辽宁工程技术大学矿业学院研究生招生

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辽宁工程技术大学矿业学院研究生招生是一个不错的学院,深受考研人的追捧,本校每年会有数千名研究生招生的名额,研究生报考录取比在3:1左右,难度中等,部分热门的研究生专业研究生报考录取比会更高一点, 矿业学院是学校里比较好的一个院系,请各位准备报考辽宁工程技术大学矿业学院研究生招生的同学注意,该院系有以上多个专业在招生研究生,欢迎各位同学报考辽宁工程技术大学矿业学院研究生招生。

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辽宁工程技术大学矿业学院研究生招生

采矿工程 学科(专业)硕士研究生培养方案


专业代码:081901 学科门类: 工学
Code of Specialty: 081091              Department of Discipline: Engineering
一级学科:矿业工程 学分要求:40
First-grade Discipline: Mineral Engineering  Credit Setting: 40 credits
一、学科(专业)概况(Diciplines Instruction
中(宋体五号)
采矿工程专业成立于1949年,是国内一流,国际知名的优势品牌专业。1984年获得硕士学位授予权,1993年获得博士学位授予权,1999年被批准设立博士后科研流动站,2004年被辽宁省确定为省级重点学科,先后被批准为国家第二类特色专业、国家综合改革试点专业、辽宁省矿业工程专业紧缺人才培养基地和辽宁省示范性专业。本学科依托两个省部级重点实验室,具备先进的实验设施和研究条件,已成为国家地矿类高水平学术研究和人才培养的重要基地之一。具有年龄结构合理、学历层次较高、富有开拓创新意识,学术成果丰硕的师资队伍。采矿工程专业形成了矿井开采理论与技术、露天开采理论与技术、矿山压力与矿井动力灾害防治、矿井通风与安全、矿业经济与数字矿山等5个稳定的学术研究方向。先后主持完成了国家科技攻关项目、国家自然科学基金、“863计划”、“973计划”等国家级项目30余项,其中获得国家科技进步二等奖3项、国家教学成果二等奖1项、省部级科技进步奖30余项、辽宁省教学成果奖2项。培养的毕业生分布在高校、科研院所、设计单位、煤炭企业和相关行业,并已成为管理和技术的中坚,为我国煤炭工业的发展和科技进步做出了突出贡献。
As the leading and traditional superior discipline in our university, miming engineering was set up in 1949, authorized to offer master's degree in 1984 and doctoral degree in 1993, approved to establish the mobile scientific research station for post-doctoral studies in 1999, granted to be the key discipline on the provincial level in 2004 and approved to be the second type of national characteristic specialties, the mineral engineering training base of professionals whose skills are in short supply and exemplary speciality in Liaoning successively. This discipline has two key lab at the provincial and ministerial level, academic echelons with reasonable age structure, higher education and creative consciousness. Such stable research orientation as "underground mining theory and technology", "surface mining theory and technology", "rock pressure and rock stratum control", "prevention technology of mining dynamic disaster", "mine ventilation and safety", "mining economics and digital mine" have been formed. 25 national significant scientific research projects have been presided and brought to success, including national programs for science and technology development, national natural science fund, "863 program" and "973 program". This discipline has won 3 national scientific and technological progress second prize, two second prize of national teaching achievement, 30 provincial and ministerial level scientific and technological progress awards andteo  prize of Liaoning teaching achievement. She has made outstanding contributions for the development of national mining industry.

二、培养目标Training Objectives
1.掌握马克思主义的基本理论,拥护中华人民共和国宪法,遵守法律、法规,热爱祖国和人民,树立正确的世界观、人生观、价值观,有强烈的事业心和积极进取精神,具有与时俱进的创新意识。
2.具备解决采矿工程问题的先进技术方法,掌握本学科坚实的基础理论和全面系统的专门知识,了解学科前沿的最新知识和动态,了解相邻学科的有关知识,具备学术研究的基本能力和独立从事本领域专门技术工作或经营管理与教学等工作的创新型人才。
3.掌握一门外国语,具备熟练阅读本领域的外文资料,并具有一定的外文学术论文写作和国际学术交流的能力。
4.了解体育运动的基本知识,掌握必要的体育锻炼技能,具有自我锻炼的意识,不畏艰难的气魄,强健的体魄和健康的心理素质。
三、学制与学习年限(Academic structure and Years of learning
学制: 3年;学习年限: 2-5 年。
Academic structure: 3 years; Years of study (including leave of absence, retain Maintenance of Status): 2-5 years.
四、研究方向(Research Orientation
序号  
Name
研究方向的范围及特点概述
The Scope of Research   Orientation and Brief account of the Characteristic
1 矿井开采理论与技术
Underground   mining theory and technology
矿井开采方法与工艺技术、矿井优化设计、放顶煤开采技术、充填开采技术、“三下”开采技术、深矿井开采技术、特殊开采技术、浆体管道输送理论与技术等。
fundamental   principle and methods of mine development and mining, green mining   technology, top coal caving mining technology,  stowing technology,   mining technology under buildings, water bodies and railways, mining   technology in deep mine and untraditional mining technology; survey and   synthetical evaluation of coal bed gas resources, drainage and complex   utilization of coal bed gas; slurry pipeline parameter, flow state and   hydraulic gradient of slurry in pipeline,    concentration distribution, velocity distribution and migration   velocity of non-homogeneous flow.
2 露天开采理论与技术
Surface   Mining Theory and Technology
露天矿开采优化设计、露天开采工艺技术、露天矿边坡稳定与监测预报技术、露天矿边坡治理技术、露天矿生产过程优化控制、露天矿项目管理、露天矿土地复垦及生态修复。
surface   mining technology, slope engineering, technology and application of computer   aided design and system simulation, blasting technology in surface mine,   systems reliability analysis.
3 矿山压力与矿井动力灾害防治
Rock   Pressure and Control Technology of Mine Dynamic Disasters
煤矿采场上覆岩层运动规律、矿压显现规律、采场与巷道支护技术、围岩稳定性与控制机理;煤与瓦斯突出、冲击地压等矿井动力灾害预测、监测及防治。
law   of deformation, destruction and destabilization and control technology of rock   strata, strata behaviors law and supporting technique of stope, roadway and   surrounding rock, stress analysis of geotechnical Engineering; geo-dynamic   division and its application in the mining, preventing theory and technology   of such dynamic disaster as coal and gas outburst, pressure bump and shock bump caused by underground mining activities.
4 矿井通风与安全
Mine   Ventilation and Safety
危险源识别与判断,矿井通风系统设计、评价、改造与优化,矿井瓦斯、火灾、粉尘和水灾等监测监控及防治技术,安全防护、紧急避险、应急救援理论、技术与方法。
basic   theory of air flow, ventilation power and resistance, air flow distribution   and regulation, ventilation system and its design, control technology of gas,   fire, dust and water disaster.
5 数字矿山与矿山企业管理
Mining   Economics and Digital Mine
数字矿山建模技术、数字化煤矿设计、煤矿虚拟仿真;矿业技术经济、矿山项目管理、现代化矿山企业管理。
mining   investment and cost, coal project and assets evaluation and enterprise   management information system; theory and method of establishing 3D   geological model and mining model of coal mine, technology of production   system simulation and monitoring, monitoring technology of mine safety,   computer aided design technique, virtual mining technology, information   management system and OA developing technology.
 



