
近二十年来,以振动为主要原因造成的恶性事故相继发生,给国家造成了巨大经济损失。而且,振动问题目前仍是新投运大机组不能按期并网、正常投运的主要原因,在机组正常运行期间,振动问题连续不断,影响到正常生产,经常出现机组减负荷和带病运行的情况,甚至使机组被迫停机处理,这些事故屡见不鲜。本系统基于LabVIEW虚拟仪器软件平台,对汽轮机振动信号进行读取加窗,并进行谱分析及自相关分析。LabVIEW虚拟仪器就是在以通用计算机为核心的硬件平台上,由用户设计定义、具有虚拟前面板、测试功能由测试软件实现的一种计算机仪器系统。本系统主要完成了对汽轮机振动信号进行读取,对信号进行矩形窗、汉宁窗、海明窗的加窗选择,然后分别进行信号的幅值谱、功率谱、相位谱分析及自相关分析,并且具有图形操作及显示界面。系统运行结果证明,本系统能够完成对信号的读取,并进行三种窗函数及各种分析的动态选择,并用图形显示结果。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 engineeringThis 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 work; etc. Research institutes, universities in energy and power related research and development, teaching, management, etc.
已发表学术论文40余篇,被SCI/EI收录23篇(其中SCI收录17篇),被引用136次,单篇引用最高达36次。 (1)学术论文: 2014-2015年17) Bing Zhang *, Dandan Zhao , Yonghong Wu, Hongjing Liu , Tonghua Wang *, Jieshan Qiu. Fabrication and Application of Catalytic Carbon Membranes for Hydrogen Production from Methanol Steam Reforming. Ind.Eng.Chem. Res. (IF=2.3), 2015, 54(2): 623-632. SCI/EI收录16) B Zhang*, D Wang, Y Wu, Z Wang, T Wang, J Qiu. Modification of the desalination property of PAN-based nanofiltration membranes by a preoxidation method. Desalination (IF=4.0), 2015, 357: 208-214. SCI/EI收录15) Zhang, Bing*; Dang, Xiaolong; Wu,Yonghong; Liu, Hongjing; Wang, Tonghua; Jieshan, Qiu. Structure and gas permeation of nanoporous carbon membranes based on RF resin/F-127 with variable catalysts. Journal of Materials Research (IF=1.9), 2014, 29(23): 2881-2890, (SCI/EI)14)Bing Zhang*, Yonghong Wu, Yunhua Lu, Tonghua Wang, Jieshan Qiu*.Preparation and characterization of carbon and carbon/zeolite membranes from ODPA-ODA type polyetherimide. Journal of Membrane Science (IF=4.9), 2015, 474:114-121. (SCI/EI)13) H.J. Liu, D. Li, H. Yao, Y. Pan, Y. Zhang, B. Zhang, Enhancement of Carbon Dioxide Mass Transfer Coupling the Synthesis of Calcium Carbonate Fine Particles by (Ionic Liquid)-Emulsion Liquid Membrane, Journal of Dispersion Science and Technology, 36 (2015) 489-495. (SCI/EI)12)吴永红,张兵,张满闯, 周佳玲, 王同华. 聚丙烯腈基炭膜的制备及气体分离性能的研究. 化学工程, 2015, 已录用。2015-0086。(CSCD收录)10) 吴永红,谷裕,肖大君,张兵, 江园, 周佳玲. 聚丙烯腈基纳滤膜脱盐性能的研究. 应用化工,2015,已录用。(CSCD收录)9) 孙明珠,张兵*,吴永红,朱静. 超声波在强化燃料油氧化脱硫技术的研究进展. 现代化工,2015, 已录用。(CSCD收录)8) 吴永红,张兵*,肖大君. 宁夏无烟煤基活性炭的制备及吸附性能研究. 化工新型材料,2015,已录用。(CSCD收录)7) 张兵*, 赵丹丹, 沈国良, 于智学, 吴永红, 王同华.强化甲醇制氢反应的酚醛树脂基炭膜制备. 沈阳工业大学学报,2014,36(5):503~508.6) Zhang, B*; Shi, Y; Wu, Y; Wang, T; Qiu,J. Preparation and characterization of supported ordered nanoporous carbon membranes for gas separation. Journal of Applied Polymer Science, 131 (4):2136-2146, 2014.