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1、精选优质文档-倾情为你奉上专业英语English article in Civil Engineering (土木工程专业英语课文) Lesson1 Careers in Civil Engineering Engineering is a profession, which means that an engineer must have a specialized university education. Many government jurisdictions also have licensing procedures which require engineering gradu
2、ates to pass an examination, similar to the bar examination for a lawyer, before they can actively start on their careers. specialized专门的, 专科的 jurisdiction管辖权,权限 license许可(证),执照 bar 律师业 土木工程是一个意味着工程师必须要经过 专门的大学教育的职业。许多政府管辖部门 还有(一套)认证程序,这一程序要求工科 毕业生在他们能积极地开始(从事)他们的 事业之前,通过(认证)考试, 这种考试类似 于律师职业里的律师考试一样
3、。 In the university, mathematics, physics, and chemistry are heavily emphasized throughout the engineering curriculum, but particularly in the first two or three years. Mathematics is very important in all branches of engineering, so it is greatly stressed. Today, mathematics includes courses in sta
4、tistics, which deals with gathering, classifying, and using numerical data, or pieces of information. mathematics n.数学 curriculum n.课程 branch n. (学科)分科 stress 强调 courses n.课程,路线 statistics n. 统计学,统计 deal with涉及,处理 An important aspect of statistical mathematics is probability, which deals with what m
5、ay happen when there are different factors, or variables, that can change the results of a problem. Before the construction of a bridge is undertaken, for example, a statistical study is made of the amount of traffic (which) the bridge will be expected to handle. In the design of the bridge, variabl
6、es such as water pressure on the foundation, impact, the effects of different wind forces, and many other factors must be considered handle undertake vt.承担 amount of traffic n.交通量 impact碰撞,冲击 Variable 变量 大学里, 工科课程中着重强调数学、物理, 和化学,尤其在开始的二到三年。在工科所有 分支中,数学非常重要, 因此它被着重地强调。 今天, 数学包括统计学中的课程主要涉及集合, 分类, 和使用数
7、字数据, 或信息。 统计数学的一个重要方面是概率, 它涉及当 有改变问题的结果的不同的因素, 或变量时, 可能会发生什么。例如,在承担桥梁的建设 之前, 运用统计研究来预计未来桥梁期望承受 的交通量. 在桥梁的设计中,(各种)变量如作 用在基础上的水压, 碰撞, 不同的风力的作用, 以及许多其它因素必须考虑。 Because a great deal of calculation is involved in solving these problems, computer programming is now included in almost all engineering curric
8、ula. Computers, of course, can solve many problems involving calculations with greater speed and accuracy than a human being can. But computer are useless unless they are given clear and accurate instructions and information-in other words, a good program.be involved in涉及 program 编程序,电脑程 序 curricula
9、 n.课程 instruction指令 由于在解决这些问题涉及大量的计算, 现 在几乎所有工科课程中都包括计算机编程。 当然,计算机能比人类以更快的速度和准确性 解决许多问题。但如果不给计算机清楚和准 确指令和信息,换句话说,一个好程序,它 也是无用的。 In spite of the heavy emphasis on technical subjects in the engineering curriculum, a current trend is to require students to take courses in the social science and the lan
10、guage arts. The relationship between engineering and society is getting closer; it is sufficient, therefore, to say again that the work performed by an engineer affects society in many different and important ways that he or she should be aware of. An engineer also needs a sufficient command of lang
11、uage to be able to prepare reports that are clear and, in many cases, persuasive. An engineer engaged in research will need to be able to write up his or her finding for scientific publications. command 把握, 支配, 控制-翻译时需要引申 engage in v.使从事于, 参加 write up v.详细描写 scientific publication 科技出版物 虽然,在工科课程中,对技
12、术科目着重强 调,但当前的趋势还是要求学生学习社会科 学和语言艺术的课程。工程和社会间的关系 变得更加紧密; 因此,再一次充分说明, 工程师 负责(承担)的工程在许多不同和重要的方 面影响社会,这些方面是他们所知道的。并且, 工程师需要一种很肯定(自信)语言表达方 式来准备报告,这个报告要清楚明了,且在 多数情况下, 是令人信服的。参与研究的工程 师要能为科学出版物详细描述他们的发现。 The last two years of an engineering program include subjects within the students field of specialization
