An adaptive phase-field model based on bilinear elements for tensile-compressive-shear fracture
An efficient adaptive phase-field method based on bilinear elements for tensile-compressive-
shear fracture is developed. On the one hand, refined meshes are needed near the crack …
shear fracture is developed. On the one hand, refined meshes are needed near the crack …
Seismic performance levels of a large underground subway station in different soil foundations
H Zhuang, J Ren, Y Miao, L Jing, E Yao… - Journal of Earthquake …, 2021 - Taylor & Francis
With the soil constitutive model developed for the dynamic large deformation of soft soil, a
finite element model was constructed to simulate the soil–underground structure static and …
finite element model was constructed to simulate the soil–underground structure static and …
Investigations of seismic response to an irregular-section subway station structure located in a soft clay site
B Tang, X Li, S Chen, H Zhuang, HP Chen - Engineering Structures, 2020 - Elsevier
In this study, shaking table tests were performed to investigate the dynamic interaction of a
silty-clay soil with an irregular-section subway station. During the tests, a shape acceleration …
silty-clay soil with an irregular-section subway station. During the tests, a shape acceleration …
An adaptive orthogonal improved interpolating moving least-square method and a new boundary element-free method
The improved interpolating moving least-square (IIMLS) method has been widely used in
data fitting and meshfree methods, and the obtained shape functions have the property of …
data fitting and meshfree methods, and the obtained shape functions have the property of …
A fast multipole hybrid boundary node method for composite materials
This article presents a multi-domain fast multipole hybrid boundary node method for
composite materials in 3D elasticity. The hybrid boundary node method (hybrid BNM) is a …
composite materials in 3D elasticity. The hybrid boundary node method (hybrid BNM) is a …
A new formulation for thermal analysis of composites by hybrid boundary node method
In this paper, a new formulation based on the hybrid boundary node method (Hybrid BNM) is
proposed for thermal analysis of composites. The Hybrid BNM is a boundary type meshless …
proposed for thermal analysis of composites. The Hybrid BNM is a boundary type meshless …
[HTML][HTML] A new model for the analysis of reinforced concrete members with a coupled HdBNM/FEM
Y Miao, T Sun, H Zhu, Q Wang - Applied Mathematical Modelling, 2014 - Elsevier
As a truly boundary-type meshless method, the hybrid boundary node method (HdBNM)
does not require 'boundary element mesh', either for the purpose of interpolation of the …
does not require 'boundary element mesh', either for the purpose of interpolation of the …
Thermal analysis of 3D composites by a new fast multipole hybrid boundary node method
This paper applies the hybrid boundary node method (Hybrid BNM) for the thermal analysis
of 3D composites. A new formulation is derived for the inclusion-based composites. In the …
of 3D composites. A new formulation is derived for the inclusion-based composites. In the …
Efficient evaluation of weakly singular integrals with Duffy-distance transformation in 3D BEM
F Tan, J Lv, Y Jiao, J Liang, S Zhou - Engineering Analysis with Boundary …, 2019 - Elsevier
Weakly singular integrals are commonly encountered in the application of BIEs. In general,
the 3D integral boundary element is divided into several triangle patches using the image of …
the 3D integral boundary element is divided into several triangle patches using the image of …
A rigid-inclusion model for fiber-reinforced composites by fast multipole hybrid boundary node method
Q Wang, H Yang - Engineering Analysis with Boundary Elements, 2015 - Elsevier
A hybrid boundary node method for mechanical analysis of fiber-reinforced composites
based on a rigid-inclusion model is proposed. Numerical simulation for fiber-reinforced …
based on a rigid-inclusion model is proposed. Numerical simulation for fiber-reinforced …