Xinjun Li
Nanjing Normal University
6 Papers
3 Citations
Xinjun Li is an academic researcher from Nanjing Normal University. The author has contributed to research in topics: Lattice Boltzmann methods & Natural convection. The author has an hindex of 2, co-authored 6 publications.
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Papers
Numerical simulation of double-diffusive natural convection in an enclosure in the presence of magnetic field with heat-conducting partition using lattice Boltzmann method
TL;DR: In this paper, the effect of magnetic field on double-diffusive natural convection in an enclosure with heat-conducting partition is studied, where constant temperatures and concentrations are imposed along the left and right walls, and horizontal walls are insulated.
9
Lattice Boltzmann simulation for natural convection of supercritical CO2 in an inclined square cavity
TL;DR: In this paper, a model of an inclined cavity was set up to simulate the natural convection of supercritical fluid, and the influence of inclined angles (30 to approximately 90°) and pressures (8 to approximately 12 MPa) were analyzed.
6
Investigation of the characteristics of turbulent flow and heat transfer induced by a vibrating piezoelectric fan on asymmetrical concave surfaces
Xinjun Li,Weiwei Chen,Shihua Lu +2 more
- 21 Jun 2021
TL;DR: In this paper, the turbulent flow and thermal performances for an asymmetrical concave surface integrated with a vibrating piezoelectric fan were investigated numerically. But the performance of the fan was not evaluated.
3
Characterization of the thermal performance of multi piezoelectric fans for cooling a semi-cylindrical concave surface
Xinjun Li,Weiwei Chen,Shihua Lu +2 more
TL;DR: In this paper, a theoretical and numerical study of flow and heat transfer performances induced by single and multi-vibrating piezoelectric fans for cooling heated semi-cylindrical concave surface is conducted.
Numerical analysis on supercritical natural convection by lattice Boltzmann method
TL;DR: One of the main factors affecting the heat transfer efficiency of solar collector is that the ordinary fluid in it is in the state of natural convection as mentioned in this paper, and supercritical fluid is expected to improve the efficiency.