五、课程设置(Curriculum
课程类别
Course   Type
课程编号
Course   No
课程名称
Course   Name
学分
Credit
学时Hour
课内/试验
Class/test
开课学期semester classes 开课单位
Class   Department
备注
Remarks
 
Academic Degree Comse
学位课
Common Course
公共课
  中国特色科学社会主义理论与实践研究 2 40 1 思政部    
  自然辩证法概论/马克思主义社会科学方法论 1 20 1 思政部    
  基础综合英语 3 60 1 外语系 过六级  
  学术综合英语 3 60 2 外语系 过六级  
  硕士生基础英语1 3 60 1 外语系    
  硕士生基础英语2 3 60 2 外语系    
  矩阵论 3 60 1 理学院    
  数值分析 3 60 2 理学院    
Basic Course
基础课
  采矿工程数值计算方法 3 60 2 矿业学院 基础课和专业课之和:16学分  
  工程地质分析原理与技术 3 60 1 矿业学院  
  非线性岩石力学 2 40 1 力学院  
Specialized Course
专业课
  现代采矿理论与方法 3 60 1 矿业学院  
  矿山灾害防治技术 3 60 2 矿业学院  
  矿业系统工程 2 40 2 矿业学院  
Selective Course
选修课
Public Elective Course
公共选修课
  学术英语写作 1     矿业学院 必选 32
  科学计算与数学建模 2     理学院 至少选修一门  
  高等工程应用数学 2 40 2 理学院  
  随机过程 2     理学院  
  数理方程 2     理学院  
  应用泛函分析 2     理学院  
  最优化理论 2     理学院  
  应用统计 2     理学院 34
Optional Courses
任选课
  学科专题讲座 2 40 2 矿业学院 必选 6学分
  特殊开采技术 2 40 3 矿业学院 选修
  矿井支护新技术 2 40 3 矿业学院 选修
  边坡稳定性控制技术 2 40 3 矿业学院 选修
  现代矿压理论 2 40 3 矿业学院 选修
  矿井地质动力区划 2 40 3 矿业学院 选修
  煤矿监测与控制技术 2 40 3 矿业学院 选修
  数字矿山构建技术及应用 2 40 3 矿业学院 选修
  矿山企业管理 2 40 3 矿业学院 选修
合计
Total
    40 800       40
 

矿物加工工程 学科(专业)硕士研究生培养方案

发布者: [发表时间]:2018-08-14 [来源]: [浏览次数]: 135
专业代码:081903 学科门类:工学
Code of Specialty: 081903 Department of Discipline:Engineering Science
一级学科:矿业工程学分要求:40
First-grade Discipline:Mineral Engineering Credit Setting:40
一、学科(专业)概况(Diciplines Instruction
矿物加工工程学科于2000年恢复建设,2003年获得博士、硕士学位授予权。先后被批准为辽宁省重点学科、辽宁省特色人才培养基地、辽宁省普通高校重点扶持专业。
本学科具有年龄结构合理、学历层次高、富有开拓创新意识,学术成果丰硕的师资队伍。
本学科现拥有矿物加工与利用-辽宁省重点实验室及辽宁省采矿与矿物开发利用工程技术研究中心。包括“100kg/h扩大连续选矿中试线”及X射线荧光光谱仪等大型先进仪器设备,可以完成选煤-选矿和非金属矿加工利用、煤化工及洁净能源等矿物加工工艺、工程技术;共伴生矿物、矿山固体废弃物及尾矿等二次资源综合开发利用等工作。先后主持完成国家科技支撑计划项目、国家自然科学基金、“973计划”等国家级科研项目10余项;省部级科研项目20余项;校企合作项目50余项;获省部级、市级奖励20余项;获批发明专利、实用新型专利10余项;出版专著、教材5部;发表学术论文300余篇,其中SCI、EI、ISTP检索40余篇。
本学科主要研究领域有:矿物加工理论与技术;功能矿物材料;矿物资源综合利用;洁净能源与煤化工。培养的毕业生就业于高等学校、科研院所、设计院及矿山企业。
Mineral processing engineering disciplines to restore the building in 2000, July 2003 to obtain Ph.D., master's degree awarded.Has been approved asLiaoningProvince key disciplines, Liaoning Province specialty training base, Liaoning Province colleges and universities focus on supporting professional.
This discipline has reasonable age structure, high education level, the rich innovation consciousness, and fruitful faculty academic achievements.
Now this discipline has mineral processing and utilizing – Liaoning Provincial Key Laboratory and the mining and mineral exploitation Engineering Research Center; Including “100 kg/h expand continuous dressing pilot line” and X-ray fluorescence spectrometer and other large-scale advanced instruments and equipment.Thesecan meet and complete processing and non-metallic mineral processing and utilization, coal chemical industry and clean energy and other mineral processing technology, engineering technology; Common associated minerals, mining solid waste and tailings and other secondary resources comprehensive exploitation and utilization, etc. Successively presided over andcompleted the National Scientific and Technological Support Program, the National Natural Science Fund, "973 plan" more than 10 of national research projects; More than 20 provincial and ministerial level scientific research projects;School-enterprise cooperation projects in more than 50; Provincial and ministerial level, municipal incentives more than 20;Granted invention patents, utility model patents more than 10;Publication of monographs, textbooks of 5;Published more than 300 papers,in which SCI, EI, ISTP retrieved of more than 40 articles.
This discipline mainly research fields as follows: Mineral processing theory and technology; Function mineral materials; Comprehensive utilization of mineral resources; Clean energy and coal chemical industry.Cultured graduates work at colleges and universities, research institutes, design institutes and mining enterprises.
二、培养目标Training Objectives

