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土木工程英文期刊参考文献

[1] Allen H G and Bulson P SBackground to Bucking London Mcraw-Hill(UK) 1980 [2] D I Keli Lan Yang A Project Management Strategy and I China Machine Press 2002 (The first edition)

外文文献自己去sciencedirect,springerlink等外文数据库下载啊去自己的学校图书馆主页会找到很多外文数据库的中文文献到知网,维普等中文数据库下载,主页上也会有很多其他的上面的下载方式很多的,但只有在校园网内免费获取校园网外可以利用google学术搜索,有部分能免费下载另外还可以在百度文库等共享网站上找找

外文原文可以去检索下载中文要自己搞定了~~~还有疑问联系我

土木工程英文参考文献

你是哪个省的啊 看看如果可以的话 可以给你一份全面的

土木工程的英文是Civil Engineering ,直译是民用工程,它是建造各种工程的统称。它既指建设的对象,即建造在地上,地下,水中的工程设施,也指应用的材料设备和进行的勘测,设计施工,保养,维修等专业技术。土木工程随着人类社会的进步而发展,至今已经演变成为大型综合性的学科,它已经出许多分支,如:建筑工程,铁路工程,道路工程,桥梁工程,特种工程结构,给水排水工程,港口工程,水利工程,环境工程等学科。土木工程共有六个专业:建筑学,城市规划,土木工程,建筑环境与设备工程,给水排水工程和道路桥梁工程。土木工程作为一个重要的基础学科,有其重要的属性:综合性,社会性,实践性,统一性。土木工程为国民经济的发展和人民生活的改善提供了重要的物质技术基础,对众多产业的振兴发挥了促进作用,工程建设是形成固定资产的基本生产过程,因此,建筑业和房地产成为许多国家和地区的经济支柱之一。古代的土木工程有很长的时间跨度,大致从公元前500年新石器时代出现原始的土木工程活动到16世纪末意大利的文艺复兴,导致土木工程走上迅速发展的道路为止,前后经历了两千多年。在这段时间内,由于科学理论发展及其缓慢,土木工程也没有突破习惯的发展。从17世纪中页开始到20 世纪40年代第二次世界大战结束为止的300年间,国外的建筑取得了长足的进步。土木工程进入了定量分析阶段。一些理论的发展,新材料的出现,新工具的发明,都使土木工程科学日渐完善和成熟。到了近代,二战结束之后,许多国家经济起飞,现代科学日益进步,从而为进一步发展提供了强大的动力和物质基础。人们生活水平的不断提高,必然要求越来越舒适的居住环境,在这种情况下,建筑的发展直接推动了土木工程的发展。总的来说土木工程是一门古老的学科,它已经取得了巨大的成就,未来的土木工程将在人们的生活中占据更重要的地位。地球环境的日益恶化,人口的不断增加,人们为了争取生存,为了争取更舒适的生存环境,必将更加重视土木工程。在不久的将来,一些重大项目将会陆续兴建,插入云霄的摩天大楼,横跨大样的桥梁,更加方便的交通将不是梦想。科技的发展,以及地球不断恶化的环境必将促使土木工程向太空和海洋发展,为人类提供更广阔的生存空间。近年来,工程材料主要是钢筋,混凝土,木材和砖材,在未来,传统材料将得到改观,一些全新的更加适合建筑的材料将问世,尤其是化学合成材料将推动建筑走向更高点。同时,设计方法的精确化,设计工作的自动化,信息和智能话技术的全面引入,将会是人们有一个更加舒适的居住环境。一句话,理论的发展,新材料的出现,计算机的应用,高新技术的引入等都将使土木工程有一个新的飞跃English is the Civil Engineering Civil Engineering, civil engineering is literally, it is the construction of the project It means building objects that the construction on the ground, underground, water works facilities, equipment and materials to use in surveying, design construction, maintenance, repair and other professional Civil Engineering with the progress of the human society, has been transformed into large integrated disciplines, it has a number of branches, such as : construction, rail projects, road projects, bridge projects, special project structure, water drainage works, the port project, water, environmental engineering A total of six professional Civil Engineering : architecture, urban planning, civil engineering, construction and environmental engineering equipment, water drainage works and road bridge Civil Engineering as an important foundation subjects, its important attribute : an integrated, social, practicality, Civil Engineering for the development of the national economy and improve the living standards of the people provided important material and technological foundation for the revitalization of many industries played a catalytic role in the construction of fixed assets is a basic production process, the construction and real estate in many countries and regions become a pillar of the economyAncient Civil Engineering has a long time span, roughly 500 years before Christ from the original date in civil engineering activities to the 16 century Italian Renaissance, resulting in the rapid development of the Civil Engineering on the road today, and has experienced more than 2,000 During this period, due to the development of scientific theories and slow, there is no breakthrough in civil engineering Century from 17 pages to 40 years in the 20th century end of the Second World War 300 years, foreign construction made great Civil Engineering has entered a phase of quantitative Some theoretical development, the emergence of new materials, new tools of invention, the Civil Engineering Science is perfection and In modern times, after the end of World War II, many countries economic takeoff, the increasing advances of modern science, so as to provide a powerful impetus to further development and material People's living conditions continue to improve, more and more comfortable living environment for the inevitable in the circumstances, the construction of development directly to the Civil Engineering