13、. For the student who is preparing to become a civil engineer, these specialized courses may deal with such subjects as geodetic surveying, soil mechanics, or hydraulics. subject科目, 学科 geodetic surveying大地测量 soil mechanics n.土力学 hydraulics n.水力学 specialization 专业 最后两年的工科课程计划包括学生专业领域的学 科。为准备使学生成为一名土木
14、工程师, 这些专业 课程可能会涉及诸如大地测量、土力学,或水力学。 Active recruiting for engineers often begins before the student's last year in the university. Many different corporation and government agencies have competed for the services of engineers in recent years. In the science-oriented society of today, people who ha
15、ve technical training are, of course, in demand. Young engineers may choose to go into environmental or sanitary engineering, for example, where environmental concerns have created many openings; or they may choose construction firms that specialize in highway work; or they may prefer to work with o
16、ne of the government agencies that deal with water resource. Indeed, the choice is large and varied.近年来,许多不同的公 司和政府机构为争夺工程师而竞争。在今天 这个重视科学技术的社会,受过技术训练的 人当然是受欢迎的。年轻工程师也许选择进 入环境或卫生工程领域工作, 例如, 在环境问 题方面创造的许多机会; 或他们也许选择专门 的高速公路工程的建筑公司; 或他们也许喜欢 与政府机构当中处理水资源的机构之一共事。 的确, 选择很多且多样。 When the young engineer has
17、finally started actual practice, the theoretical knowledge acquired in the university must be applied, He or she will probably be assigned at the beginning to work with a team of engineers. Thus, on-the-job training can be acquired that will demonstrate his or her ability to translate theory into pr
18、actice to the supervisors. assign分配, 指派 on-the-job adj.在职的,现场的 demonstrate证明,示范,论证supervisor主管人,管 理人 当年轻工程师最后开始了真正的实践, 必须要运用 到大学中学到的理论知识。最初,他或她可能会被 分配到与工程队合作。从而, 他们会得到在职的培 训,这个培训将向管理人员证明他们将理论转化为 实践的能力。 The civil engineer may work in research, design, construction supervision, maintenance, or even in
19、 sales or management. Each of these areas involves different duties, different emphases, and different uses of engineer's knowledge and experience. civil engineer.土木工程师 construction supervision施工监督,施工管理 土木工程师可能在研究、设计、施工管理、 养护或者甚至销售或管理单位工作。每一个 工作领域都涉及不同的职责,不同的着重点 以及运用不同的工程理论和经验。 Research is one o
20、f the most important aspects of scientific and engineering practice. A researcher usually works as a member of a team with other scientists and engineers. He or she is often employed in a laboratory that is financed by government or industry. Areas of research connected with civil engineering includ
21、e soil mechanics and soil stabilization techniques, and also the development and testing of new structural materials. soil mechanics n.土力学 finance vt.供给.经 费, 负担经费 soil stabilization土壤加固法,研究是科学和工程实践的当中最重要的一 个方面。研究员通常作为一个团队的成员与 其它科学家和工程师一起合作。他或她经常 受雇于政府或企业提供经费的实验室。与土 木工程相关的研究领域包括土力学和土壤加 固技术, 并且还包括新结构材
22、料的开发和实验。 Civil engineering projects are almost always unique; that is, each has its own problems and design feature. Therefore, careful study is given to each project even before design work begins. The study includes survey both of topography and subsoil features of the proposed site. It also inclu
23、des a consideration of possible alternatives, such as a concrete gravity dam or an earth-fill embankment dam. The economic factors involved in each of the possible alternatives must also be weighed. Today, a study usually includes a considerations of the environmental impact of the project. Many eng
24、ineers, usually working as a team that includes surveyors, specialists in soil mechanics, and experts in design and construction, are involved in making these feasibility studies. Weighed 的翻译-斟酌 topography n. 地形,地形学 subsoil天然地基,下层土,底土 concrete gravity dam 混凝土重力式坝 embankment dam n.填筑坝,土石坝 specialist