矿物加工工程学科培养具备坚实的基础理论和较宽广的专业知识;较为熟练地掌握一门外国语;了解本学科理论研究和工程技术的前沿动态,了解相邻学科的有关知识;具有一定的理论分析、试验研究及计算机技术方面的能力,具有与时俱进的创新意识,能结合与本学科有关的实际问题从事科学研究或担负专门工程技术工作,并取得较系统的研究成果,从事矿物加工工程方面的教学、科研、设计、管理或相关工程技术工作的创新型人才。
Mineral processing engineering discipline educate and possess with solid basic theory and wide professional knowledge; More skillfully master a foreign language; Understanding this discipline theory research and engineering technology at the forefront of the dynamic, understand the concerned knowledge of adjacent disciplines; Has a certain theoretical analysis, experimental research and the ability of computer technology, has innovation consciousness of keeping pace with the times, can combine with the practical problems related to this subject to engage in scientific research or specialized engineering and technical work and achieve a system research, engage in mineral processing engineering teaching, scientific research, design, management or relate engineering and technical work of the innovative talents.
三、学制与学习年限(Academic structure andYears of learning

学制:3年;学习年限:2-5年。
Academic structure: 3 years;Years of study: 2-5 years.
四、研究方向(Research Orientation

序号 名 称
Name
研究方向的范围及特点概述
The Scope of Research Orientation and Brief account of the Characteristic
1 矿物加工理论与技术Theory and technology on mineral processing 碎磨矿与预富集;选择性磨矿工艺;边磨边浮工艺;重磁浮电选矿工艺;选煤及煤系伴生矿物与元素分离富集;低品位难选多金属矿选矿;化学选矿;非金属矿加工利用;矿物加工工程装备。
Crushing and grinding preconcentration;Selective grinding process; Grinding and flotation process;Gravity concentration, Magnetic separation, Flotation, Electricity beneficiation process;Coal preparation and coal measure associated minerals and elements of separation and enrichment;Low-grade difficult selected; Polymetallic ore beneficiation; Chemistry beneficiation;Non-metallic mineral processing and utilization;Mineral processing engineering equipment.
2 功能矿物材料
Functional minerals material
矿物粉体技术;矿物物理化学改型改性;无机非金属矿材料;无机化学合成;复合材料;梯度材料;有机/无机杂化材料。
Mineral powder technology;Physical Chemistry of Minerals retrofit modified;Inorganic non-metallic mineral materials;Inorganic chemical synthesis;Composites;Graded materials;Organic / inorganic hybrid materials.
3 矿物资源综合利用
Comprehensive resource utilization theory and technology
矿山共伴生矿物与元素分离富集利用;矿山固体废弃物与尾矿全组分综合开发利用。
Mine mountain coexisting-associated minerals and element of separation and enrichment use; Mine mountain solid waste and tailings comprehensive development and utilization the whole component.
4 洁净能源与煤化工
Clean energyandcoal chemical industrial technology
洁净煤与洁净燃烧技术;低阶煤高效开发利用;煤炭热解;煤炭气化、液化;煤烃基合成化学品;煤基材料;可再生能源;生物质能源;储能材料。
Clean coal and clean combustion technology; Efficient development and utilization of low rank coal; Coal pyrolysis; Coal gasification, liquefaction; Coal hydrocarbon group of synthetic chemicals; Coal-based materials; RE; Biomass energy; Energy storage materials.
 




五、课程设置(Curriculum
课程类别
Course Type
课程编号
Course No
课程名称
Course Name
学分
Credit
学时Hour
课内/试验
Class/test
开课学期semester classes 开课单位
Class Department
备注
Remarks
Academic Degree Comse
学位课
Common Course
公共课
  中国特色科学社会主义理论与实践研究 2 40 1 思政部  
  自然辩证法概论/马克思主义社会科学方法论 1 20 1 思政部  
  基础综合英语 3 60 1 外语系 过六级
  学术综合英语 3 60 2 外语系 过六级
  硕士生基础英语1 3 60 1 外语系  
  硕士生基础英语2 3 60 2 外语系  
  矩阵论 3 60 1 理学院  
  数值分析 3 60 2 理学院  
Basic Course
基础课
  应用化学 2 40 1 矿业学院  
  胶体与界面化学 2 30/10 1 矿业学院
  现代仪器分析测试技术 2 30/10 1 矿业学院
Specialized Course
专业课
  浮选溶液化学 3 30/30 2 矿业学院
  矿物加工实验设计与实验方法 3 30/30 2 矿业学院
  矿物深加工与矿物材料利用(创新课) 3 40/20 2 矿业学院
Selective Course
选修课
Public Elective Course
公共选修课
  学术英语写作 1 20 1 矿业学院  
  科学计算与数学建模 2 40 1 理学院  
  高等工程应用数学 2 40 1 理学院
           