(SCI/EI)。5) B Zhang*, Y Shi, Y Wu, T Wang, J Qiu. Towards the preparation of ordered mesoporous carbon/carbon composite membranes for gas separation. Separation Science and Technology, 49 (2): 171–178, 2014. (SCI/EI)。4) B. Zhang*, Z. Yu, Y. An, Y. Wu, Y. Shi,Z. Liu, T. Wang. Preparation and characterisation of large sized ordered mesoporous carbon film from resorcinol/formaldehyde by basic catalysts. Materials Research Innovations, 2014, 18(4): 294-299. (SCI/EI)。3) 吴永红,张兵*,石毅,赵丹丹,党晓龙,王同华. ODPA-ODA型聚醚酰亚胺膜的预氧化机理. 沈阳工业大学学报, 2014,36(3):280~285.2) 张兵*, 党晓龙, 吴永红, 于智学,王同华. 成膜基质对炭膜结构与气体分离性能的影响. 膜科学与技术, 2014, 34(6): 17-21.1) 张兵*,石毅,吴永红, 赵丹丹, 党晓龙, 王同华. 分离炭膜研究的新技术进展. 化工新型材料, 2014,42(8): 7-8+28.2012-2013年5) 吴永红, 张兵*, 沈国良, 赵丹丹, 党晓龙. 烟煤基活性炭的制备及脱除甲基橙性能的研究. 化工进展, 32(z): 88-92, 2013.4) 张兵*,于智学,石毅,吴永红,王同华. BPDA-ODA型聚酰亚胺基沸石杂化炭膜的制备及气体分离性能. 膜科学与技术, 33(3): 33-38, 2013.3) 张兵*,王颖,吴永红,赵薇. 聚丙烯腈纳滤膜的制备及其对氯化钙的去除. 化工环保, 33(4):349-353, 2013.2) Sun, MZ*; Zhang, B; Wu, YH; Zhu, J;Zhao, DZ. Deep oxidative desulfurization of FCC diesel fuel with ultrasound. Petroleum Science and Technology, 30(23): 2471-2477, 2012. (SCI/EI)1) 吴永红, 孟繁妍, 于智学, 张兵*, 王同华. 有序多孔炭材料的研究进展. 化工新型材料, 40(1): 10-12, 2012.2009-2011年13) B. Zhang*, Y. Wu, T. Wang, J. Qiu, S.Zhang. Microporous carbon membranes from sulfonated poly(phthalazinone ethersulfone ketone): Preparation, characterization and gas permeation. Journal of Applied Polymer Science, 122 (2): 1190-1197, 2011. (SCI/EI)12) B. Zhang*, Y. Wu, F. Meng, T. Xu, J.Zhu, M. Sun. Preparation and characterization of ordered nanoporous carbonmaterials by templating method. Procedia Engineering, 27: 762 – 767, 2012. (EI)11) Zhang, B*; Wu, YH; Wang, TH; Qiu, JS;Xu, TJ; Sun, XH. Effects of curing method on the gas separation performance of phenolic resin/poly(vinyl alcohol)-based carbon membrane materials. Materials Science Forum, 675-677: 1185-1188, 2011.(EI)10) 吴永红,张兵*,朱静,孙明珠. 偏三甲苯溶剂法2,4′-二羟基二苯砜的合成. 精细石油化工,28(3):73-76, 2011.9) 孟繁妍,于智学,吴永红,张兵*. 支撑有序孔炭膜的制备及气体分离性能. 化工进展,30(Z2):85-88, 2011.8) 张兵*,于智学,吴永红,傅承碧,班玉凤. 无机膜反应器的研究进展. 材料导报, 25(S2):450-453, 2011.7) 宋菊玲,吴永红,刘波,张兵. 沸石吸附脱除水溶液中品红的研究. 化学工程与装备,(1):30-31, 2011.6) 吴永红,孟繁妍,朱静,孙明珠,张兵*. 活性炭二次化学活化剂其吸附性能的研究. 石油化工, 39 (z):1000-1002, 2010.5) 赵文凯,朱静,宋菊玲,孙明珠,吴永红. 生物柴油降凝方法的研究. 当代化工, 39(2): 141-143, 2010.4) 朱静,付雪,孙明珠,吴永红. 大豆油生物柴油降凝方法研究.