摘要
采用与快速算法相结合的边界面法,对大坝浇筑过程中的瞬态热传导问题进行仿真分析,预测混凝土大坝施工过程中温度的分布及随时间的变化。采用时间卷积法计算时间积分,通过Taylor级数展开将基本解中的空间变量和时间变量分离,一次性计算并存储空间变量的积分,提高了卷积积分的计算效率。算例仿真分析表明:边界面法的计算温度分布与有限元法计算结果高度吻合,将边界面法应用于真实大坝浇筑过程瞬态热传导分析是可行的。
The boundary face method ( BFM) , combined with a fast algorithm, was applied to transient heat conduction analysis of concrete dams during the pouring process, so as to predict the temperature distribution and its time history in concrete dams during the construction process. Using the time convolution method to compute the time integration and the Taylor series expansion method to separate the spatial variables and time variables in fundamental solutions, the spatial variable integrals can be calculated and stored at the same time, improving the calculation efficiency of the convolution integral. A case study shows that the temperature distribution obtained by the fast BFM agrees with the results of the finite element method, demonstrating the feasibility of application of the fast BFM to transient heat conduction analysis during the actual dam construction process.
出处
《水利水电科技进展》
CSCD
北大核心
2016年第1期71-76,共6页
Advances in Science and Technology of Water Resources
基金
国家自然科学基金(11172098)
国家重点基础研究项目(973计划)(2010CB328005)
关键词
边界面法
有限元法
时间卷积法
瞬态热分析
混凝土坝
boundary face method
finite element method
time convolution method
transient heat conduction analysis
concrete dam