Optional Courses
任选课
  学科专题讲座 2 40 3 矿业学院 4学分
  药剂合成与制备 2 40
  煤化工技术进展 2 40
  生物选矿 2 40
  化学选矿 2 40
  资源回收与利用 2 40
合计
Total
    40        
 

专业代码:430119 学科门类:工程硕士
Code of Specialty:430119 Department of Discipline:Master of Engineering
工程领域:矿业工程 学分要求:26
Engineering field:Mining Engineering Credit Setting:26
一、领域概况(FieldInstruction)
矿业工程是学校历史最悠久的优势学科,为辽宁省首批“双一流”建设学科,先后获批国家第二类特色专业、辽宁省矿业工程专业紧缺人才培养基地和辽宁省示范性专业,拥有煤炭资源安全开采与洁净利用工程中心、煤矿虚拟仿真实验教学中心等7个省级科研平台。1984年获硕士学位授予权,1993年获博士学位授予权,1999年获批设立博士后科研流动站,2003年获矿业工程一级学科博士学位授予权。
Mining engineering is one of the dominant discipline with long history in Liaoning Technical University. As the “Double First-Class” disciplines in Liaoning Province, it has been authorized to be National Second Category Specialty, Liaoning Mining Engineering Training Base andexemplarydisciplines in provincial level. It has 7 provincial-level scientific research platforms, such as, Coal Resource Safety Mining and Clean Utilization Engineering Center and Coal Mine Virtual Simulation Experiment Teaching Center. It was authorized to grant master’s degree in 1984. In 1993, it was authorized to grant doctoral degree. In 1999, it was authorized to set up Post-doctoral Scientific Research Station. It was authorized to grant doctoral degree for the first level discipline of Mining Engineering in 2003.
学科现有博士生导师39人、硕士生导师54人,拥有国家安全生产专家、国家“653”工程首席专家等学术造诣较深的学术带头人与结构合理的学术梯队,重点围绕矿井开采理论与技术、露天开采理论及技术、矿山压力与岩层控制、矿井动力灾害防治技术、矿井通风与安全、矿业经济与数字矿山、矿物加工理论与技术和矿物资源综合开发利用理论与技术等方向开展研究工作,在矿井动力灾害防控、露天开采、矿井火灾防控等领域具有突出优势和鲜明特色。近5年,先后主持完成国家科技攻关项目、国家自然科学基金、“863计划”、“973计划”等国家级项目21项,其中获得国家科技进步二等奖2项、国家教学成果二等奖1项、省部级科技进步奖23项、辽宁省教学成果奖6项;培养博、硕士及留学生研究生共计682名,为煤炭行业输送了大批高层管理及高级工程技术人才,为我国经济建设和煤炭工业的发展做出了突出贡献。
There are currently 39 doctoral and 54 master advisors. They are experts for national safety production, chief experts of national "653" project, national coal mine engineering experts and academic leaders, forming a well-structured academic group. The research work is mainly focused on mine mining theory and technology, surface mining theory and technology, mine pressure and ground control, mine safety and disaster prevention and control, mine environmental engineering and mineral resources processing and utilization. The studies in prevention and control of mine dynamic disasters, surface mining and mine fire prevention and control have special outstanding advantages and distinctive features. In the past 5 years, over 21 national scientific research projects including the National Science and Technology Research Project, the National Natural Science Foundation, the “863 Program” and the “973 Program”, have been accomplished. 2 national second prizes for scientific and technological progress, 1 second prize for national teaching achievements, 23 provincial level awards for scientific and technological progress, and 6 awards for Liaoning Province teaching achievements have been awarded.A total of 682 Ph.D., master and international students have been trained, and a large number of senior management and senior engineering and technical personnel have been delivered to the coal industry, making outstanding contributions to China's economic construction and the development of the coal industry.
二、培养目标(Objectives)
本学科把立德树人作为硕士研究生教育的根本任务,瞄准国际矿业工程领域发展前沿,以矿产资源安全绿色开发与洁净利用为主要研究内容,重点服务于矿井开采理论与技术、露天开采理论及技术、矿山压力与岩层控制、矿井动力灾害防治技术、矿井通风与安全、矿业经济与数字矿山、矿物加工理论与技术和矿物资源综合开发利用理论与技术等领域,培养德智体美全面发展、具备较强的工程实践能力和创新能力、较强的实际问题解决能力、良好的职业素养和具备国际竞争力的应用研究型拔尖人才。
This subject regards cultivating people withhighmoralvaluesas the fundamental task of doctoral education, aiming at the frontier of mining development worldwide, focusing on the safe development of green resources and clean utilization of mineral resources, serving the academic areas in mining theory and technology, surface mining theory and technology, mine pressure and ground control,mine disaster prevention technology, mine ventilation and safety, mining economy and digital mine, mineral processing theory and technology and mineral resources comprehensive development and utilization theory and technology. We cultivateapplied research-oriented talentswith a comprehensive development of morality, intelligence, beauty,strong engineering practice ability and innovation ability, strong practical problem-solving ability, good professional quality and international competitiveness.
三、培养要求(Requirements)
(1)应较好地掌握马克思主义、毛泽东思想、邓小平理论、“三个代表”重要思想、科学发展观及习近平新时代中国特色社会主义思想理论,拥护党的基本路线和方针、政策,热爱祖国和人民,遵纪守法,品行端正,具有良好的职业道德和奉献精神,积极为我国经济建设和社会发展服务,身心健康。
Students should have a good grasp of Marxism, Mao Zedong Thought, Deng Xiaoping Theory, the important thinking of the "Three Represents", the scientific development concept, and Xi Jinping's new era of socialist ideological theory with Chinese characteristics, support the party's basic line, principles, and policies, and love the motherland and the people. Compliance with laws and regulations, good conduct, good professional ethics and dedication, and actively serve economic construction and social development, with physical and mental health.
(2)应掌握所从事的程领域的坚实基础理论和宽广专业知识;掌握解决复杂矿业工程问题的先进技术方法和现代技术手段;具有与学位相匹配的创新意识及能力和独立担负矿井开采理论与技术、露天开采理论及技术、矿山压力与岩层控制、矿井动力灾害防治技术、矿井通风与安全、矿业经济与数字矿山、矿物加工理论与技术和矿物资源综合开发利用理论与技术等工程技术或工程管理工作的能力。