[1] Allen H G and Bulson P SBackground to Bucking London Mcraw-Hill(UK) 1980 [2] D I Keli Lan Yang A Project Management Strategy and I China Machine Press 2002 (The first edition)

backing up slowly, choosing to leave his gun trained on the man on the As Grouard inchedbackward, he could see the woman across the room raising her UV li

土木工程参考文献英文

backing up slowly, choosing to leave his gun trained on the man on the As Grouard inchedbackward, he could see the woman across the room raising her UV li

我毕业设计的时候翻译过英文论文,不过只有3000字,不知道行不行,如果需要给我发信息。

[1] Allen H G and Bulson P SBackground to Bucking London Mcraw-Hill(UK) 1980 [2] D I Keli Lan Yang A Project Management Strategy and I China Machine Press 2002 (The first edition)

你是哪个省的啊 看看如果可以的话 可以给你一份全面的

土木工程英文期刊文献

求一篇英语4000字原作? 文献?在很多大学发表一篇英语期刊奖金上万元。

[1] Allen H G and Bulson P SBackground to Bucking London Mcraw-Hill(UK) 1980 [2] D I Keli Lan Yang A Project Management Strategy and I China Machine Press 2002 (The first edition)

SCC formwork pressure: Influence of steel rebars  Abstract  The formwork pressure exerted by a given Self Compacting Concrete (SCC) depends on its thixotropic behavior, on the casting rate and on the shape of the It can moreover be expected that, in the case of a formwork containing steel rebars, these should also play a In first part, the specific case of a cylindrical formwork containing a single cylindrical steel rebar is In second part, a comparison of the theoretical predictions to the experimental measurements of the pressure drop, after the end of casting SCC, was determined and the proposed model was Finally, an extrapolation is suggested of the proposed method to the case of a rectangular formwork containing a given horizontal section of steel rebars, which could allow the prediction of the formwork pressure during   Keywords: Fresh concrete; Rheology; Workability; Formwork presure; Thixotropy   Introduction  In most of the current building codes or technical recommendations [1], [2], [3] and [4], the main parameters affecting formwork pressure during casting are the density of concrete, the formwork dimensions, the pouring rate of concrete, the temperature, and the type of   However, it was recently demonstrated that, in the case of SCC, the thixotropic behaviour of the material played a major role [5] P Billberg, Form pressure generated by self-compacting concrete, Proceedings of the 3rd International RILEM Symposium on Self-compacting Concrete, RILEM PRO33 Reykjavik, Iceland (2003), 271–[5], [6], [7] and [8] It can be noted that this influence is in fact indirectly taken into account in the above empirical technical recommendations via the effect of temperature and type of the binder, which are both strongly linked to the ability of the material to build up a structure at rest [9], [10] and [11]  During placing, the material indeed behaves as a fluid but, if is cast slowly enough or if at rest, it builds up an internal structure and has the ability to withstand the load from concrete cast above it without increasing the lateral stress against the It was demonstrated in [7] and [8] that, for a SCC confined in a formwork and only submitted to gravity forces, the lateral stress (also called pressure) at the walls may be less than the hydrostatic pressure as some shear stress τwall is supported by the It was also demonstrated that this shear stress reached the value of the yield stress, which itself increased with time because of Finally, if there is no sliding at the interface between the material and the formwork [8], the yield stress (not less or not more) is fully mobilized at the wall and a fraction of the material weight is supported (vertically) by the The pressure exerted by the material on the walls is then lower than the value of the hydrostatic   Based on these results, the model proposed by Ovarlez and Roussel [7] predicts a relative lateral pressure σ′ ( ratio between pressure and hydrostatic pressure) at the bottom of the formwork and at the end of casting equal to:  (1)and a pressure drop Δσ′(t) after casting equal to:  (2)where H is the height of concrete in the formwork in m, Athix the structuration rate in Pa/s [10], R is the casting rate in m/s, e is the width of the formwork in m, g is gravity, t is the time after the end of casting and ρ is the density of the   As it can be seen from the above, the key point for the pressure decrease is that the shear stress on each vertical boundary of the formwork equals the static yield stress of the It can then be expected that, in the case of a formwork containing steel rebars, the stress at the surface of the rebars should also play a It is the objective of this paper to start from the model developed by Ovarlez and Roussel [7] and extend it to the case of reinforced As the steel rebars should have a positive effect on formwork design ( decreasing the formwork pressure), this could allow for a further reduction of the formwork   In first part, the specific case of a cylindrical formwork containing a single cylindrical steel rebar is In second part, a comparison of the theoretical predictions to the experimental measurements of the pressure drop, after the end of casting SCC, is determined and the proposed model is Finally, an extrapolation is suggested of the proposed method to the case of a rectangular formwork containing a given horizontal section of steel rebars, which could allow