热能与动力工程专业英语第三版李瑞扬5.6 6.3 7.10 三篇的翻译
Motor vehicles are not the only air polluters. Coal and oil, used to heat homes and factories and to generate electricity, contain small amounts of sulfur. When the fuels are burned, sulfur dioxide, a poisonous gas, is produced. It is irritating to the lungs. Some cities have passed laws that allow coal and oil to be burned only if their sulfur content is low.
汽车不是唯一的空气污染。煤炭和石油,用于家庭取暖和工厂,并产生电力,含有少量的硫。当燃料燃烧,二氧化硫,一种有毒气体,就产生了。它是刺激到肺部。一些城市已通过法律,允许煤炭和石油只有在其被烧毁硫含量低。
Most electricity is generated by steam turbines. About half of the sulfur dioxide in the air comes from burning fuel to make steam. Nuclear power plants do not burn fuel, so there is no air pollution of the ordinary kind. But the radioactive materials in these plants could present a danger in an accident. Also, there is a problem in disposing of the radioactive wastes in a way that will not endanger the environment.
大部分电力是由蒸汽涡轮机。关于空气中的二氧化硫,使蒸汽一半来自燃料燃烧。核电厂不烧燃料,所以不存在的那种普通的空气污染。但是,在这些植物的放射性物质可能会提出一个意外的危险。此外,还有一个在放射性废物处置的方式,不会危害环境的问题。
Another type of pollution, called thermal (heat) pollution, is caused by both the fuel-burning and nuclear plants. Both need huge amounts of cold water, which is warmed as it cools the steam. When it is returned to the river, the warm water may stimulate the growth of weeds. It may also kill fish and their eggs, or interfere with their growth.
另一种污染类型,称为热(热)污染,是造成双方的燃料燃烧和核电厂。双方都需要的冷水,这是温暖,因为它大量的蒸汽冷却。当返回到河边,温暖的水会刺激杂草生长。它也可以杀死鱼,它们的卵,或干扰他们的成长。
Physicists are studying new ways of generating electricity that may be less damaging to the environment. In the meantime, many power plants are being modernized to give off less polluting material. Also, engineers try to design and locate new power plants to do minimum damage to the environment.
物理学家们正在研究发电对环境损害较小的新方法。与此同时,许多发电厂也在实现现代化以减少污染物质。此外,工程师们尝试设计并找到对环境的损害最小的新的发电厂。
Thermal energy and power engineering
This program is to cultivate both master thermal energy and power engineering professional basic theoretical knowledge, computing skills, but also the ability in various forms of generating power plant, refrigeration and air conditioning, new energy related fields in need of economic management knowledge and ability, can be engaged in the electric power industry related to areas of science and technology application, research, development and management of a senior talents. According to the national construction and talents needs, set up the professional direction includes: thermal power engineering, power plant set control operation, refrigeration and air conditioning engineering, gas power engineering, advanced energy engineering etc.
Major courses: theoretical mechanics, mechanics of materials, engineering thermodynamics, engineering fluid mechanics, heat transfer, turbine principle, boiler principle, thermal power plants, the pump and fan, automatic control theory, motor learning, circuit theory, the control system, unit unit operation principle, thermal process detection technology, engineering graphics, mechanical design basis, electrician technical basis, electronic technology base, refrigeration and cryogenic principle, refrigeration compressor, refrigeration automation and testing technology, gas turbine principle, gas gas-steam combined cycle power plant, gas turbine combined-cyde operation and maintenance, nuclear reactor theoretical basis, nuclear system and the maintenance, the PWR nuclear power plant system and equipment, wind power generation principle, professional class.
Employment place to go: large-scale modernized electric power enterprise, power equipment manufacturing enterprises and energy class enterprise engaged in production, operation and management work, Government departments at all levels and institution engaged in energy, power, energy saving, environmental planning, design, construction, operation, consultation and supervision worketc. Research institutes, universities in energy and power related research and development, teaching, management, etc.