Students should grasp the solid basic theory and broad professional knowledge of the field of work; master advanced technical methods and modern technical means to solve complex mining engineering problems; have the innovative consciousness and ability to match the degree and independently take the theory and technology of mining, surface mining theory and technology, mine pressure and ground control, mine dynamic disaster prevention technology, mine ventilation and safety, mining economy and digital mining, mineral processing theory and technology and mineral resources comprehensive development and utilization theory and technology engineering or engineering management work ability.
(3)应掌握至少一门外国语,能较为熟练地阅读与矿业工程领域有关的外文资料,具有一定的写作和翻译能力,并具备一定的国际学术交流水平;掌握至少一种计算机语言及编程方法,能熟练运用计算机技术进行设计、模拟、分析等,解决矿业工程领域中有关问题。
Studentshould have at least one foreign language, be able to read foreign language materials related to the mining engineering field, have certain writing and translation skills, and have a certain level of international academic exchange; master at least one computer language and programming methods, be proficient to use computer technology to design, simulate, analyze to solve related problems in the field of mining engineering.
四、研究方向(Research Orientation)
序号
No.
名称
Name
研究方向的范围及特点概述
Research Orientation and Characteristic
1 矿井开采理论及技术
Underground mining theory and technology
矿井开拓开采基本原理与方法,绿色开采技术,放顶煤开采技术,充填技术,三下开采技术,深矿井开采技术和特殊开采技术;煤层气资源勘查及综合评价,煤层气井下、地面抽采与综合利用;浆体管道参数,管道内浆体流态及其水力坡度,非均质流的浓度分布,速度分布和迁移速度等。
Fundamental principle and methods of mine development and mining, green mining technology, top coal caving mining technology, stowing technology, mining technology under buildings, water bodies and railways, mining technology in deep mine and untraditional mining technology; coalbed methane resources exploration and comprehensive evaluation, drainage and complex utilization of coal bed gas; slurry pipeline parameter, flow state and hydraulic gradient of slurry in pipeline, concentration distribution, velocity distribution and migration velocity of non-homogeneous flow.
2 露天开采理论及技术
Surface Mining Theory and Technology
露天开采工艺、边坡工程、智能(绿色)露天开采、计算机辅助设计、系统仿真技术与应用,露天矿爆破技术,系统可靠性分析。
Surface mining technology, slope engineering, technology and application of computer aided design and system simulation, blasting technology in surface mine, systems reliability analysis.
3 矿山压力与
矿井动力灾害防治技术
Rock Pressure and Control Technology of Shaft Dynamic Disaster
岩层变形、破坏与失稳规律及控制技术,采场与巷道及围岩矿山压力显现规律和支护技术,岩土工程应力分析;地质动力区划及在矿业中的应用,煤矿地下采掘活动诱发的煤与瓦斯突出、冲击地压、矿震等矿井动力灾害的防治理论与技术。
Law of deformation, destruction anddestabilizationand control technology of rock strata, strata behaviors law and supporting technique of stope, roadway and surrounding rock, stress analysis of geotechnical Engineering; geo-dynamic division and its application in the mining, preventing theory and technology of such dynamic disaster as coal and gas outburst, pressure bump andshock bump caused by underground mining activities.
4 矿井通风与安全
Mine Ventilation and Safety
空气流动基本理论、通风阻力和动力、风量分配与调节、通风系统与通风设计及矿井瓦斯、火灾、粉尘和水灾等的防治技术。
Basic theory of air flow, ventilation power and resistance, air flow distribution and regulation, ventilation system and its design, control technology of gas, fire, dust and water disaster.
5 矿业经济与数字矿山
Mining Economics and Digital Mine
矿业投资与成本、煤炭项目与资产评估及企业管理信息系统;建立三维矿区地质模型、开采模型的理论与方法、生产系统仿真与监控技术、矿井安全监测技术,采矿计算机辅助设计技术、矿山虚拟开采技术、信息管理系统和办公自动化开发技术。
Mining investment and cost, coal project and assets evaluation and enterprise management information system; theory and method of establishing 3D geological model and mining model of coal mine, technology of production system simulation and monitoring, monitoring technology of mine safety, computer aided design technique, virtual mining technology, information management system and OA developing technology.
6 矿物加工理论与技术
Theory and Technology of Mineral Processing
研究现代分析测试技术及工艺矿物学中的应用;研究重选、浮选、磁选、电选、化学选、湿法冶金与生物选矿等工艺理论和技术;多学科交叉,研究新工艺、新技术、新材料、新产品和新设备;重点开展应用技术和应用基础理论的研究。
研究矿物材料计算与设计及其改性药剂分子设计。
Study the application of the modern analytical and testing techniques and process mineralogy; Study the theory and technology of gravity concentration, flotation, magnetic separation, electrostatic separation, chemical selection, hydrometallurgy and biobeneficiation, etc.; Study the new technologies, new materials, new products and new equipments by multidisciplinary research; Focus on the application technology and application fundamental theory.
Study the calculation and design of the mineral materials and the modification agents for the molecule design thereof.
7 矿物资源综合开发利用
理论与技术
Mineral resources utilization theory and technology
以矿物岩石学为基础,矿物加工工程技术为手段,以矿物岩石材料为目标,研究金属矿、化石能源、非金属矿产等低品位、共伴生矿产、矿山固体废弃物及尾矿等工艺矿物学;研究高效、环保的资源化理论与产业化技术,研究煤系共伴生矿物开发利用,包括:有价元素提取、有益组分及有用矿物的分离、富集、直接利用或组合利用,实现无尾排放、无废排放的清洁生产。研究“城市矿山”技术。
Study the process mineralogy of metal ores, fossil energy, nonmetallic minerals, such as low-grade,ancillary and associated minerals,tailings and other solid waste. Study the theory and industrial technology on the highly efficient and environment-friendly resource recovery, including the valuable elements extraction, the separation, concentration and directly comprehensive utilization of the beneficial components and the usful minerals, so as to realize the clean production withouttailings and wastes. Study the technologies of “city mines”.
 