粮食与油脂, 11:7-9, 2010.3) B Zhang, G Shen, Y Wu, T Wang, J Qiu, TXu, C Fu. Preparation and characterization of carbon membranes derived frompoly(phthalazinone ether sulfone) for gas separation. Ind.Eng.Chem. Res.2009, 48 (6): 2886–2890. (SCI/EI)2) T Wang, B Zhang, J Qiu, Y Wu, S Zhang, Y Cao. Effects of sulfone/ketone inpoly(phthalazinone ether sulfone ketone) on the gas permeation of their derived carbon membranes. Journal of Membrane Science, 2009, 330: 319-325. (SCI/EI)1) B. Zhang, T. Wang, Y. Wu, S. Zhang, etal. Preparation and gas permeation of composite carbon membranes from poly(phthalazinone ether sulfone ketone). Separation and Purification Technology, 2008, 60: 259–263. (SCI/EI)2006年以前6) B. Zhang, T.H. Wang, S.H. Zhang, J.-S.Qiu, X.G. Jian. Preparation and characterization of carbon membranes made from poly(phthalazinone ether sulfone ketone). Carbon, 2006, 44 (13): 2764-2769. (SCI/EI)5) B. Zhang, T.H. Wang, S.L. Liu, S.H.Zhang, J.-S. Qiu. Structure and morphology of microporous carbon materialsderived from poly(phthalazinone ether sulfone ketone). Microporous and Mesoporous Material, 2006, 96(1-3):79-83. (SCI/EI)4) Q. Liu, T. Wang, C. Liang, B. Zhang, S.Liu, Y. Cao, J. Qiu. Zeolite married to carbon-a new family of membrane materials with excellent gas separation performance. Chem. Mater., 2006, 18(26): 6283-6288. (SCI/EI)3) 张兵,王同华,邱介山等,聚酰亚胺基气体分离炭膜的研究进展, 膜科学与技术,2007,27(5):97-101.2) 刘诗丽,王同华,张兵,聚醚砜酮薄膜热稳定性及热解动力学规律的研究, 新型炭材料, 2004,19: 224-228. (SCI收录)1) 张兵, 李平. 活性炭纤维填充床脱除水中苯和氯苯及其再生的研究, 沈阳化工学院学报, 2003, 17 (3): 188-192.学术会议交流30) Yonghong Wu1, Bing Zhang1,2,*, Dandan Zhao1, Xiaolong Dang1, Tonghua Wang2. Fabrication of supported carbon/carbon composite membranes for gas separation. PO-1-00931. The 10th International congress on membranes and membrane processes. ICOM2014, July 20-25, 2014, Suzhou,China.29) Xiaolong Dang1, Yonghong Wu1, Bing Zhang1,2,*, Dandan Zhao1, Tonghua Wang2. Preparation and characterization of phenolic resin-based carbon membranes. PO-1-00945. The 10th International congress on membranes and membrane processes. ICOM2014, July 20-25, 2014, Suzhou,China.1) 吴永红,张兵*,石毅,王同华. 炭/炭杂化膜的制备及气体分离性能研究. 2013年10月25~27日,“第八届全国膜与膜过程学术报告会”,大连,口头报告。2) B Zhang*, Y SHI, Y Wu, D Zhao, X Dang, T Wang. Preparation and characterization of carbon molecular sieving membranes made from BTDA-ODA type polyimide. 2013年7月16~19日,“亚太膜学会第八届会议(The 8th Conference of Aseanian Membrane Society , AMS8)”,西安,墙报展示。(P2-A-60)3) 张兵*, 于智学, 石毅, 吴永红. 催化炭膜的制备及强化甲醇制氢研究. 第十六届全国催化会议, 沈阳, 2012年10月(全国会议)4) 于智学, 张兵*, 石毅, 吴永红. 酚醛树脂基微滤炭膜的制备及在甲醇制氢的应用. 