan; Jianfeng Pan; Wenming Yang; Zhenhua Pan; Stephen Bani; Wei Chen; Ren He
Applied Thermal Engineering | 2016
Qingbo Lu; Jianfeng Pan; Wenming Yang; Zhenhua Pan; Aikun Tang; Yi Zhang
Applied Thermal Engineering | 2017
Jianzhong Li; Penggang Zhang; Li Yuan; Zhenhua Pan; Yuejin Zhu
Energy Conversion and Management | 2018
Baowei Fan; Jianfeng Pan; Yangxian Liu; Yuejin Zhu; Zhenhua Pan; Wei Chen; Peter Otchere
Experimental Thermal and Fluid Science | 2017
Zhenhua Pan; Kaipeng Chen; Jianfeng Pan; Penggang Zhang; Yuejin Zhu; Jun Qi
International Journal of Hydrogen Energy | 2017
Yi Zhang; Jianfeng Pan; Aikun Tang; Yangxian Liu; Zhenhua Pan; Qingbo Lu; Peter Otchere