五、学制与学习年限(Program duration)
学制2.5年,最长学习年限一般4年。2.5 years of schooling with 4 years of maximum duration.
六、培养方式与方法(Modes and Methods)
(1)全日制专业学位硕士研究生采取学校和实践基地联合培养方式,部分研究生采取与实践基地合作的定单式培养模式。
The full-time professional degree master students adopt the joint training mode of the school and the practice base, and some graduate students adopt the order-based training mode of cooperation with the practice base.
(2)全日制专业学位硕士研究生实行双导师制。以校内导师为主,聘请企业内具有高级技术职称的专业工程技术人员担任副导师。校内导师负责制订研究生培养计划,组织开题、中期考核和学位论文答辩,指导项目研究和学位论文等工作,同时对研究生的思想品德、学术道德有引导、示范和监督责任;校外导师提供源于实际且具有应用价值的研究课题,协助解决学生开展学位论文工作所需的研究条件,参与实践实训和学位论文的指导、学位论文质量监督和答辩等各个环节,充分发挥双方优势,提高专业学位硕士研究生的综合素质和能力。
Full-time professional degree master students implement a double advisor system. The school advisor is the major advisor, and professional engineering and technical personnel with advanced technical titles in the company is employed as the deputy advisor. The instructor of the school is responsible for formulating the postgraduate training plan, organizing the opening of the topic, the mid-term assessment and the thesis defense, guiding the project research and the dissertation, and at the same time guiding, demonstrating and supervising the moral character and academic morality of the graduate students; the external advisor provides research topic with application value from the field and the research conditions required for students to carry out the dissertation work. The external advisor participates in the practice training and the guidance of the dissertation, the quality supervision and defense of the dissertation. It gives full play to the advantages of both sides and improve the comprehensive qualities and abilities of master students.
七、课程设置(Curriculum)
课程类别
Course Type
课程
编号
Course No.
课程名称
Course Name
学分
Credit
学时Hour
课内/试验
Class/test
开课学期
semester classes
开课单位
Class Department
备注
Remarks
Obligatory Courses
必修课
Common Courses
公共课
  科学社会主义理论与实践
Scientific Socialist Theoryand Practice
2 40 1 公共管理与法学院 8学分
  自然辩证法概论
Natural Dialectics
1 20 1
  第一外国语
First Foreign Language
4 80 1-2 外国语学院
  科技英语翻译
Sci-tech English Translation
1 20 1  
Basic Courses
基础课
  数值分析
Numerical Analysis
2 40 1 理学院 2学分
Specialized Courses
专业课
  现代采矿理论与方法
Modern Mining Theory and Method
2 40 2 矿业学院 任选3门,
6学分
  非线性岩石力学
Non-linear Rock Mechanics
2 40 2 力学与工程学院
  矿山灾害防治技术 2 40 2 矿业学院
  系统工程理论
Theory of System Engineering
2 40 2
  矿物深加工与矿物材料利用
Minerals Deep Processing and Material Utilization
2 40 2
  材料工艺学
Material Technology
2 40 2
Selective Courses
选修课
Designated Courses
指选课
  专业外语与文献阅读
Specialized Foreign
Language and Document Reading
1 20 2 矿业学院 2学分
  创新能力培养
Training Innovation Ability
1 20 3
Optional Courses
任选课
  矿井地质动力区划
Geo-dynamic Division
Method of Coal Mine
2 40 2 矿业学院 任选3门,6学分
  采矿工程数值模拟
Numerical Simulation about Mining Engineering
2 40 2
  现代支护技术
Modern Supporting Technology
2 40 2
  矿井高产高效新技术
New Technology for High-production and High-efficiency Coal Mine
2 40 2
  煤层气开发与利用技术
Coal bed Gas Development and Utilization Technology
2 40 2
  边坡稳定性控制技术
Control Technology of Rock Slope Stability
2 40 2
  矿井生产系统优化
Optimization for Mining Production System
2 40 2
  专家系统设计技术
及其在矿山中的应用
Design Technique and Application of ES in the Mining
2 40 2
  煤矿监测与控制技术
Monitoring and Control Technology of Coal Mine
2 40 2
  数字矿山构建技术及应用
Conformation and
Application of Digitall Mine
2 40 2
  矿业管理系统设计与应用
Design and Application of Mining’s Management System
2 40 2
  煤炭企业资产评估
Assets Evaluation for Mining Enterprise
2 40 2
  矿业信息技术
Information Technology in the Mining
2 40 2
  煤矿地质信息系统及其应用
Geological Information System and Its Application in Coal Mine
2 40 2
  矿山环境与现代采矿
Mining Environment and Modern Mining
2 40 2
  实验设计与实验方法
Experimental Design and Method
2 40 2
  现代仪器分析测试技术
Modern Instrument Analysis and Testing technology
2 40 2
  生物技术
Biotechnology
2 40 2
  矿物资源综合开发与
利用工艺学
Comprehensive Development and Utilization Technology of Mineral Resources
2 40 2
  现代无机化学合成方法
Modern Synthetic Method of Inorganic Chemistry
2 40 2
  胶体与界面化学
Colloid and Interface
Chemistry
2 40 2
Make-up Courses
补修课
  煤矿地质学
Geosciences of Coal Mine
  30 2 矿业学院 采矿工程方向
  采矿学
Coal Mining Sciences
  60 2
  井巷工程
Openings and Development Engineering of Shaft
  30 2
  矿井通风与安全
Ventilation and Safety of Coal Mine
  40 2
  结晶学及矿物学
Crystallography and Mineralogy
  40 2 矿业学院 矿物加工工程方向
  矿物加工学
Minerals Processing Technology
  40 2
必修环节
Obligatory Part
  实践总结报告
Practice Summary Report
1 20 3 矿业学院 2学分
  学术报告及学术活动
Academic Report and Activitie
1 20  
合计
Total
            26
 