25、专家 feasibility study可行性研究 土木工程项目几乎是唯一(独一)的; 就是 说,每个工程有它自己的难题和设计特点。 所以, 在设计工作开始以前,要仔细的研究每 个项目。研究包括勘测工程位置的地形和地 基特点。它还包括考虑可能的比选方案, 譬如 一个混凝土重力式坝或填土的土石坝。经济 因素与在每个可能的比选方案有关,也必须 斟酌。今天, 研究通常包括项目的环境影响的 考虑。许多工程师, 通常在一起工作组成一个 团队,这个团队包括测量员、土力学方面的 专家和设计施工方面的专家,来参与制定这 些可行性研究。 Many civil engineers, among them the
26、top people in the field, work in design. As we have seen, civil engineers work on many different kinds of structures, so it is normal practice for an engineer to specialize in just one kind. In designing buildings, engineers often work as consultants to architectural or construction firms. Dams, bri
27、dges, water supply systems, and other large projects ordinarily employ several engineers whose work is coordinated by a system engineer who is in charge of the entire project. In many cases, engineers from other disciplines are involved. In a dam project, for example, electrical and mechanical engin
28、eers work on the design of the Powerhouse and its equipment. In other cases, civil engineers are assigned to work on a project in another field; in the space program, for instance, civil engineers were necessary in the design and construction of such structures as launching pads and rocket storage f
29、acilities. consultant n.顾问, 商议者, 咨询者 water supply system 给水系统 coordinate 协同 system engineer n.系统工程师 discipline学科 powerhouse n.发电站 launching pad n.导弹或火箭发射场, 发射台 storage facility贮存设备 许多土木工程师在设计领域工作,他们中的许多人 是这个行业的佼佼者。正如我们所见,土木工程师 研究许多不同的结构, 因此工程师专门研究一类结 构是通常的做法(一般的惯例)。在建筑设计中, 工程师经常作为建筑或结构公司的顾问。水坝、桥 梁、给
30、水系统, 和其它大项目通常;聘用几位系统 工程师(总工程师) ,他们的工作是协助负责整个 项目。在许多情况下, 也需要(涉及)其它学科的 工程师。例如,在水坝项目中, 电子和机械工程师负 责发电站及其设备的设计。在其它情况下, 土木工 程师被分配到其它领域的项目上工作; 例如,在空间 项目中, 需要土木工程师设计和施工诸如发射台和 火箭存贮设施这样的结构。Construction is a complicated process on almost all engineering projects. It involves scheduling the work and utilizing t
31、he equipment and the materials so that costs are kept as low as possible. Safety factors must also be taken into account, since construction can be very dangerous. Many civil engineers therefore specialize in the construction phase. Scheduling n 行程安排, 进度安排 utilize 利 用,使用 take into account 考虑,重视 civi
32、l engineer n.土木工程师 specialize in vt.专攻, 专门研究construction phase 施工阶段 在几乎所有土木工程项目中,施工是复杂的 过程。它包括项目的进度安排和设备的使用 以及材料,以便使得造价尽可能降低。必须 考虑安全因素,因为施工很危险。许多土木 工程师因此专门研究施工阶段。 Lesson2Modern Buildings and Structural Materials 现代建筑及结构材料 Many great buildings (that are) built in the earlier ages are still in existen
33、ce and in use. Among them are the Pantheon and the Colosseum in Rome, Hagia Sophia in Istanbul; the Gothic churches of France and England, and the Renaissance cathedrals, with their great domes, like the Duomo in Florence and St. Peter's in Rome. They are massive structures with thick stone wall
34、s that counteract the thrust of their great weight. Thrust is the pressure exerted by each part of a structure on its other parts. Pantheon 帕提侬神庙 Colosseum n.罗马圆形大剧场,角斗场 Hagia Sophia 圣索非亚教堂 Istanbul 伊斯坦布儿(土耳其首都) renaissance文艺复兴时期 cathedral n.大教堂 gothic church n.哥特式教堂 dome n.圆屋顶,穹顶 duomo n.大教堂, 中央寺院
35、Florence 佛罗伦萨 St. Peters 圣彼得大教堂 massive adj.厚重的, 大块的, 魁伟的, 结实的 counteract vt.抵消,对抗 thrust 推力引申为轴向压力 exert 施加(压力等) ,作用,施加 许多伟大的建筑很早就修建了现在仍然还 存在并在使用中。在他们之中就包括希腊的 帕提侬神庙和罗马的角斗场,伊斯坦布尔的 圣索非亚教堂; 法国和英国哥特式教会, 和有 着宏伟圆顶的文艺复兴时期大教堂,如佛罗伦 萨的中央寺院和罗马的圣彼得大教堂。他们 是使用厚重石头墙体来抵消他们巨大自重的 巨型结构。轴向压力来自于结构的其它部份 对其的传导。 These gre
36、at buildings were not the product of knowledge of mathematics and physics. They were constructed instead on the basis of experience and observation, often as the result of trial and error. One of the reasons they have survived is because of the great strength that was built into them-strength greate
