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边界条件 的英文翻译、例句

边界条件

词组短语
boundary condition
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The results show that the absorbing effect of low-order Higdon absorbing boundary condition is undesirable and relatively strong boundary reflection exists in wave field snapshot and analog recording; the effect of traditional and improved PML absorbing boundary conditions are similar, which can effectively absorb and attenuate the boundary reflections from any angle.

结果表明,低阶Higdon吸收边界条件吸收效果较差,在波场快照和模拟记录中存在较强的边界反射;改进的PML吸收边界条件与传统的PML吸收边界条件效果相当,均能有效地吸收衰减任意角度的边界反射波。

The result shows that the mixed boundary condition can greatly reduce the calculation area without affecting accuracy of the solution.It is followed by the higher accuracy of Dirichlet boundary condition which makes the boundary error greater when measured points is near the boundary, so we must take a sufficiently large border region.The homogeneous boundary condition has relatively large error, but the use of non-triangle poles devices makes apparent resistivity calculation error become small, because of elimination of the effect on potential difference for the infinite boundary. In inversion, in order to save computing time, homogeneous boundary conditions are often used to perform finite element forward calculation.

结果表明,混合边界条件精度最高,可大大缩小求解区域而不影响计算精度,其次是Dirichlet边界条件精度较高,但测点越靠边界误差会越大,必须取足够大的边界区域,齐次边界条件的误差比较大,但如果采用非二极装置,通过电位差计算得到的视电阻率,由于无穷远边界对电位差的影响基本消除,视电阻率计算误差与混合边界条件下的接近,在反演中,为了节省计算时间,经常使用齐次边界条件进行有限元正演。

We have also presented the ω-circulant boundary condition and compared it with the helix boundary condition. Furthermore, we can also get another new boundary condition: the mixed boundary condition.

由此我们提出了ω循环型边界条件并将其与普通循环型及螺旋型边界条件作了分析和比较;进一步地,得到了一种新的边界条件:混合型边界条件

Second order incident boundary condition on fixed incident boundary is derived for numerical simulations, based on the cnoidal or sinusoidal motions of wave maker paddle, which shows that the prediction with second order incident boundary condition is more accurate than the prediction with first order incident boundary condition. 2 The analytical solution for higher-order Boussinesq equations is derived and its applicable range is discussed. 3 A 2-D fully non-linear numerical model using boundary element method is developed to obtain wave forces acting on rectangular obstacle. 4 The three-dimensional fully non-linear waves are studied in a numerical wave tank using finite element method.The studies on the coupled numerical model combined Boussinesq equations with Laplace equation are following.

非耦合非线性波浪计算模型:1 根据造波板做椭圆余弦运动或正弦运动速度,推导出数值模拟波浪水槽时固定入射边界上的二阶波浪入射边界条件,数值计算结果和实验结果的对比表明采用二阶入射边界条件对波面升高的预报比采用一阶入射边界条件对波面升高的预报更为精确;2 推导了波浪水槽造波板做正弦运动所产生波浪的高阶Boussinesq方程摄动展开解析解,讨论了该解析解的适用范围;3 对整个波浪水槽应用边界元方法数值模拟了波浪对物体的非线性作用;4 用有限元法求解三维Laplace方程模拟了三维完全非线性波浪水槽。

However the lower order traditional absorbing boundary conditions are only effective for the incident waves with smaller incident angles. A fourth-order absorbing boundary condition equation based on Higden's ABC is deduced in this thesis, and a new algorithm is presented to automatically select the Higden's parameters.

本文基于Higdon提出的吸收边界条件方法,推导出四阶吸收边界条件方程,并提出了一种新的吸收边界条件角度参数的自动选择方法,使该吸收边界条件能够吸收全角度(0~90度)入射波。

For a given Sturm-Liouville equation with positive leading coefficient function, by use of the monotonicity results of its natural loops, limit of boundary conditions and eigenvalues in the space of self-adjoint boundary conditions, a proof of the equalities among eigenvalues for coupled boundary conditions and those for separated boundary conditions is made.

内蒙古工业大学理学院副教授 2。对于给定的首相系数函数为正的 Sturm-Liouville方程,利用在自伴边界条件空间上自然圈、边界条件的极限和特征值的单调性的几个结果,给出了在偶合边界条件与分离边界条件下的特征值间的一些等式的证明。

Assign the Boundary conditions 5,设置边界条件 A natural air cooling heat Boundary condition will be applied all around the sand box, a velocity Boundary condition will be applied and a temperature Boundary condition will be imposed to some nodes of the top surface of the down sprue.

