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English translation for "dynamic pile testing"

桩基动测技术

Related Translations:
piling:  n.1.打桩,打桩工程。2.桩,桩基;桩材。
pile jogger:  纸堆闯齐装置
carbon pile:  石墨反应堆碳堆碳柱稳压用炭棒堆
granular pile:  粗颗粒土桩
pile area:  材堆区
polypropylene pile:  丙纶绒
drilling pile:  钻孔桩
temperary pile:  临时桩
uncased piling:  打无壳套舂
battered pile:  斜村斜桩
Example Sentences:
1.Technical specification of dynamic pile tests for highway engineering
公路工程基桩动测技术规程
2.Dynamic pile testing
桩基动测技术
3.So , it is suitable to use the former for aseismic design of pile foundation but the latter for dynamic pile testing
因此在基础动力设计中应采用较为严格的解,对基桩动测则可以采用简化理论。
4.Longitudinal vibration theory of pile is the basis of any kind of method in dynamic pile testing , which can be used to explain the dynamic reaction between pile and soil , the mechanics of pile testing , and to illustrate the pile testing curves
桩的纵向振动理论是各种动态试桩方法的理论基础,开展桩的纵向振动理论研究对于进一步弄清桩?土间动力相互作用、动力试桩的机理以及正确分析桩的测试曲线非常重要。
5.And it is also the basis of any kinds of methods in dynamic pile testing . although many soil - pile interaction models have been developed using a variety of analytical and numerical techniques , how to model soil layer accurately is still a major difficult in pile dynamics
迄今为止,这一理论已经历了近四十年的研究发展,取得了较为丰富的成果,但与工程应用的要求相比,仍存在很多问题,其中一个重要方面是以往关于土中孔隙水对桩振动特性的影响研究甚少。
6.It can be said that the solution to the space problem of limit load and the calculation of foundation bearing capacity for deformed groundwork have some academic and scientific value . the dynamic pile testing of foundation and batholith as well as deep well load testing system has been put into use in real work environment and gained some social and economic benefit
本文关于界限荷载的空间问题解答,考虑地基变形的地基承载力工程算法具有一定的学术价值;本文中的地基(及岩基)承载力动测法及深井载荷试验系统已在工程实践中应用,并取得了较好的社会和经济效益,具有一定的工程实用意义。
7.In view of bearing capacity of the elastoplastic theory analysis , the author made a comparison between the achieved bearing capacity limit load pi / 4 of round base ( space problem ) and the limit load pi / 4 of bar groundwork foundation design ( plane problem ) from soil mechanics at home and abroad as well as foundation criterion , and explained why the value of formula in present design criterion from soil mechanics is inclined to be conservative . in the light of the author ' s many years experience of vibration test on the spot and the research work of relevant projects , the author worked over the dynamic pile testing of the bearing capacity of foundation and batholith , and gathered the parameter of dynamic analysis and testing . the author also talked over the difficult point of pile foundation design criteria in present batholith engineering world , i . e . the confirmation of batholith bearing capacity of pile end , from the following aspects : a ) confirmation of single axis counter - pressure strength of rock in house ; b ) f . e . m calculation of elastoplastic model ; c ) calculation of soil mechanics ; d ) deep well load test
然后,对岩土工程领域至今尚未解决,甚至不为人注意的考虑地基变形的地基承载力问题进行了实用化的探讨,提出了考虑地基变形的地基承载力上程计算方法;对基于弹塑性理论分析的地基承载力国内尚未见报道的空间问题得到了圆形基础(空间问题)的承载力界限荷载p _ ( 1 / 4 ) ,并与国内外土力学专著及地基基础设计规范中的条形基础(平面问题)的界限荷载p _ ( 1 / 4 ) ,进行了对比,从而定量上解释了目前设计规范引用土力学承载力公式值偏于保守的这一情况;根据本文作者多年从事现场地基工程振动试验及相关课题的研究工作,本文以截头锥模型模拟地基,对地基(岩基)承载力的动测法进行了研究,为各类地基(包括岩基) ,汇总了动力分析和检测川的参数:针对日前岩土工程界应用桩基设计规范中的难点? ?桩端岩基承载力的确定问题,从岩石室内单轴抗压强度确定、基于弹塑性模型的有限单元法计算、土力学计算及深斤载荷试验四方面进行了深入讨论;本文作者根据多年现场载荷试验的工程实践,对深井荷试验装置的核心部分? ?反力装置,设计了侧壁支撑反力加载系统,该加载系统具有实用、简便、稳定及安个等优点。
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