37、r than necessary in most cases. But the engineers of earlier times also had their failure. In Rome, for example, most of the people lived in insulae, great tenement blocks that were often ten stories high. Many of them were poorly constructed and sometimes collapsed with considerable loss or life. 第
38、二段 生词 instead adv. 不是.而是,代替,当作, trial and error n.反复试验,不断摸索 insulae 公寓,群屋 tenement block n. 经济公寓 poorly adv. 拙 劣地,贫乏地 considerable adj.相当大(或多)的 collapse n.倒塌,崩塌 这些伟大的建筑不是数学和物理知识的产 物。而是根据经验和观察建造的, 经常是不断 摸索的产物。他们依然存在的原因之一是由 于被修建得能承受很大的力量-在许多情况 下大于他们需要的力量。但更早的时期的工 程师也有过失败。例如,在罗马, 大多数人民 , , 居住在公寓里, 大的经济
39、公寓经常有十层楼高。 许多修建得很拙劣且不时倒塌,造成了了相 当大的财产或生命损失。 Today, however, the engineer has the advantage not only of empirical information, but also of scientific data that permit him to make careful calculations in advance. When a modem engineer plans a structure, he takes into account the total weight of all its
40、 component materials. This is known as the dead load, which is the weight of the structure itself, He must also consider the live load, the weight of all the people, cars, furniture, machines, and so on that the structure will support when it is in use. In structures such as bridges that will handle
41、 fast automobile traffic, he must consider the impact, the force at which the live load will be exerted on the structure, He must also determine the safety factor, that is, an additional capability to make the structure stronger than the combination of the three other factors. empirical adj.完全根据经验的,
42、 经验主义的 in advance 提前;预先 plan vt.计划, 设计 take into account v.重视, 考虑 component adj.组成的, 构成的n.成分 dead load 恒载,永久荷载 live load 活载,活荷载 handle 处理,操作-承受 automobile 汽车 impact n.碰撞, 冲击,撞击 safety factor n.安全系数 exert 作用,施加(压力等) 然而,今天工程师不仅有经验信息的优势, 而且还有科学数据,允许他在事先进行仔细 的计算。当现代工程师设计一个结构时,他 要考虑所有组成材料的总重量。这就是所说 的恒载,他
43、是结构自身的重量,他还必须考 虑活载,即所有人群、汽车, 家具, 机器, 等等 结构在使用中需要承受的荷载。结构,比如 桥梁将要承受高速的汽车通行(行使),它 必须考虑冲力力,这个力是活载作用在结构 上的。他还必须确定安全因素,也即是,额 外的承载能力以确保结构的强度大于这三个 其他因素的组合作用。 The modern engineer must also understand the different stresses to which the materials in a structure are subject. These include the forces of compre
44、ssion and tension. In compression the material is pressed or pushed together; in tension the material is pulled apart or stretched, like a rubber band. In addition to tension and compression, another force is at work, namely shear, which we defined as the tendency of a material to fracture along the
45、 lines of stress. The shear might occur in a vertical plane, but it also might run along the horizontal axis of the beam, the neutral plane, where there is neither tension nor compression. Subject使受到, 使遭到 compression 压力,压缩 tension拉力 Press 挤压,受压 pull apart v.撕开 stretch v.伸展, 伸长 rubber band n.橡皮圈 at w
46、ork adv.在工作, 在运转,在起作用 shear 剪力 fracture v.(使)破碎, (使)破裂,断裂 vertical plane n.垂直面 horizontal axis水平轴 neutral plane中性面 现代工程师还要知道结构中材料承受的不 同的力。这些力包括压力和拉力这对互反的 力。受压时,材料受到挤压或是被推倒一起; 受拉时,材料被撕开或是被拉长,就像一根 橡皮圈。除了拉力和压力以外,还有另一种 力作用于结构上,也就是剪力,我们定义使 材料趋于沿着力的作用线断裂的力为剪力。 剪力可能在垂直面作用,但是也有可能沿着 梁的水平轴,既不受拉也不受压的中性轴作 用。 Al
47、together, three forces can act on a structure: vertical-those that act up or down; horizontal-those that act sideways; and those that act upon it with a rotating or turning motion. Forces that act at an angle are a combination of horizontal and vertical forces. Since the structures designed by civil
48、 engineers are intended to be stationary or stable, these forces must be kept in balance. The vertical forces, for example, must be equal to each other. If a beam supports a load above, the beam itself must have sufficient strength to counterbalance that weight. The horizontal forces must also equal
