学习热能与动力工程专业有哪些课程?
1 专业基础课
高等数学、线性代数、概率论与数理统计、大学物理、大学物理实验、普通化学及实验、工程图学△、微机原理与接口技术、理论力学△、材料力学△,流体力学△;
电工学△、金属工艺学、机械原理△、机械设计△、互换性与技术测量△、制造技术基础△、材料成型技术基础、计算机控制技术、单片机原理与应用、工程热力学△、传热学△、热力测试技术。
2 专业课
(供热与制冷方向)化工原理、化工原理实验、热能与动力工程基础△、锅炉原理与设计△、制冷与空调△、热力过程控制△、热力发电工程△;(内燃机方向)燃料与燃烧△、机械优化设计、内燃机原理△、内燃机构造△、内燃机设计△(有些学校两个方向合一)。
3 专业选修课
(供热与制冷方向与内燃机方向专业课互为选修课)CAD/CAE/CAM、空气动力学、虚拟样机技术、有限元法、汽车排气污染与控制、专业英语、文献检索、涡轮机、内燃机设计方法、内燃机新能源、环境工程、动力机械故障诊断技术;
压力容器设计基础、流体密封技术、流体机械、动力机械噪声与控制、换热器原理及设计、节能技术、供热工程、汽车发动机新技术、内燃机试验方法、安全技术、腐蚀与防护。
扩展资料:
毕业生应具备的知识和能力
1、掌握能源与动力工程及其应用方面的基础知识;
2、掌握数学、物理、力学、机械、电工电子以及自动控制的基本理论和基础知识;
3、初步具备综合运用所学知识,分析和解决能源与动力机械中所遇到的研究、运用、规划、设计制造等问题的能力;
4、了解国家关于热能与动力装置的设计、开发、环境保护和安全等方面的方针、政策和法规;
5、了解本专业领域世界先进技术水平的现状和发展状况,具有能运用和利用国际市场上提供的先进技术的基本能力;
6、掌握文献检索、资料查询的基本方法,能够利用现代信息技术获取相关的知识;
7、掌握一门外语,能够熟练阅读本专业外文书刊,有一定的计算机应用能力。
英文:ASME Journal of Heat Transfer,International Journal of Heat and Mass Transfer等。雪无痕(站内联系TA)电机工程学报动力工程学报热能与动力工程(CSCD)各大学学报(自然科学版)。。。missyou8326(站内联系TA)热能动力工程不是EI源了:cry:ylberyl(站内联系TA)中文的认为还是《中国电机工程学报》,两专家背靠背盲审,论文质量比较可靠,Ei检索。工程热物理学报得参加会议,参加会议还不一定录。再者就是推荐《热能动力工程》也比较正规,只是不被Ei检了。然后《动力工程》,《热力发电》和《汽轮机技术》节能技术也是核心期刊 不是国家核心,是科技核心。windkiller3707(站内联系TA)太阳能学报、燃料化学学报。EI源刊。sh0283(站内联系TA)燃烧科学与技术longerwell(站内联系TA)这个比较多了吧太阳能学报 太阳能国外的比较多中文的认为还是《中国电机工程学报》,两专家背靠背盲审,论文质量比较可靠,Ei检索。工程热物理学报得参加会议,参加会议还不一定录。再者就是推荐《热能动力工程》也比较正规,只是不被Ei检了。然后《动力 ... 补充一下:机械工程学报、燃烧科学与技术、化工学报。天也潇潇(站内联系TA)化工学报不错的动力小硕(站内联系TA)电机认可度比较高的,特别是咱们能源电力这块雪无痕(站内联系TA)化工学报审稿太严了。。ymgeng(站内联系TA)Combustion&Flame.....xiangqian327(站内联系TA)国际传热传质,哈尔滨工业大学学报ncccompany(站内联系TA)heat transfer雨吻梦里花(站内联系TA)化工学报也沾边的。。
日本东京工业大学、九州工业大学等都有热动工程专业,对日语要求较高,需要达到一级水平。专业课也不能太低。公立大学研究生的学费在3-4万之间,生活费5-6万左右一年。如果你有意向去日本深造需要尽早的学习日语和英语,早作准备。
“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。
课程设置
专业主干课程:工程热力学、流体力学、传热学、传热与传质原理、低温技术原理与装置、现代电站锅炉、现代电站汽轮机、发电厂自动化及计算机利用、动力设备与系统、计算机技术(硬件、软件、网络、应用)、计算机控制系统、能源与环境保护、制冷与空调等。
专业方向
考虑学生在宽厚基础上的专业发展,将热能与动力工程专业(现能源与动力工程)分成以下四个专业方向:
(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。
即工程热物理过程及其自动控制、动力机械及其自动化、流体机械及其自动控制、电厂热能工程及其自动化四个二级学科。
日本留学热能与动力专业介绍
培养要求
本专业学生主要学习动力工程及工程热物理的基础理论,学习各种能量转换及有效利用的理论和技术,受到现代动力工程师的基本训练,具有进行动力机械与热工设备设计、运行、实验研究的基本能力。
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。
热能与动力工程分一般可分为3个方向:热工、热动、水动。其中热工和热动区别不大,工资待遇2000-4000之间。
水动主要是水电厂和水电施工单位,工资较高但是地处偏僻。
核能的开发与利用将为我们提供用之不竭的能源,尤其是运用核聚变原理开发的人造“小太阳”技术将为人类提供洁净、取之不尽的动力。而这项技术目前在世界上都还有待成熟和完善。
Over the last 20 years, mainly due to the vibration caused by the fatal accidents occurred one after another, inflicting huge economic losses. Furthermore, the vibration is still new to large units shipped impossible grid, the normal operation for the main the crew during normal operations, continuous vibration problems affecting the normal production, Units often reduced load and operation of the sick, and even the unit was forced to stand, these incidents not uncommon. The system based on LabVIEW virtual instrument software platform for turbine vibration signal window read, and spectral analysis and correlation analysis. LabVIEW virtual instrument is a common core of computer hardware platform, defined by the user, with virtual front panel, the test function test software from a computer equipment system. The system completed the turbine vibration signal read, the signal rectangular window Hanning, Hamming window window choice, and then the signal amplitude spectrum, power spectrum and phase spectrum analysis and correlation analysis, and operating with graphics and display interface. The result of running the system proved that the system can accomplish the signal read, and three window function and the dynamic analysis of the various options and graphical display with the results.
