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首页> 外文期刊>ire Science and Technology >Development of a Numerical Method for Analyzing Fire Plume Equations Using an Improved Version of a Quasi-Third-Order Accurate CIP Method That Eliminates Numerical Oscillation
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Development of a Numerical Method for Analyzing Fire Plume Equations Using an Improved Version of a Quasi-Third-Order Accurate CIP Method That Eliminates Numerical Oscillation

机译:开发一种使用改进的准三阶精确CIP方法消除火焰波动的方法来分析火羽方程

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References(7) This study is concerned with simulations of fire phenomena using field equation models. When performing numerical computation of a fire plume accompanied by gas and smoke, the phenomena are expressed through simultaneous non-stationary nonlinear second-order partial differential equations containing advective terms. Those advective terms are then subjected to difference approximations. The ordinary CIP method, which allows us to find an approximate solution using a third-order interpolation function, is often influenced by numerical oscillations emerging specifically with the third-order accuracy, thereby drastically reducing the numerical stability. We developed a new computational algorithm called mCIP method to eliminate these numerical oscillations generated in the numerical computation of partial differential equations when a third-order accurate method is used. A characteristic feature of this mCIP is that it is based on the first-order upwind difference scheme, which does not generate numerical oscillations in those regions where such oscillations may normally occur. We successfully evaluated the performance of this mCIP method and verified its effectiveness by comparing the results of computations with other representative methods, such as CIP method, TVD method and first-order accurate difference method.
机译:参考文献(7)该研究涉及使用场方程模型模拟火灾现象。当对伴随气体和烟雾的火羽进行数值计算时,该现象通过同时包含对流项的非平稳非线性二阶偏微分方程表示。然后对那些对流项进行差分近似。允许我们使用三阶插值函数找到近似解的普通CIP方法经常受到专门以三阶精度出现的数值振荡的影响,从而大大降低了数值稳定性。我们开发了一种新的计算算法,称为mCIP方法,以消除使用三阶精确方法时在偏微分方程数值计算中产生的这些数值振荡。该mCIP的一个特征是,它基于一阶迎风差分方案,该方案在通常可能发生此类振荡的那些区域中不会产生数值振荡。我们成功地评估了该mCIP方法的性能,并通过将计算结果与其他代表性方法(例如CIP方法,TVD方法和一阶精确差分方法)进行了比较,验证了其有效性。

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