Keywords. Heat pump drying. CO2 transcritical cycle. Energy-saving. Heat pipe. Newsprint. Electric Heating
能源与动力工程英语是:Energy and Power Engineering
能源与动力工程专业英语是热能与动力工程专业学生的一门重要必修课,其目的是为培养该专业学生的专业阅读与写作能力。
本课程介绍流体、热力学及热的传递、燃料燃烧、制冷空调、锅炉、汽轮机以及新能源等专业英语知识。通过本课程的学习,可以使学生掌握并熟练应用热能与动力工程技术领域中最常用的专业词汇、特有的语法现象、学术论文的写作风格及翻译技巧,从而全面提升学术的专业英语阅读、写作和听说交流能力。
培养学生掌握本专业必需的能源利用、能源工程管理、光伏产品与系统的设计、实施、应用、维护与维修及管理等基本技能;具有一定的新能源产品的分析、监测能力,掌握一般能源产品的生产、制备和检测方法。
能够了解各种新能源的操作环节、各种新能源特性和应用,并具备一定的设备、器件和系统操作技能具有在能源系统工程、能源低碳利用、能源生产过程及其相关各个领域从事科学研究、产品设计及管理工作的能力,了解其学科前沿及发展趋势,并具备创新思维和信息获取处理能力。
主要课程
现代材料科学导论、电子与电工技术、微机原理及接口技术、能源科学技术导论 、单片机原理及应用、自动控制原理、半导体硅材料基础、计算机控制技术、现代分析检测技术、能源工程管理、能源与环境系统工程概论、能源生产过程控制
最佳答案此答案由提问者自己选择,并不代表百度知道知识人的观点
回答:红蜻蜓
圣人
10月14日 23:40 属于动力学
不过每个学校的专业分类不同,我们学校里属于动力
揪错 ┆ 评论 ┆ 举报
2、如果以后想去外企(汽车行业的话),德国人较日本人歧视不会那么严重,至少在晋升方面是这样的。
3、当然,也得看你自己对两个国家那个在心理更亲近一些,毕竟这个两个国家的汽车行业都很发达。
4、也不妨去当地图书馆或者网上查找一下这两个国家的企业行业发展的水平以及在中国发展的水平。
5、还可以请教自己的老师,自己专业的还有管理学院的
以上五点衡量之后,想必答案也就出来了,加油。
This program is to cultivate both master thermal energy and power engineering professional basic theoretical knowledge, computing skills, but also the ability in various forms of generating power plant, refrigeration and air conditioning, new energy related fields in need of economic management knowledge and ability, can be engaged in the electric power industry related to areas of science and technology application, research, development and management of a senior talents. According to the national construction and talents needs, set up the professional direction includes: thermal power engineering, power plant set control operation, refrigeration and air conditioning engineering, gas power engineering, advanced energy engineering etc.
Major courses: theoretical mechanics, mechanics of materials, engineering thermodynamics, engineering fluid mechanics, heat transfer, turbine principle, boiler principle, thermal power plants, the pump and fan, automatic control theory, motor learning, circuit theory, the control system, unit unit operation principle, thermal process detection technology, engineering graphics, mechanical design basis, electrician technical basis, electronic technology base, refrigeration and cryogenic principle, refrigeration compressor, refrigeration automation and testing technology, gas turbine principle, gas gas-steam combined cycle power plant, gas turbine combined-cyde operation and maintenance, nuclear reactor theoretical basis, nuclear system and the maintenance, the PWR nuclear power plant system and equipment, wind power generation principle, professional class.
Employment place to go: large-scale modernized electric power enterprise, power equipment manufacturing enterprises and energy class enterprise engaged in production, operation and management work, Government departments at all levels and institution engaged in energy, power, energy saving, environmental planning, design, construction, operation, consultation and supervision worketc. Research institutes, universities in energy and power related research and development, teaching, management, etc.
其实考研没你想的那么麻烦,补习班之类的东西最好不要报,我个人认为白花钱。另外教授导师什么和考研准备没关系,大学不是高中,没人管你这些,自己学就行了,可以多认识一些学长学姐,他们的意见最实在不过了。
其实像你大一就做好考研的打算的话,完全可以考虑一下自己能不能换个专业,说实在的,女生考这个专业的研究生不好,尤其是电厂方向的,几乎不要女生的。
说的比较乱,希望对你有所帮助。刚上大学多和老师同学交流,考研很简单的,不要一开始就茫然,这样容易造成压力。
我是华北电力的学生,有问题给我留言。祝你成功!
传热学不是特别难,考题你会做就行,知道怎么解答,别把计算算错了就行。
祝愿考上热能系的研究生。