 

专业代码:081803学科门类:工学
Code of Specialty: Department of Discipline:Engineers
一级学科:地质资源与地质工程 学分要求:40分
First-grade Discipline:geologic resources Credit Setting: 40
and geologic engineering
一、学科(专业)概况(Diciplines Instruction
地质工程专业前身是1993年设置的水文地质和工程地质专业,2000年获得硕士学位授予权,2005年得博士学位授予权。是辽宁工程技术大学的重点建设学科,在国内外有一定影响力。地质工程专业形成了工程地质、水文地质、环境地质及灾害地质、地质勘察与技术等4个稳定的研究方向。具有年龄结构合理、学历层次高,富有开拓创新意识,学术成果丰硕的师资队伍。本学科拥有工程地质勘查的大型仪器设备多台。多年来本学科先后承担了国家重点科技攻关、国家自然科学基金、省部级科研项目等多项,完成水电、煤炭、地矿、化工等行业的科研课题百余项,获省、部级科技进步奖10余项。地质工程专业培养的毕业生已成为工矿企事业单位及科研院所的中坚力量,为我国地质工程事业的发展做出了巨大贡献。
Geological engineering is the traditional advantage disciplines of Liaoning Technical University. Master of Geological Engineering authorize point approved in 2000,Enrollment began in 2000。The authorized point has a Master tutor team with reasonable age structure and higher levels of academic,it has Master tutor 10 now.The main research areas include evaluation of hydrogeology , engineering geology, mineral resources exploration technology, geological engineering survey , prediction theory and prevention techniques for geological disasters. Over the years the discipline has completed key national science and technology projects, ministerial and proviencial key projects, hydropower, petroleum, geology and mining, and chemical areas, of which 3 have been awarded ministerial and provincial Science and Technology Progress prizes .Some graduates go to the Liaoning Technical University (local), Tongji University and The Geology Institute of China Academy and etc.. Many graduates directly take part in the work after graduation and already become the technical principals and operational mainstays in their working units.
二、培养目标(Training Objectives
1.掌握马克思主义的基本理论,拥护中华人民共和国宪法,遵守法律、法规,热爱祖国和人民,树立强烈的事业心和积极进取精神,具有与时俱进的创新意识。
2、掌握地质工程学科扎实的基础理论和系统的专门知识,具有宽广的知识面。掌握一门外国语,能熟练阅读专业外文文献,并具有较强的听、说、写、译的能力。有较强的创新能力、实践能力,具备独立从事该学科研究工作和解决相关领域科学问题的综合科研能力。
3、身体健康,心理素质好,能胜任地质工程方面的科学研究和相关的地质工作。
三、学制与学习年限
学制3年,学习年限2-5年。
四、研究方向(Research Orientation
序号 名 称
Name
研究方向的范围及特点概述
The Scope of Research Orientation and Brief account of the Characteristic
1 工程地质
Engineering Geology
土体工程地质稳定性研究;岩体工程地质稳定性研究;岩土体及特殊岩土的工程性质与稳定性评价;工程动力地质作用评价。
The research studies the regional distribution characteristics and law of engineering geology, the stability of engineering soil and rock body and the engineering area, the environment effect of large-scale engineering; analyzes and predicts the various possible geological actions and engineering geology problems both in natural condition and the engineering construction, the numeral simulation of engineering geology, the feasibility study, the technical and economic evaluation, and the management and decision of engineering geology project.
2 水文地质
hydrogeology
地下水的赋存与运移规律;地下水环境演化规律与水污染治理方法与技术;矿山水害防治;地下水资源和地下热能的勘察、评价与开发;人类活动对地下水的影响研究。
The research studies the occurrence and migration characteristics of subsurface water, the environment evolutionary law of subsurface water, the administration method and technology of water pollution, the harness of mine water disaster, the survey, appraisal and development technology of underground water resource and underground heat, and the numerical simulation of hydrogeology, etc.
3 环境地质与灾害地质
Environmental geological evaluation and Environmental hazard geology
工程诱发的滑坡、崩塌、泥石流等灾害防治;地面沉降、地面塌陷机理及防治;土地功能退化机理及防治;矿山地质灾害的成因、风险评价及防治。
It is an interdisciplinary research of the sciences of the ecological environment, calamity and geology. It uses the latest achievements of physics, mathematics, and engineering geology, etc., to study the scientific theories of the change, analysis and appraise of the ecological environment geology; more over it studies the origin and risk appraisal theory of the geological disaster, and studies the theory, design method and engineering technique of defending the geological disaster so as to improve the ability of disaster prevention, fight and reduction.
4 地质勘察
与技术
Geological Exploration and Technology
地震、电磁、声波等工程勘探理论;岩土钻掘理论与技术;岩土工程测试技术;地质体结构构造和工程质量探测新技术和新方法。
The research evaluation and prediction of mineral resources prediction, technical and economic analysis, development of mining decision-making, integrated application of geological, technical, economic;and management of multi-disciplinary knowledge and mathematical statistics, quantitative analysis for evaluation of mineral resources such as fuzzy mathematics, the level of analysis, the gray system, sound data processing, neural networks. Factors in the evaluation of quantitative screening, assessment and evaluation of the results of model applications to conduct in-depth research.
 