the prediction of the formwork pressure during    Influence of a vertical steel bar on the pressure decrease inside a cylindrical formwork  In this paper, SCC is considered as a yield stress material (in first step, thixotropy is neglected), and, for stresses below the yield stress, SCC behaves as an elastic material [7] In the following, cylindrical coordinates are used with r in the radius direction; the vertical direction z is oriented downwards (see F 1) The top surface (upper limit of the formwork) is the plane z = 0; the formwork walls are at r = R The bottom of the formwork is located at z = H An elastic medium of density ρ is confined between the cylindrical formwork and an internal cylindrical steel rebar defined by the boundary (r = rb) For the boundary condition, the Tresca conditions are imposed everywhere at the walls ( it is assumed that the shear stress at the walls is equal to the yield stress τ00 as argued by Ovarlez and Roussel [7] and demonstrated in [8]) In order to compute the mean vertical stress σzz(z) in the formwork, the static equilibrium equation projected on the z axis on an horizontal slice of material confined between two coaxial rigid cylinders can be written:   Evaluation of the structuration rate of SCC at rest   The vane test  The yield stress of the studied SCC was measured using a concrete rheometer equipped with a vane The vane geometry used in this study consisted of four 10 mm thick blades around a cylindrical shaft of 120 mm The blade height was 60 mm and the vane diameter was 250 The gap between the rotating tool and the external cylinder was equal to 90 mm which is sufficiently large to avoid any scaling effect due to the size of the gravel (Dmax = 10 mm here)  Tests were performed for four different resting times after mixing on different samples from the same Of course, working with the same batch does not allow for the distinction between the non-reversible evolution of the behavior due to the hydration of the cement particles and the reversible evolution of the behavior due to thixotropy [9] and [10] It can however be noted that the final age of the studied system ( from the beginning of the mixing step to the last vane test measurement) was of the order of 70 Although Jarny et [13] have recently shown, using MRI velocimetry, that a period of around 30 min exists, for which irreversible effects have not yet become significant compared to reversible ones, the final age of the system in the present study was over this However, no strong stiffening nor softening of the sample was visually spotted nor measured as it will be shown Finally, the data analysis proposed by Estellé et [14] was used for the yield stress    The plate test  The plate test appears to be a very convenient method to monitor the apparent yield stress evolution of a thixotropic material with It was first developed and used in [8] but more details about its application to other materials than cement can be found in [15]  The device is composed of a plate rigidly attached below a The plate is lowered into a vessel containing the SCC ( F 2) The apparent mass of the plate is continuously monitored versus time by recording the balance output with a The balance measurements have an uncertainty of ± 01 The vessel was made of smooth PVC and was cylindrical with a diameter of 200 mm and 200 mm in The plate was placed along the cylinder During the tests, the vessel was filled with material to a height of 200 The plate used was 3 mm thick, 75 mm wide and 100 mm It was covered with sand paper with an average roughness of 200 µ The sand paper was used to avoid any slippage between the material and the plate [8] The distance between the plate and the vessel walls was large enough compared to the size of the constitutive particles that the material can be considered as homogeneous [16] and [17] The height H of the immersed portion of the plate was measured before the start of the To ensure that all tests start with the suspension in similar condition, vibration was applied (frequency of 50 Hz, amplitude of 5 mm) for 30 This step is critical in order to ensure tests Variations between tests performed on the same material in the same experimental conditions were then less than 5%  --------------------------------------------------------------------------------  Full-size image (22K)  F Schematic of the plate   View Within Article  The plate test analysis is based on the fact that the slight deformation of the cement paste under its own weight allows for the transfer of a part of this weight to the plate by the mobilization of a shear stress on the This shear stress is equal to the maximum value physically acceptable, which is the yield stress (more details were given in [8], [15], [16] and [17]) The variation in apparent yield stress with time can then be calculated from the measured apparent mass evolution of the plate with time using the following relation:  (9)Δτ0(t)=gΔM(t)/2Swhere ΔM(t) is the measured variation in the apparent mass of the plate and S is the immerged    Laboratory cylindrical formworks  Two columns were simultaneously filled with the studied SCC The columns were made of the same PVC covered with the same sand paper as the plate The columns inner diameters were equal to 100 Each column was 1300 mm The thickness of the plastic wall was 3 A 25 mm diameter steel bar was introduced in the second column (F 3)