第十六届全国催化会议, 沈阳, 2012年10月.5) B. Zhang, * Y. Wu, Y. Shi, T. Wang, J. Qiu. Preparation and characterization of carbon molecular sieving membranes made from Polyetherimide. International Carbon Conference, 2011年7月25-29,华东理工大学. Shanghai.6) F. Meng, B. Zhang*, Z. Yu, Y. Wu, T. Xu, C. Fu. Controlled fabrication of ordered nanoporous carbon membranes by preoxidation. International Carbon Conference, 2011, July, 25-29, Shanghai.7) 张兵*, 吴永红, 于智学, 石毅, 王同华. 沸石杂化炭膜的制备及气体分离性能. 第七届全国膜与膜过程学术报告会,2011年11月4-7日, 杭州8) 孟繁妍; 于智学; 吴永红; 张兵*. 支撑有序孔炭膜的制备及气体分离性能. 第四届全国传质与分离工程学术会议(全国会议)(墙报)2011/11/18-2011/11/21, 天津9) B. Zhang*, Y. Wu, T. Wang, J., T. Xu, X. Sun. Effects of curing method on the gas separation performance of phenolic resin/poly(vinyl alcohol)-based carbon membrane materials. The 7th International Forum on Advanced Material Science and Technology, 26-28 June 2010, Dalian, 318.10) Zhang B*, Fu C, Zhao H, Wu Y, Zhang D. Hydrogen production from methanol steam reforming via a plate carbon membrane reactor. International Symposium on Sustainable Energy: Challenges and Opportunities, 2010, Feb 5-8, Beijing.11) 孟繁妍, 张兵*, 吴永红, 徐铁军, 孙秀华. ZSM-5杂化PR/PVA炭膜的制备及透气性. 第四届中国膜科学与技术报告会. 2010年10月16-18日, 北京, 176-179.12) 张兵*, 吴永红, 孟繁妍,徐铁军, 朱静, 孙明珠. 模板法有序纳米孔炭材料的制备及表征. 2010中国材料研讨会, 2010年6月19-21日, 长沙, 189.13) 张兵*, 孟繁妍, 吴永红, 王同华. 软模板法酚醛树脂基有序纳米孔炭膜的制备. 第六届全国化学工程与生物化工年会, 2010, 10月 29-31日, 长沙.14) 张兵,吴永红,王同华,等. 酚醛树脂/聚乙烯醇基炭膜的制备及气体渗透性.中国工程院化工、冶金与材料工程学部第七届学术会议,2009,11月,天津,p608-613.15) B. Zhang, T.H. Wang, S.H. Zhang, J.-S. Qiu, The structural characterization of carbon membranes derived from poly(phthalazinone ether sulfone ketone)s, Carbon’05 inKorea, 2005. p223-224.16) B. Zhang, T.H. Wang, S.H. Zhang, J.-S. Qiu, Effect of sulfone/ketone of poly(phthalazinone ether sulfone ketone) on gas permeation of carbon membranes. China/USA/Japan joint chemical engineering conference, Beijing,China, 2005. p85.17) B. Zhang, T. Wang, S. Liu, J. Qiu, X. Jian, Preparation and characterization of carbon membranes derived from sulfonated poly (phthalazinone ether sulfone ketone), Carbon’06 in United Kingdom, 2006.18) B. Zhang, T. Wang, Q. Liu, S. Liu, S. Zhang, J. Qiu, Improvement in gas permeation of carbon membranes derived from PPESK by adding additives. Carbon’06 inUnited Kingdom, 2006.19) L. Hu, B. Zhang, T. Wang, S. Liu, S. Zhang, J. Qiu, Preparation and gas permeation of carbon membranes derived from HQDPA-ODA polyimide, The Third Conference of Aseanian Membrane Society, 2006. Beijing,China.20) Q. Liu, T. Wang, B. Zhang, J. Qiu, C. Liang, Y. cao. Nanostructured carbon/zeolite composite membrane for gas separation. Am. Chem. Soc., Div. Fuel Chem. “Chemistry of Carbon Materials and