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用一种改进的Euler方法模拟凝聚炸药的爆轰
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张波(1976-),男,硕士,从事火工品和炸药部件研究。 e-mail: zhangbo3721@163.com

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Numerical Simulation of Detonation in Condensed Explosives by Using an Improved Eulerian Method
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    建立了一种改进的Euler方法来数值模拟凝聚炸药的爆轰,化学反应率采用Lee-Tarver的点火成长模型。由该化学反应模型的假设推导出物质组分的能量方程,这样可以避免通过定义混合物质的状态方程带来的非物理振荡。Euler方程被用来描述混合物质的流动,每种物质组分的物理参量,如组分质量、组分体积份额以及组分总能量等,通过一套附加的方程来描述,并且混合物压力方程也被耦合起来。对所获得的控制方程使用高分辨率、高阶精度的有限体积法离散求解。从典型爆轰算例来看,该方法能够正确预测凝聚炸药爆轰的起爆及传播过程中的关键特征,如Von Neumann尖峰和化学反应区等。

    Abstract:

    An improved Eulerian method is constructed to numerically simulate the detonation course in the condensed explosives. The ignition and growth model by Lee-Tarver is used in the chemistry reaction law of explosives. The model has the following assumptions that the mixing materials are composed of the unreacted explosives and reacted products in the chemistry reaction zone, 1) have the addition of the volumes; 2) arrive at the equilibrium state about dynamics and 3) arrive at the nonequilibrium state about thermodynamics. On the basis of three assumptions, first of all, Euler equations are adopted to describe the flow motion of the mixing materials,and then the physical parameters of each material constituent, such as fraction mass, fraction volume and fraction total energy, are described through an additional set of equations. Moreover, the pressure equation about the mixing materials is coupled to the above equations, and the obtained equations of fluid flow are discretized and solved by a finite volume algorithm with high resolution and high precision. From some representative examples about unsteady detonation, the key characteristics of initiation and propagation of detonation course, such as Von Neumann spike pressure and reaction zone width can be correctly predicted by this method. The results show that the method to numerically simulate the detonation course in the condensed explosives is reasonable.

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张波,于明.用一种改进的Euler方法模拟凝聚炸药的爆轰[J].含能材料, 2006, 14(3):195-199.
ZHANG Bo, YU Ming. Numerical Simulation of Detonation in Condensed Explosives by Using an Improved Eulerian Method[J]. Chinese Journal of Energetic Materials, 2006, 14(3):195-199.

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  • 收稿日期: 2005-04-08
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  • 在线发布日期: 2011-11-04
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