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71.
本文主要就统计因素分析法中不变因素的固定时期问题.提出了“先变因素和后变因素”的观点,从而对统计指数理论难以解释的问题.变得较为容易处理。  相似文献   
72.
A finite volume solver for the 2D depth‐integrated harmonic hyperbolic formulation of the mild‐slope equation for wave propagation is presented and discussed. The solver is implemented on unstructured triangular meshes and the solution methodology is based upon a Godunov‐type second‐order finite volume scheme, whereby the numerical fluxes are computed using Roe's flux function. The eigensystem of the mild‐slope equations is derived and used for the construction of Roe's matrix. A formulation that updates the unknown variables in time implicitly is presented, which produces a more accurate and reliable scheme than hitherto available. Boundary conditions for different types of boundaries are also derived. The agreement of the computed results with analytical results for a range of wave propagation/transformation problems is very good, and the model is found to be virtually paraxiality‐free. Copyright © 2003 John Wiley & Sons, Ltd.  相似文献   
73.
现行《化学教学论》教材将典型教学示例放在化学教学原则之后,致使整本教材缺乏逻辑性,不符合当前创新能力培养的要求,不利于坚定师范生从事教育事业的信心,笔者认为应先讲教学示例、后授教学原则。  相似文献   
74.
A generalized formulation is applied to implement the quadratic upstream interpolation (QUICK) scheme, the second-order upwind (SOU) scheme and the second-order hybrid scheme (SHYBRID) on non-uniform grids. The implementation method is simple. The accuracy and efficiency of these higher-order schemes on non-uniform grids are assessed. Three well-known bench mark convection-diffusion problems and a fluid flow problem are revisited using non-uniform grids. These are: (1) transport of a scalar tracer by a uniform velocity field; (2) heat transport in a recirculating flow; (3) two-dimensional non-linear Burgers equations; and (4) a two-dimensional incompressible Navier-Stokes flow which is similar to the classical lid-driven cavity flow. The known exact solutions of the last three problems make it possible to thoroughly evaluate accuracies of various uniform and non-uniform grids. Higher accuracy is obtained for fewer grid points on non-uniform grids. The order of accuracy of the examined schemes is maintained for some tested problems if the distribution of non-uniform grid points is properly chosen.  相似文献   
75.
介绍了直接分支模态综合法的基本原理并通过算例对算法进行验算,分析了该方法计算结果很不准确的原因并进行了改进。改进的分支模态法将系统中主子结构的剩余模态加入,降低了略去高阶模态带来的严重误差。计算结果与有限元软件ANSYS的计算结果吻合较好,误差小于2%。改进的方法不仅使计算结果准确,而且保持了原方法的优点,适用于工程计算。  相似文献   
76.
根据发散思维与收敛思维的辩证关系 ,论述了田径课培养学生发散思维的 3种方法 ,有利于表现个性 ;全方位地培养学生与老师之间的有效交往能力 ;激发学生潜力 ,发展学生的兴趣 ;在安排时间、搜集资料、自我评价等方面培养了学生独立的学习能力 .  相似文献   
77.
78.
We further study the validity of the Monte Carlo Hamiltonian method. The advantage of the method,in comparison with the standard Monte Carlo Lagrangian approach, is its capability to study the excited states. Weconsider two quantum mechanical models: a symmetric one V(x) = |x|/2; and an asymmetric one V(x) = ∞, forx < 0 and V(x) = x, for x ≥ 0. The results for the spectrum, wave functions and thermodynamical observables are inagreement with the analytical or Runge-Kutta calculations.  相似文献   
79.
采用蒙特卡罗法分析离散坐标法的假散射   总被引:1,自引:1,他引:0  
采用蒙特卡罗法获得了离散坐标方程的不含任何假散射的高精度解,其基本思路是:当采用一个离散坐标格式来计算一个漫射表面的热辐射时,就意味着用有限个离散方向去“代表”2π立体空间上的无穷多个方向,因此,不妨假定存在着这样一个虚拟表现:该表面的确只沿着该离散坐标格式的离散方向上发射热辐射,并且在每个方向上的热流也完全遵循离散坐标方程,然后将蒙特卡罗法应用于此虚拟表现,由此所获得解即为此有面的高精度解,不言而喻它也等效于离散坐标方程的高精度解,在此基础上,分析了离散坐标法的假散射对计算结果的影响。  相似文献   
80.
Here we describe analytical and numerical modifications that extend the Differential Reduced Ejector/ mixer Analysis (DREA), a combined analytical/numerical, multiple species ejector/mixing code developed for preliminary design applications, to apply to periodic unsteady flow. An unsteady periodic flow modelling capability opens a range of pertinent simulation problems including pulse detonation engines (PDE), internal combustion engine ICE applications, mixing enhancement and more fundamental fluid dynamic unsteadiness, e.g. fan instability/vortex shedding problems. Although mapping between steady and periodic forms for a scalar equation is a classical problem in applied mathematics, we will show that extension to systems of equations and, moreover, problems with complex initial conditions are more challenging. Additionally, the inherent large gradient initial condition singularities that are characteristic of mixing flows and that have greatly influenced the DREA code formulation, place considerable limitations on the use of numerical solution methods. Fortunately, using the combined analytical–numerical form of the DREA formulation, a successful formulation is developed and described. Comparison of this method with experimental measurements for jet flows with excitation shows reasonable agreement with the simulation. Other flow fields are presented to demonstrate the capabilities of the model. As such, we demonstrate that unsteady periodic effects can be included within the simple, efficient, coarse grid DREA implementation that has been the original intent of the DREA development effort, namely, to provide a viable tool where more complex and expensive models are inappropriate. Copyright © 2002 John Wiley & Sons, Ltd.  相似文献   
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