FUNDAMENTAL SOLUTION BASED GRADED ELEMENT MODEL FOR STEADY-STATE HEAT TRANSFER IN FGM
- 期刊名字:固体力学学报(英文版)
- 文件大小:
- 论文作者:Leilei Cao,Hui Wang,Qing-Hua Q
- 作者单位:Key Laboratory for Highway Construction Technology and Equipment of Ministry of Education,School of Engineering,College
- 更新时间:2023-02-07
- 下载次数:次
A novel hybrid graded element model is developed in this paper for investigating thermal behavior of functionally graded materials (FGMs).The model can handle a spatially varying material property field of FGMs.In the proposed approach,a new variational functional is first constructed for generating corresponding finite element model.Then,a graded element is formulated based on two sets of independent temperature fields.One is known as intra-element temperature field defined within the element domain; the other is the so-called frame field defined on the element boundary only.The intra-element temperature field is constructed using the linear combination of fundamental solutions,while the independent frame field is separately used as the boundary interpolation functions of the element to ensure the field continuity over the interelement boundary.Due to the properties of fundamental solutions,the domain integrals appearing in the variational functional can be converted into boundary integrals which can significantly simplify the calculation of generalized element stiffness matrix.The proposed model can simulate the graded material properties naturally due to the use of the graded element in the finite element (FE) model.Moreover,it inherits all the advantages of the hybrid Trefftz finite element method (HT-FEM) over the conventional FEM and boundary element method (BEM).Finally,several examples are presented to assess the performance of the proposed method,and the obtained numerical results show a good numerical accuracy.
-
C4烯烃制丙烯催化剂 2023-02-07
-
煤基聚乙醇酸技术进展 2023-02-07
-
生物质能的应用工程 2023-02-07
-
我国甲醇工业现状 2023-02-07
-
JB/T 11699-2013 高处作业吊篮安装、拆卸、使用技术规程 2023-02-07
-
石油化工设备腐蚀与防护参考书十本免费下载,绝版珍藏 2023-02-07
-
四喷嘴水煤浆气化炉工业应用情况简介 2023-02-07
-
Lurgi和ICI低压甲醇合成工艺比较 2023-02-07
-
甲醇制芳烃研究进展 2023-02-07
-
精甲醇及MTO级甲醇精馏工艺技术进展 2023-02-07