49、 each other so that there is not too much thrust either to the right or to the left. And forces that might pull the structure around must be countered with forces that pull in the opposite direction. act on v.对.起作用,作用于 act 产生.的效果,担当,见效 vertical 垂直的 horizontal 水平的 sideways adv.向一旁 rotating转动的, 旋转的 tu
50、rning n.旋转, 转向 motion n.运动, 动作 stationary固定的 stable adj.稳定的 counterbalance vt使平衡 thrust 推力 opposite direction相反方向,反向 总之,这三个力会作用在结构上:竖直的-那些向上或向下作用的力;水平的那些向 一侧作用的力;以及那些使旋转或转动的作 用力。以一个角度作用的力是水平力和竖向 力的合力。因为由土木工程师设计的结构要 固定或者稳定,这些力必须保持平衡。例如, 竖向力必须相互平衡。如果一片梁要支撑作 用在其上的荷载,梁自身必须要有足够的强 度来平衡这个重量。水平力也必须相互平衡 以使得没
51、有向左或向右的太大推力。以及那 些可能使结构转动的力必须和相反方向转动 的力相平衡。 One of the most spectacular engineering failures of modern times, the collapse of the Tacoma Narrows Bridge in 1940, was the result of not considering the last of these factors carefully enough. When strong gusts of wind, up to sixty-five kilometers an hour
52、, struck the bridge during a storm, they set up waves along the roadway of the bridge and also a lateral motion that caused the roadway to fall. Fortunately, engineers learn from mistakes, so it is now common practice to test scale models of bridges in wind tunnels for aerodynamic resistance. Specta
53、cular 轰动一时的 Tacoma 塔科马美国华盛顿州西部港市 Narrows 纽约湾海峡(位于美国),海峡 gust of wind阵风 strike撞击, 冲击 lateral motion横向运动, 侧摆 scale model缩尺模型,几何相似模型 wind tunnel n.风洞 aerodynamic resistance空气动力阻力 桥梁史上最有名的事故之一。 美国华盛顿州Tacoma Narrows大桥倒塌的录 像。 这次事故令桥梁的设计规范重新修改,风力 和共振分析成为桥梁设计必不可少的一部分。 这次事故之所以有名,还在于大桥的倒塌过 程被人录了下来。当时有一对新人正在桥头
54、 举行婚礼,摄影师本来是去拍喜庆场面的, 不想却记录了一座大桥的末日。大桥在风中 扭动的场面令人震撼,只使用了三个月。主 跨853m。 现代最为轰动一时的工程事故之一:1940 年的Tacoma Narrows大桥,就是因为对这些 因素的最后一个因素:扭转考虑的不够仔细 而导致的结果。当时在一次暴风雨中,时速 达到65公里每小时的强阵风冲击着大桥,他 们把大桥沿行车道吹成波浪形加上横向扭动 导致大桥的行车道落水。幸运的是,工程师 从错误中吸取教训,因此现在通常要在风洞 试验室中进行桥梁的缩尺模型试验以确定其 空气动力阻力。 The principal construction material
55、s of earlier times were wood and masonry brick, stone, or tile, and similar materials. The courses or layers were bound together with mortar or bitumen, a tar-like substance or some other binding agent. The Greeks and Romans sometimes used iron rods or clamps to strengthen their buildings. The colum
56、ns of the Parthenon in Athens, for example, have holes drilled in them for iron bars that have now rusted away. The Romans also used a natural cement called pozzolana, made from volcanic ash, that became as hard as stone under water. principal adj.主要的, 首要的 masonry砌石 brick砖 tile 瓦 course行列, 层 layer n
57、.层 mortar砂浆,灰浆 bitumen n.沥青 tar焦油, 柏油,焦油沥青 binding agent虫胶粘合剂,接合剂 rod n.杆, 棒 clamp n.夹子, 夹具, 夹钳 drill 钻孔 rust 生锈 natural cement天然水泥 pozzolana n.火山灰(可用作水泥原料) volcanic ash 火山灰 早期主要的建筑材料是木材和砌石砖,石头 或是瓦片以及类似这类的材料。用砂浆或是 沥青,一种类似焦油的物质或是其他粘合剂 将各层结合在一起。希腊人和罗马人有时使 用铁杆或是夹子来加强他们的建筑。例如, 希腊帕提农神庙的立柱,为了插铁棒在立柱 中钻孔,这些
58、铁棒现在已经锈蚀了。罗马人 也使用称为火山灰的天然水泥,从火山灰中 制成,当在水中时就会变得和石头一样硬。 Both steel and cement, the two most important construction materials of modern times, were introduced in the nineteenth century. Steel, basically an alloy of iron and a small amount of carbon, had been made up to that time by a laborious process
59、that restricted it to such special uses as sword blades. After the invention of the Bessemer process in 1856, steel was available in large quantities at low prices. The enormous advantage of steel is its tensile strength; that is, it does not lose its strength when it is under a calculated degree of tension, a force which, as we have seen, tends to pull apart many materials. New alloys have further increased the strength of steel and eliminated some of its problems, such as fatigue, w
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