1、

In this model, the capacity-loss is divided into structural capacity-loss and insufficient demand capacity-loss. A calculating method of both types of capacity-loss of individual activity and total ABC system is provided. A decision-making method based on the capacity loss and cost information is presented.

提出了基于作业的能力模型,给出了单一作业以及整个核算系统的能力损失计算方法,并提出了基于能力损失信息和成本信息的价格决策方法。

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2、

Since asphaltic concrete materials are temperature dependent in nature, measured deflections and hence the structural capacity of pavement vary with temperature.

由于沥青混凝土材料强度的温度依赖性,弯沉以至路面结构承载能力都随温度而变化。

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3、

And it is also illustrated that pushover method can be employed to assess seismic vulnerability of jacket platforms by comparison of structural capacity spectra between dynamic time history analysis method and push-over analysis method.

通过比较pushover分析方法及动力时程分析方法建立的结构能力曲线、节点位移、塑性铰分布等,证明了pushover方法在导管架海洋平台结构抗震性能评价工作中是可行的。

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4、

Taking the metal thermal intensity as object function for structural optimization, this paper calculates the heat dissipating capacity of finned radiator of double water of passageway with Matlab. Through analyzing the outcome of numerical value, the optimum dimension of structure of the radiator is obtained.

本文以金属热强度为结构优化的目标函数,利用Matlab对双通水道带翅片的散热器的散热量进行计算,通过对数值结果的分析,得出该种散热器的最佳结构型式。

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5、

Structural Behaviors of the Continue Zee Purlins with Lap Connection on Light Steel Roofs Analysis of Load-carrying Capacity and Design Suggestion for Thin Channel Purlin Subjected to Wind Uplift Load

轻钢结构中Z型连续檩条设计问题的探讨风吸力作用薄壁卷边C型檩条承载力分析和设计建议

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6、

Structural Engineer, Knowledge Structure, Capacity, Personal Knowledge Management.

结构工程师;知识结构;能力;个人知识管理。

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7、

Dissolution of Mn, resultant structural change of spinel LiMn 2O 4 and decomposition of electrolyte at high voltage were the main causes for capacity fading at high temperature.

LiMn2O4材料中锰元素的溶解流失及其引起的结构变化和高电压下电解液的分解是容量衰减的主要原因。

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9、

In actual structural design, section dimensions of the transfer beam are at the mercy of bearing capacity for shear.

实际结构设计时,转换梁的截面尺寸往往是由受剪承载力决定的,而转换梁中对支座区段的截面受剪承载力要求往往远远高于对跨中区段的截面受剪承载力要求。

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10、

Capacity Analysis with Fracture Mechanics on Welded Joints of Structural Member in Machinery

基于断裂力学的机械结构件焊接节点疲劳性能研究

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11、

Analysis of influence of structural global seismic capacity induced by infills subjected to Wenchuan earthquake

从汶川地震分析填充墙对结构整体抗震能力影响

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12、

The style of support abutment influences greatly on the stable structural bearing capacity.

支座形式对结构的稳定承载力影响很大,为保证结构安全可靠,在实际工程中应尽量采用固支或接近于固支的支座形式;

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13、

Summary and probe into test of wall structure to a building in Guangzhou 2. In the experiments of cover surface's structural panel composite wall, we have discovered that the resistant capacity on lateral loadings is promoted remarkably.

对广州市某综合楼墙体试验的总结及建议2.在考虑蒙皮板作用的墙体试验中,发现墙体的水平承载能力大幅度提高,其承载力和刚度甚至是以几何倍数的水平在增加。

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15、

The hysteresis energy dissipation capacity of HADAS damper and its influence on structural seismic behavior are evaluated by the hysteresis loops of dampers and their mechanical characteristics obtained from the test. 2.

并且通过试验得到的HADAS阻尼器滞回曲线和力学性能参数评价了HADAS阻尼器的滞回耗能性能和对结构抗震性能的影响。

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16、

The performance analysis and results comparison between MRF and HADAS-frame indicate that the structural deformation and column shear force are significantly reduced, and the energy dissipation capacity of the structure is increased so that the damage and injury of major structure can be decreased or even avoided.

从试验现象分析和数据对比可以看出,HADAS阻尼器明显减小了结构的变形和框架柱剪力,有效增加结构的耗能能力,减小甚至避免主体结构在设防地震作用下引起的破坏和损伤。

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17、

Therefore it is feasible to use exergy, structural exergy and ecological buffer capacity to evaluate the health state of lake ecosystem.

这和分别应用营养状态指数(TSI)和生物多样性指数(DI)进行评价的结果相似,表明运用Exergy、结构exergy和生态缓冲容量指标对湖泊生态系统健康状况进行评价的方法是可行的。

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18、

Structural imbalance great influences urban road capacity, urban environment and traffic safety.

结构的失衡对城市道路通行能力、城市环境、行车安全等造成极大影响,那么针对城市货运需求与供给的分析将显得尤为必要与重要。

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19、

structural renovation for improving the berthing capacity of gravity wharf

提高重力式码头靠泊能力的结构改造方法

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20、

all structural engineers, one typically has a specific structural geometry for which the load carrying capacity must be determined.

在所有结构工程师所熟悉的材料力学方法中,问题总是针对一个具有特定几何形状的结构来确定它的承载能力。

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