曹禮群+黃記祖
摘 要:構一體化的熱、力耦合多尺度模型與算法研究是力學、數學、物理學與材料科學多學科交叉的前沿領域,也是重大裝備研發(fā)中需要著重解決的基礎科學問題。材料與結構在裂紋、空洞、夾雜、纖維取向、基體分布形態(tài)等方面具有內在的不確定性,其損傷和破壞還表現為復雜的熱力耦合非線性多尺度力學行為。尺度間隙和跨尺度連接,涉及微—細—宏觀不同尺度間數學物理模型的聯系與差別等基本問題,建立微/納米尺度的熱、力模型,揭示熱、力耦合的物理機制,發(fā)展材料與結構一體化的宏—細—微觀耦合的多尺度模型與算法,具有重要的理論與實際意義。結果表明:復合材料界面結構對于材料的力、熱、電、磁等物理、力學性能有十分重要的影響。我們針對復合材料與界面納米結構熱傳導問題,發(fā)展了一類分子動力學與連續(xù)模型跨尺度耦合模式、MD/FEM耦合算法,并編寫了相關計算程序。主要進展有:(1)實現了納米結構導熱系數等熱學參數的分子動力學計算和量子校正;(2)發(fā)展了復合材料和多孔材料周期及隨機結構熱傳導問題連續(xù)模型的多尺度算法;(3)提出了一類分子動力學與連續(xù)模型的跨尺度關聯模式和MD/FEM耦合算法;(4)實現了三維復合材料和界面納米結構的MD/FEM計算。
關鍵詞:分子動力學-連續(xù)介質耦合模型 熱傳導 多尺度漸近展開 分子動力學 有限元方法
A Molecular Dynamics-Continuum Coupled Model for Heat Transfer in Composite Materials
Cao Liqun1 Huang Jizu2
(1.Academy of Mathematics and Systems Science; 2.Institute of Software Chinese Academy of Sciences)
Abstract:The heat transfer problem in composite materials has been investigated which contain the nano-scale interface. A molecular dynamics-continuum coupled model is developed to study the heat transport from the macro- to the micro-scales. The model includes four major steps:(1)A reverse non-equilibrium molecular dynamics (RNEMD) is used to calculate some physical parameters such as the thermal conductivities on the interface.(2)The homogenization method is applied to compute the homogenized thermal conductivities of composite materials.(3)the temperature field in the global structure of composite materials is computed with the multiscale asymptotic method for the macroscopic heat transfer equation.(4)A molecular dynamics-continuum coupled model has been developed to reevaluate the temperature field of composite materials, in particular, the local temperature field near the interface. The numerical results in one-, two- and three-dimensional structures of composite materials including the nano-scale interface are given. Good agreement has been achieved between the numerical results of the proposed coupled algorithm and those of the full MD simulation, demonstrating the accuracy of the present method and its potential applications in the thermal engineering of composite materials.
Key Words:A molecular dynamics-continuum coupled model; Heat transfer; Multiscale asymptotic expansion; Molecular dynamics; Finite element method
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