砂型周围是一个自然空气冷却的热边界条件。一个速度边界条件和一个温度边界条件将被设置到直浇口的上平面的一些节点上。

And by using the initial conditions as well as the end conditions, the dynamic problem is then transferred to a second kind Volterra integral equation about the function of the axial strain with respect to time which can also be solved successfully by the interpolation method. For piezoelectric and pyroelectric hollow cylinders, by following the solving procedure for elastic hollow cylinder and by using the electric boundary conditions, the dynamic problems are transferred to two Volterra integral equations about two functions of time, one is axial strain and the other is related to electric displacement, which can also be solved efficiently and quickly by employing interpolation method. The elastodynamic solutions of hollow spheres, which are made of elastic, piezoelectric and pyroelectric materials, respectively, for spherically symmetric problems are also obtained.

对于弹性空心圆柱,通过引入一特定函数将非齐次边界条件化为齐次边界条件,然后利用正交展开技术,导出关于时间函数的方程,再结合初始条件和端部边界条件,将原问题转化为关于一个时间函数的第二类Volterra积分方程,运用插值法可给出此积分方程的解;对于压电和热释电空心圆柱,利用求解弹性空心圆柱相似的方法,再结合电学边界条件,原问题转化为关于两个时间函数(轴向应变和与电位移有关的函数)的第二类Volterra积分方程组,同样可用插值法来构造相应的递推公式高效地求解此积分方程组。

Moreover, it indicates that the error is reduced with the increase of the exponent number of the Asymptotic Boundary Conditions. In the third chapter, based on the Laplace equation, the limitation of the variation methods are deduced from the process proving the operator to be self-adjoint and positive definite.

针对二阶渐近边界条件中含有微分项的情况,第三章研究了基于变分的有限元方法对边界条件的限制,提出对所适用的边界条件的要求,从而说明针对二阶渐近边界条件问题可以采用迦辽金有限元方法。

The two-dimensional transient finite element analysis and thermal responsecalculation were carried out for prestressed concrete box girder with irregular crosssection. Various boundary conditions were discussed in detail.

在有限单元分析中,首次推导出混合边界单元的计算公式,从而将第二类边界条件和第三类边界条件统一起来,以第三类边界条件的形式施加到单元边界上。

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dirichlet boundary condition:狄利克雷边界条件

狄利克雷边界条件 在数学中,狄利克雷边界条件(Dirichlet boundary condition)也被称为常微分方程或偏微分方程的"第一类边界条件",指定微分方程的解在边界处的值.

dirichlet boundary condition:狄里克雷边界条件

相容条件consistency condition | 狄里克雷边界条件Dirichlet boundary condition | 熵条件entropy condition

numerical boundary condition:数值边界条件

无反射边界条件nonreflecting boundary condition | 数值边界条件numerical boundary condition | 流出边界条件outflow boundary condition

numerical boundary condition:边界条件

边界层转捩 boundary layer transition | 边界条件 numerical boundary condition | 边界元法 boundary element method

outflow boundary condition:流出边界条件

数值边界条件numerical boundary condition | 流出边界条件outflow boundary condition | 冯.诺伊曼条件von Neumann condition

nonreflecting boundary condition:无反射边界条件

流入边界条件inflow boundary condition | 无反射边界条件nonreflecting boundary condition | 数值边界条件numerical boundary condition

boundary condition of first type:第一类边界条件

boundary condition 边界条件 | boundary condition of first type 第一类边界条件 | boundary condition of prescribed flux 给定流量的边界条件

neumann boundary condition:诺埃曼边界条件

Neufeld's reaction 诺伊费耳德氏反应,荚磺肿胀反应 | Neumann boundary condition 诺埃曼边界条件 | Neumann boundary conditions 诺伊曼边界条件

boundary condition of second type:第二类边界条件

boundary condition of prescribed head 给定水头的边界条件 | boundary condition of second type 第二类边界条件 | boundary condition of third type 第三类边界条件

boundary condition of third type:第三类边界条件

boundary condition of second type 第二类边界条件 | boundary condition of third type 第三类边界条件 | boundary element method 边界单元法