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首页> 外文期刊>Journal of Energetic Materials >Detonation Products EOS by Specifying Gamma (V) for the Principal Isentrope
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Detonation Products EOS by Specifying Gamma (V) for the Principal Isentrope

机译:通过为主要Isentrope指定Gamma(V)来引爆爆炸物EOS

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The standard way of defining an equation of state (EOS) for detonation products is (1) choose a function P_s(V) for the pressure along the principal isentrope, with enough adjustable parameters; (2) integrate it to obtain the internal energy E_s(V); (3) determine the parameters from available data (Chapman Jouget (CJ) state and cylinder expansion test); (4) refer a Gruneisen EOS to this principal isentrope. Using this approach, (1) most of the adjustable parameters have no physical meaning; (2) they are determined simultaneously; and (3) changing one of them requires changing the others. Instead, we define the principal isentrope by choosing a function for the adiabatic gamma γ_s(V). We show that this has the following advantages over the standard approach: (1) the parameters have physical meaning; (2) they can be determined by a recursive process; (3) the influence of changes in the parameters to cylinder expansion results is obvious.
机译:定义爆轰产物状态方程(EOS)的标准方法是(1)为沿主等熵的压力选择函数P_s(V),并具有足够的可调整参数; (2)积分得到内部能量E_s(V); (3)根据可用数据(查普曼·乔格(CJ)状态和汽缸膨胀测试)确定参数; (4)将Gruneisen EOS与此主体原理有关。使用这种方法,(1)大多数可调参数没有物理意义; (2)同时确定; (3)改变其中之一需要改变其他。相反,我们通过选择绝热伽马γ_s(V)的函数来定义主要等熵。我们证明,与标准方法相比,它具有以下优点:(1)参数具有物理意义; (2)它们可以通过递归过程确定; (3)参数变化对气缸膨胀结果的影响是明显的。

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