Zobrazeno 1 - 7
of 7
pro vyhledávání: '"Xin Juan Zhao"'
Publikováno v:
Composites Science and Technology. 118:117-126
This paper describes a new numerical approach for modeling the microscopic and macroscopic thermal behaviors of cement composites filled with multiple natural fibers coated with thin homogeneous interphase layers. The coated fibers are assumed to hav
Publikováno v:
Advanced Engineering Forum. :1199-1202
In Grid, resources are distributed, autonomous, heterogeneous and dynamical, and resource management and scheduling algorithms based on computational economy are very fit for solving problems of resource management for Grid. This paper introduces vir
Autor:
Xin Juan Zhao, Ji Yi Zhao
Publikováno v:
Advanced Materials Research. :1514-1517
The boundary-type hybrid finite element formulation is established to solve nonlinear heat conduction in solids with temperature-dependent material definition. The Kirchhoff transformation is first used to convert the nonlinear heat transfer system i
Autor:
Hui Wang, Xin Juan Zhao
Publikováno v:
Advanced Materials Research. :1613-1616
Anisotropic materials have been widely applied in practical engineering problems of interest. In the paper, the anisotropic heat transfer behaviors are analyzed using the proposed hybrid finite element model with Green’s function kernel. In the est
Autor:
Xin-juan Zhao, Ji-yi Zhao
Publikováno v:
Procedia Engineering. 15:1476-1480
Traffic information is massive and heterogeneous, so that traffic decision information is ineffective to be used and shared. In addition, the supply of traffic decision support is limited. Intelligent traffic system (ITS) is based on Grid used as the
Autor:
Hui Wang, Xin Juan Zhao
Publikováno v:
Advanced Materials Research. :39-42
The temperature distribution in nanoscale cylindrical representative volume element (RVE) with centered carbon nanofiber (CNF) was modeled by the developed hybrid finite element approach, which used the axisymmetric Green’s function to approximate
Publikováno v:
American Journal of Materials Science and Technology.
In this paper, thermal behavior in cement composites filled with hollow glass microspheres was modeled by finite element method based on heat conduction theory. According to experimental observation of the microsphere distribution in the cement matri