aseismic

1. The Suggestions for aseismic design are proposed.
提出了供抗震设计参考的建议。

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2. The aseismic test of buried pipe crossing fault is conducted. Some m.
首次进行了跨断层埋地管道抗震试验。取得了一些有益的结论。

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3. The credible aseismic gist is provided by ANSYS for checking the results.
用ANSYS作校核计算,能为结构抗震设计提供可靠的依据。

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4. Earthquake protection standard should be set up in bridge aseismic design.
桥梁抗震设计首先需要设定抗震设防标准。

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5. The tests indicate that this type of joints has better aseismic behaviour.
试验表明,这类节点具有较好的抗震性能。

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6. This paper states the aseismic design of brick house with bottom framework.
文章对底层框架抗震墙砖房的抗震设计进行了论述。

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7. The fault slip coefficient increased, and aseismic creep appeared on the fault.
断层滑动系数增高,断层出现无震蠕动。

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8. Certain parts of the plate boundaries along subduction zones appear to be aseismic.
沿消减带的某些板块边界似乎长期无震。

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9. The unbonded prestressed concrete flat beam frame can meet the aseismic requirement.
无粘结预应力混凝土扁梁框架应当可以满足抗震要求。

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10. The aseismic design development of masonry structure is always concerned by engineers.
砌体结构的抗震设计进展也始终为结构工程师所关注。

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11. The analysis showed that the hampers of ductile column possessed good aseismic performance.
分析表明,这些延性柱耗能器具有良好的消耗地震能量的能力。

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12. The results obtained in this paper can guide the design of aseismic structural control system.
本文的结论对上部结构抗震控制措施的设计具有一定的理论指导意义。

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13. According to the results of test and analysis, aseismic behavior of the structure are discussed.
根据试验与分析结果,论述了这种结构的抗震性能。

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14. The structural influencing coefficient is very important in aseismic design for steel structures.
在钢结构抗震设计中,结构影响系数的取值是至关重要的。

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15. After comparison of the result, the aseismic calculation method suitable for the buildings is choose.
比较结果后,得出了适合该建筑的抗震计算方法。

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16. The optimal reliability decision for aseismic structures plays a very important role in their design.
抗震结构最优可靠度的决策对结构的抗震设计具有非常重要的作用。

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17. The calculation results provide reference for design and aseismic safety evaluation of high arch DAMS.
本文的计算结果为拱坝的设计和拱坝抗震安全性评价提供了参考。

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18. This result can offer reference for seismic risk analysis and structural aseismic checking computation.
该结果对地震危险性分析以及结构抗震验算有一定参考价值。

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19. From the principle of the earthquake analysis, the new property of aseismic calculation method is discussed.
从地震分析的原则出发,分析现行抗震计算方法的特点。

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20. Nowadays, a simple and effective method to evaluate aseismic capacity, Pushover method is paid attention to.
现今,一种简单而有效的抗震能力评价工具——静力弹塑性分析方法受到了越来越多的重视。

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21. This new design concept is also applicable to the aseismic design of buildings, factories and tall structures.
这种新的设计概念及方法同样适合于房屋、厂房及高耸结构抗震设计。

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22. The dynamic structural behaviour and basic analysis method for aseismic design of underground structures are studied.
本文分析论述了地下结构的抗震特性,抗震分析的基本方法。

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23. Through optimization, the structural aseismic ability increases with the decrease of structural material consumption.
通过优化设计,可节省材料,进一步提高结构的抗震性能。

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24. Engineer case is presented here to demonstrate this method for aseismic reliability of the existing masonry structures.
选用工程实例说明了已有砌体结构抗震可靠度分析的实用方法。

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25. The conclusions obtained through numerical simulation have valuable reference to aseismic design of steel truss bridge.
通过数值模拟得出了几点结论,对于钢桁架桥梁的抗震设计有一定的参考价值。

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26. According to the property of the earthquake, the methods of aseismic calculation are speciafied and compared in this paper.
根据地震的特点,对抗震计算方法作了分类和比较。

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27. Finally, some recommendations on aseismic design of short ductile restrained reinforced concrete beam have been put forward.
最后提出了延性约束钢筋混凝土短梁的抗震设计方法建议。

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28. At last, it is suggested that more than two kinds of the aseismic calculation methods are applied to the complicated buildings.
最后,提出了运用两种以上的抗震计算方法对较为复杂的建筑物进行计算。

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29. At last, it is suggested that more than two kinds of the aseismic calculation methods are applied to the complicated buildings.
最后,提出了运用两种以上的抗震计算方法对较为复杂的建筑物进行计算。

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