专业前景 本专业以工程热物理学科为主要理论基础,以内燃机和正在发展中的其它新型动力机械及系统为研究对象,运用工程力学、机械工程学、自动控制、计算机、环境科学、微电子技术等学科的知识和内容,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。随着常规能源的日渐短缺,人类环境保护意识的不断增强,节能、高效、降低或消除污染排放物、发展新能源及其它可再生能源成为本学科的重要任务,在能源、交通运输、汽车、船舶、电力、航空宇航工程、农业工程和环境科学等诸多领域获得越来越广泛的应用,在国民经济各部门发挥着越来越重要的作用。 培养目标 本专业方向培养具备热能与动力工程专业方面的基本理论、基本知识和基本技能,能在国民经济各部门从事热力发动机和其它新型动力机械及设备的设计、制造、管理、教学和科研等方面的高级工程技术人才。 培养特色 本专业在加强学生基础理论和综合素质教育的同时,加强计算机及自动控制技术的应用,强化专业实践教学,注重全能训练,全面提高学生的实践动手能力和科学研究潜力,使毕业生具有较强的择业竞争能力和较宽的就业适应能力。 主干课程 机械制图、机械原理、机械设计、理论力学、材料力学、工程材料、电工技术、电子技术、计算机软件基础、液压技术、液力传动、内燃机构造、内燃机原理、内燃机设计、内燃机试验、发动机电子技术、工程热力学、流体力学、传热学、自动控制理论、现代测试技术等。 就业方向 毕业后可从事能源与动力设备的行政管理、内燃机及新型动力设备的开发研制、内燃机排放控制、新能源利用、汽车工业、兵器工业、环保工业、交通运输业、船舶、电力、航空宇航工业等方面的工作。
The prospect of major works of the major hot in physics as the main theoretical basis to the internal combustion engine and the other is the development of new machinery and power systems for the study, the use of engineering mechanics, mechanical engineering, automation, computers, environmental science, microelectronics technology disciplines, such as content knowledge and to study how the chemical energy of fuel and liquid kinetic energy security, high-performance, low (or none) of pollution to the power into the basic law and the process of research in the conversion process of the automatic control systems and equipment technology . With the growing shortage of conventional energy, human the growing awareness of environmental protection, energy saving, high efficiency, reduce or eliminate polluting emissions, the development of new energy and other renewable sources of energy has become an important task for the subjects in the energy, transportation, automotive, ships, electricity, aviation aerospace engineering, agricultural engineering and environmental science in many fields such as access to more and more widely used, the department in the national economy is playing an increasingly important role. Cultivate cultivate goal with the direction of the major thermal power projects with the major aspects of the basic theory, basic knowledge and basic skills, to engage in various departments in the national economy and other heat engines power the new machinery and equipment design, manufacture, management, teaching and scientific research aspects of advanced engineering and technical personnel. Cultivate major characteristics of the students in strengthening the basic theory and the overall quality of education, to strengthen the computer and automatic control technology, and strengthen the teaching of professional practice, pay attention to all the training, students enhance the practice of comprehensive practical ability and scientific research potential, so that graduates have strong competitiveness and a wide choice of employment adaptability. Mechanical Drawing trunk curriculum, mechanical principles, mechanical design, theoretical mechanics, mechanics of materials, engineering materials, electrical technology, electronics technology, computer software foundation, hydraulic technology, hydraulic transmission, the internal combustion engine structure, the principle of internal combustion engines, internal combustion engine design, the internal combustion engine testing, engine electronic technology, engineering thermodynamics, fluid mechanics, heat transfer, automatic control theory, modern test technology. Employment after graduation can be engaged in the direction of energy and power equipment, administration, internal combustion engines and new development of power equipment, internal combustion engine emission control, new energy use, the auto industry, the weapons industry, industrial environmental protection, transport, shipping, electricity, air space industrial job.
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.