Nanomaterials”,231st ACS National Meeting, Atlanta, GA,USA, March 26-30,2006.21) Q. Liu, T. Wang, B. Zhang, H. Zhang, J. Qiu, C. Liang. A self-supporting composite carbon membrane prepared by pyrolysis poly (amic acid) /carbon nanotuble. Carbon 2006, The International Carbon Conference Aberdeen,UK, 2006, July 16-21. (SCI)22) Q. Liu, T. Wang, Q. Liu, B. Zhang, S. Liu, L. Wang, C. Liang, J. Qiu, Y. Cao. Rational Design and synthesis of novel carbon-metal Composite membrane with controlled porosity through Metal-Catalyzed Decomposition of Surrounding Matrix.The Third Conference of Aseanian Membrane Society. July 19-21, 2006, Beijing,China.23) 张兵,王同华,邱介山等,一种用于制备气体分离炭膜的新型聚合物材料, 第七届全国新型炭材料学术研讨会, 西宁, 2005.p17-20.24) 张兵,王同华,邱介山等,聚酰亚胺基炭分子筛膜的制备及表征, 第二届中国膜科学与技术报告会, 北京, 2005.p34-37.25) 张兵,王同华,邱介山等,前驱体化学结构对炭膜气体分离性能的影响, 第二届全国化学工程与生物化工年会, 北京, 2005. p104.26) 张兵,王同华,邱介山等,聚醚砜酮基气体分离炭膜的制备及表征, 2005年全国博士生学术论坛, 上海复旦大学, 2005. p69-75.27) 刘庆岭,王同华,张兵,等,新型/沸石纳米复合膜气体分离炭膜的制备与表征, 第二届中国膜科学与技术报告会, 北京, 2005.p96-98.28) 刘庆岭, 王同华, 刘勤华, 张兵, 邱介山, 曹义鸣. 新型C/TiO2 纳米复合膜制备及其气体分离性能研究. 第二届全国膜技术在冶金中应用研讨会. 南京, 2006年5月27~28日.(2)教学改革论文1) 教改论文《化工热力学课程中“教-学-用”三位一体关系的探讨与实践》张兵,沈国良,李素君,吴永红,闫金城,徐铁军,班玉凤《化学工程与装备》,2013,(6):218-220.2) 教改论文《基于实践教学培养创新型化工类人才改革的探讨》张兵,吴永红,沈国良,朱静,孙明珠《中国科教创新导刊》,2011,(29):15-16.3) 教改论文《石油加工生产技术专业应用型人才培养的探讨》朱静,沈国良,赵文凯,孙明珠,班玉凤,张兵《化工高等教育》,2010,(05):17-19.4) 教改论文《在有机化学实验中培养低碳意识》胡志泉,张兵《学习月刊》,2010,(12):1315) 教改论文《浅析化工专业英语教学方法》张兵,吴永红《化学工程与装备》,2008,(01):98-100(3)专利申请[1] 张兵, 吴永红, 刘红宇. 一种调控聚丙烯腈纳滤膜截留率的预氧化方法. 发明专利申请号201410048187.2[2] 虞琦; 张兵; 徐铁军; 张航. 一种用于油水分离的炭膜的制备方法.发明专利申请号201410127314.8[3] 张兵;吴永红;傅承碧;徐铁军. 一种炭膜反应器及其使用方法. 发明专利授权号ZL201010118376,授权日2012.05.23[4] 张兵;吴永红;傅承碧;徐铁军. 一种2,4-二羟基二苯砜的合成精制方法, 申请号200910188206[5] 张兵;吴永红;孟繁妍;于智学;石毅. 一种制备有序多孔炭膜的基质诱导法,发明专利授权号ZL201110330039.6,授权日2015.03.11[6] 张兵;吴永红,朱静,孙明珠,于智学,石毅. 一种制备催化炭膜的共混热解法. 发明专利申请号2012101815829[7] 张兵, 吴永红, 石毅,赵丹丹, 党晓龙. 一种用于调控炭膜气体分离性能的磁场干预成膜方法. 发明专利申请号2012104962336[8] 张兵, 王同华, 吴永红, 李琳. 一种用于调控炭膜气体分离性能的磁场装置, 授权号ZL 201220713366.X,授权日2013.06.12[9] 王同华,张兵,邱介山,一种气体分离膜渗透仪的改进方法,授权号ZL2005102007928,授权日2013.06.12[10] 王同华,张兵,邱介山, 蹇锡高. 聚醚砜酮基气体分离炭膜的制备方法,授权号ZL20051020079327,授权日2009.07.01
徐博洋在scl上发表的论文有:等用富氧燃烧锅炉高温烟气制取高热值生物质气化气的系统、流体力学研究方向固体力学动力学与控制飞行器设计飞行器动力工程流体力学。1、徐博洋作为第一、二作者的研究论文《AHandFoodandMouthDiseaseModelwithPeriodicTransmissionRateinWenzhou,China》2014年初发表于SCI源期刊;2、“统计建模”小分队的李洁和傅妍珺为第一、二作者的研究论文《ASpatialTemporalARMAModeloftheIncidenceofHand,Foot,andMouthDiseaseinWenzhou,China》发表于SCI源期刊。这两篇论文的发表,标志着我院数学类专业本科生创新人才培养取得了新突破!
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