土木工程期刊英文文献

[1] Allen H G and Bulson P SBackground to Bucking London Mcraw-Hill(UK) 1980 [2] D I Keli Lan Yang A Project Management Strategy and I China Machine Press 2002 (The first edition)

土木工程常用英文期刊集粹土木工程常用英文期刊集粹Chaos, Solit***** and Fractals Computer Methods in Applied Mechanics and Engineering Computers and Structures Engineering Structures European Journal of Mechanics - A/Solids Finite Elements in Analysis and Design International Journal of Non-Linear Mechanics International Journal of Solids and Structures Journal of Wind Engineering and Industrial Aerodynamics Probabilistic Engineering Mechanics Reliability Engineering and System Safety Soil Dynamics and Earthquake Engineering Structural Safety Thin-Walled Structures ASCE Journal of Engineering Mechanics Journal of Structural Engineering Academic Press Journal of Sound and Vibration IOS Press Shock and Vibration ASME Journal of Applied Mechanics Applied Mechanics Review John Wiley&S*****, L International Journal for Numerical Methods in Engineering, Earthquake Engineering and Structural Dynamics Spring-Verlag Archive of Applied Mechanics Computational Mechanics Structural Optimization Kluwer Academic Publishers Nonlinear Dynamics AIAA AIAA Journal ACI Structural Journal Canadian Journal of Civil Engineering Civil Engineering and Environmental Systems Structural engineering and Mechanics 所列期刊基本上都是属于SCI检索范围 属土木类的顶级刊物,搞科研不可不看哦田间阡陌2010-05-14 10:44我是搞桥梁抗震的:1 Bulletin of Earthquake Engineering(Springer)《地震工程通报》刊载地震工程研究方面的原始论文及跨学科文章。2 Bulletin of the Seismological Society of America (GSW)《美国地震学会通报》美国地震学会刊物,刊载地震学、地震工程及相关领域研究论文。在地震学核心刊物中排名第18。2004年影响因子IF:8123 Canadian Geotechnical Journal (Canada NRC) 《加拿大土工杂志》是世界上地球勘察领域的三大学术期刊之一。其内容涉及地层基础,挖掘,土壤资源,水坝,筑堤,斜坡,地下水利的新发展,岩石工程,地球化学,废物管理和输送,土壤冻结,结冰,下雪,海岸土壤以及地缘战略学。4 Clay Minerals (GSW) 《粘土矿物》刊载粘土与粘土矿物分析、物理与化学性质、地质与土壤研究以及粘土矿的利用等方面的研究论文。在矿物学核心刊物中排名第12位,2005年影响因子IF:1845 Computational Geosciences (Springer) 《计算地球科学》 刊载以数学模拟、仿真模拟、数据分析、形象化、反演等手段研究地球科学的高质量论文。6 Disasters (Wiley Black) 《灾害》刊载研究各种自然灾害(地震、洪水、热带风暴等)的预防政策制定及其实施等方面学术论文、实地研究文章、会议报告和书评。7 Earthquake Engineering and Structural Dynamics (Wiley) 《地震工程与结构动力学》 国际地震工程学会会刊。发表地震工程及其他动力负荷形式的研究文章,涉及地震频度、地面运动、土壤扩展与破坏、动力学分析方法、结构实验性能、震情分析等,兼载书评与会议消息。8 Natural Hazards (Springer) 《自然灾害》刊载自然灾害和技术性灾害的物理问题、灾难事件预测统计学、风险评价、灾害先兆的性质等方面的研究论文、评论、实例分析等,兼及相关的社会与政治问题及学术界动态。9 Natural Hazards Observer (NH R & A I Center) 《自然灾害观察者》报道地震、洪水等自然灾害的研究、计划与活动。10 Nonlinear Processes in G (AGU) 《地球物理学中的非线性过程》主要刊登以下两方面真正有创造性贡献的文章:动力学系统理论和应用非线性方法研究地球物理学基础问题。11Quarterly Journal of Engineering Geology & Hydrogeology (GSW) 《工程地质学与水文地质学季刊》伦敦地质学会(GSL)刊物,刊载地质学在土木工程、采矿及水资源开发等领域的应用论文与评论。2004年影响因子IF:8912Rock Mechanics and Rock Engineering (Springer) 《岩石力学与岩石工程》刊载工程地质学、岩石工程、土壤力学、岩石力学等领域的实验、理论和应用方面的研究论文。我看了一下楼主列出的期刊,里面没有的我就补充了一下,这里给出的是我常用到的,主要是地震学、灾害学、地震工程学方面,大家可以看一看。如果有重复的,可能是我没有看仔细,还请见谅。

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