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热能与动力工程的英语翻译是什么

现代的小甜瓜
纯真的外套
2022-12-30 14:07:35

热能与动力工程的英语翻译是什么

最佳答案
聪慧的钢笔
贪玩的奇迹
2026-04-05 00:57:08

热能的英文名称为“Heat”

动力工程的英文名称为“Engineering ”

有一个在线翻译工具非常好用,你不但可以用它来翻译词语,而且还可以进行全文翻译。

最新回答
陶醉的皮带
俏皮的香烟
2026-04-05 00:57:08

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

哭泣的小馒头
爱听歌的果汁
2026-04-05 00:57:08
一、这个专业在国外一般按照具体的专业方向归属在机械学院School of Mechanical Engineering 和化工学院School of Chemical Engineering。

二、热能与动力工程的简单介绍:

“热能与动力工程”是多门科学技术的综合,其中包括现代能源科学技术,信息科学技术和管理技术等,主要涉及热能动力设备及系统的设计、运行、自动控制、信息处理、计算机应用、环境保护、制冷空调、能源高效清洁利用和新能源开发等工作,面向及培养知识面广、基础扎实、创新能力强的复合型高级人才。

三、热能与动力工程的方向:

(1)以热能转换与利用系统为主的热能动力工程及控制方向(含能源环境工程、新能源开发和研究方向);

(2)以内燃机及其驱动系统为主的热力发动机及汽车工程,船舶动力方向;

(3)以电能转换为机械功为主的流体机械与制冷低温工程方向;

(4)以机械功转换为电能为主的火力火电和水利水电动力工程方向。

腼腆的小虾米
明亮的白开水
2026-04-05 00:57:08
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.

繁荣的网络
欢喜的红牛
2026-04-05 00:57:08
貌似热能与动力工程研究的传热学、工程热物理、流体力学等。而内燃机只是工程热物理透平方向一个很小的面,你还是改改吧,

至于“研究如何把燃料的化学能和液体的动能安全、高效、低(或无)污染地转换成动力的基本规律和过程,研究转换过程中的系统和设备的自动控制技术。”就更离谱了,完全对燃烧学和热力学一点概念都没有

Institute of Engineering Thermophysics grew out of the Power Laboratory of Chinese Academy of Sciences established in 1956 by Professor Wu Chunghua, a world famous scientist and the creator of the theory of three-dimensional flows in turbomachinery. After more than five decades,development, it has become a high-tech institute in both applied science and research development. According to the demands of the development of the branch of learning, economic construction and the high-tech development in energy resources, the institute has succeeded in adjusting its research from aero-engine to energy resources and power engineering, and from energy resources and power engineering to energy resources, power engineering and environment protection. At the same time, the institute has grown stronger and stronger, made great contribution to the development of economy, society as well as the safety and scientific discipline construction of the country. At present, there are 166 staffs in the institute, including two academicians of Chinese Academy of Sciences. The institute has master,s degree and Ph.D degree programs of the first-tier discipline--- Power Engineering and Engineering Thermophysics and master,s degree program of the second tier--- Environment Engineering and also has a mobile station of postdoctoral program

眼睛大的音响
柔弱的电话
2026-04-05 00:57:08
The heat pump-composite electric heating devices were studied. A heat pump system will be used in the drying process of newsprint new process, on the heat pump system and the optimization of design. CO2 transcritical cycle characteristics, and electric heating joint drying, unlike the traditional heat pump drying temperature lower shortcomings, and the introduction of heat pipe heat recovery, reducing the load electric heater. With the traditional newsprint drying system, its high rate of dehumidification, energy utilization, and high and closed circle is an ideal energy-saving and environmentally friendly dry-type device. Of the various components of the system for the form, material selection, and the basis for design calculations for that specific structure and size, for the design and manufacture of devices to provide reference data .

Keywords. Heat pump drying. CO2 transcritical cycle. Energy-saving. Heat pipe. Newsprint. Electric Heating

朴实的向日葵
狂野的咖啡豆
2026-04-05 00:57:08

热能与动力工程专业。

热动专业是培养德、智、体全面发展的具有一定科研能力和创新能力的高级工程技术人才的专业。

学生在校期间获得热能动力工程有关设备运行和管理的基本训练,掌握本专业必需的基础理论、专业技术和热能动力设备的运行、维护和管理的知识,并具有较高的计算机应用能力和外语基础。

主干学科:热能工程、动力工程、空调与制冷、计算机技术、自动控制等。

主要课程:理论力学、材料力学、流体力学、机械设计基础、工程热力学、传热学、发电厂概论、电工电子技术、自动控制原理、测试技术、锅炉运行、汽轮机运行、汽轮机调节、热工检测仪表与系统、泵与风机、计算机应用系列课程、专业外语等。

还开设技术经济学、人工神经网络、低温制冷机、节能技术、压缩机系统与安装、数据库原理、AutoCAD、单片机与接口技术等选修课。

扩展资料:

毕业生应获得以下几方面的知识和能力:

1、具有较扎实的自然科学基础,较好的人文、艺术和社会科学基础及正确运用本国语言、文字的表达能力;

2、较系统地掌握本专业领域宽广的技术理论基础知识,主要包括工程力学、机械学、工程热物理、流体力学、电工与电子学、控制理论、市场经济及企业管理等基础知识;

3、获得本专业领域的工程实践训练,具有较强的计算机和外语应用能力;

4、具有本专业领域内某个专业方向所必要的专业知识,了解其科学前沿及发展趋势;

5、具有较强的自学能力、创新意识和较高的综合素质。

体贴的身影
寒冷的硬币
2026-04-05 00:57:08
鸟取大学工学部 国士舘大学工学部等都管这个专业叫

热エネルギー工学

【 分野系列 】 エネルギー・环境工学専攻

【 开讲年度 】 2008

【 授业科目名 】 热エネルギー工学特论

【 科目名(フリガナ) 】 ネツエネルギーコウガクトクロン

【 授业科目英文名 】 Advanced Engineering for Thermal Energy