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1)  harmonic disk loads
圆盘状简谐荷载
1.
By using the formulas of displacement responses of transversely isotropic elastic strata to harmonic ring loads, the general formulas of displacement responses of transversely isotropic elastic strata to harmonic disk loads are derived.
文章利用文献[1]中所推导的环形荷载作用下,横观各向同性层状场地的位移响应公式,将它们沿径向进行积分,给出了横观各向同性层状场地对圆盘状简谐荷载位移响应的一般形式,并举例说明各种参数对这些响应的影
2)  harmonic load
简谐荷载
1.
Fundamental formulations for harmonic load acting in the interior of Gibson surgrade distributing versus depth;
Gibson土体内部作用沿深度分布简谐荷载的基本解
2.
The reliability index of single-layer spherical shell under the vertical harmonic load are studied in the paper.
本文通过对单层球面网壳在竖向简谐荷载下可靠指标的分析,发现了给定失效指标和结构位移响应之间的关系,获得了是否需要考虑交叉项进行可靠性分析的量化指标。
3.
Through simultaneously considering geometric non-linear and material non-linear,the dynamic responses of single-layer spherical latticed shells subjected to harmonic loads and step loads were researched respectively,and the most unfavorable dynamic loads of the structure were analyzed.
同时考虑了几何非线性与材料非线性,分别对简谐荷载、阶跃荷载作用下的单层球面网壳进行了最不利动荷载分析:通过变换简谐荷载的频率和阶跃荷载的持时,明确了结构动力响应与其自振特性及荷载频谱特性之间的关系,确定了何种条件下的荷载为结构最不利动荷载。
3)  harmonic excitation
简谐载荷
1.
The feasibility and effectiveness of MR-TMD for structural vibration control under harmonic excitations were simulated and analyzed by using the semi-active control algorithms proposed by the authors.
提出一种新型的结构振动控制的半主动质量驱动器(MR-TMD)系统,采用半主动控制算法仿真分析了在简谐载荷激励下MR-TMD系统对结构振动控制的可行性和有效性,比较MR-TMD、调谐质量阻尼器(TMD)及主动质量驱动器(AMD)对同一模型结构的幅频特性。
4)  harmonic action
简谐荷载
1.
Failure mechanism of latticed shells subjected to harmonic actions;
简谐荷载下单层球面网壳动力失效机理研究
5)  harmonic loads
简谐荷载
1.
In this paper,non-linear dynamic responses of single-layer spherical shells subjected to harmonic loads and step loads are analyzed,in which both the geometric non-linearity and the material non-linearity are all taken into account.
本文同时考虑了几何非线性与材料非线性,对单层球面网壳结构在简谐荷载、阶跃荷载作用下进行了动力响应分析。
6)  load-bearing disc
载荷圆盘
补充资料:多声子过程(见非简谐效应)


多声子过程(见非简谐效应)
multiphonon process

多声子过程multiphonon proeess见非简谐效应。
说明:补充资料仅用于学习参考,请勿用于其它任何用途。
参考词条