六、课程设置(Curriculum
课程类别
Course Type
课程编号
Course No
课程名称
Course Name
学分
Credit
学时Hour
课内/试验
Class/test
开课学期semester classes 开课单位
Class Department
备注
Remarks
Academic Degree Comse
学位课
Common Course
公共课
  中国特色科学社会主义理论与实践研究 2   1 思政部 必修
  自然辩证法概论/马克思主义社会科学方法论 1   1 思政部 必修
  基础综合英语 3   1 外语系 过六级者
  学术综合英语 3   2 外语系 过六级者
  硕士生基础英语1 3   1 外语系 未过六级者
  硕士生基础英语2 3   2 外语系 未过六级者
  矩阵论 3   1 理学院 必修
  数值分析 3   2 理学院 必修
Basic Course
基础课
  高等流体力学 2 40 1 矿业学院 基础课和专业课之和:16学分
  高等土力学 3 60 2 矿业学院
  岩土工程数值模拟 2 40 2 矿业学院
Specialized Course
专业课
  工程地质分析原理 3 60 2 矿业学院
  地质灾害防治工程技术方法 2 40 2 矿业学院
  水文地质理论及工程应用 2 40 2 矿业学院
  地质图像处理
Treatment of Geological Images
2 40 2 矿业学院
Selective Course
选修课
Public Elective Course
公共选修课
  学术英语写作 1 20 2 培养单位 必选
  科学计算与数学建模 2 40 2 理学院 至少选修一门
  高等工程应用数学 2     矿业学院
  随机过程 2     理学院
  数理方程 2 40 2 理学院
  应用泛函分析 2     理学院
  最优化理论 2     理学院
  应用统计 2     理学院
Optional Courses
任选课
  科技学术讲座 2 40 2 矿业学院 必选
  资源与环境地质学导论
Introduction to Resource and Environmental Geology
2 40 2 矿业学院 至少选修两门
  现代岩矿测试技术
Modern Measuring Technique of Rock and Mineral
2 40 2 矿业学院
  地球物理勘探方法
Geophysical exploration methods
2 40 2 矿业学院
  地质工程研究新进展 2 40 2 矿业学院
  地下水数值模拟 2 40 2 矿业学院
  地下工程理论与实践 2 40 2 矿业学院
合计
Total
    40        
 


矿山安全与灾害防治二级学科紧紧围绕冲击地压、煤与瓦斯突出、自然发火等煤矿主要灾害发生机理、防治技术和装备等开展教学和科研工作,在矿井动力灾害预测与防治、煤矿火灾防治等方面具有显著优势,形成了以地质动力区划、流固耦合失稳理论、煤自燃量子化学、吸能防冲支护技术、低渗透储层增透技术等具有特色的研究成果。构建了以地质动力区划为基础、以模式识别概率预测为核心的矿井动力灾害预测理论和方法,实现了矿井动力灾害预测从单因素预测向多因素预测发展、从点预测向区域预测发展、从定性预测向定量预测发展。研发了冲击地压电荷法监测预警技术、高压水射流割缝技术卸压解危技术、快速让位吸能防冲支护技术及成套装备;创立了量子化学煤自燃理论,建立了煤自燃难易判定、自燃火灾预测预报、煤阻化改性、采空区隔氧惰化等一整套防灭火技术体系。研究成果在大同、神东、双鸭山、鹤壁、平庄、阜新等矿区得到了应用和推广,有效预防和控制了煤矿自然发火,保障了煤炭资源的安全高效开采。 矿物加工工程二级学科重点开展矿物资源绿色高效综合利用、功能性矿物材料开发与应用等方面的教学和研究工作,在煤及煤系伴生物清洁高效利用、功能矿物材料制备领域具有优势,形成了以低级煤提质技术、晶须材料制备技术、高纯精细化工产品制备技术、介孔材料制备技术、吸波材料制备技术、碳质新能源为特色的研究成果。基于煤炭净化理论及矿物有价元素提取、有益组分与有用矿物分离、富集、直接利用或组合利用理念,研发了“高硫褐煤脱硫技术”、“高钠煤脱钠技术”、“焦中煤再磨再选技术”、“中煤与煤矸石选择性碎磨矿工艺关键技术”;以功能微纳米材料制备技术、设计与计算为重大创新目标,研发了“辽宁菱镁矿制备水合碳酸镁晶须技术”、“海盐卤水制备高纯氧化镁技术”、“阜新丝光沸石制备吸波材料技术”。基于矿物组成、结构与性质演变理论,研发了天然石墨锂离子电池负极材料技术。研究成果在辽宁朝阳北票华源集团、万华集团、河北开滦集团等企业的12个大型煤矿、非金属矿得到了成功应用,创造了十几亿元的经济效益。 采矿工程二级学科主要针对智能化开采与装备、煤炭露天开采、煤炭开采地质保障等方面开展教学和研究工作,在复杂煤层地下开采、深部矿山压力与岩层控制、露天矿绿色安全开采、智能化开采与装备研发等领域具有优势,形成了以采场覆岩大结构控制、深部开采围岩控制、露天矿横采内排、边坡稳定性控制、智能化采矿装备、露天开采与环境保护一体化技术等独具特色的研究成果。创立了“特厚煤层采场覆岩大结构失稳理论”,提出了“深部高应力复杂条件下的围岩控制技术”;构建了“煤层复杂性评价体系”,建立了“360度沉浸式环幕虚拟现实系统”,研发了“CO2爆破技术及装备”。创建了“露天矿横采内排追踪压帮边坡稳定控制开采理论与技术体系”,研发了“倾斜巨厚煤层露天矿安全增效开采关键技术”,构建了“露天开采与环境保护一体化技术支撑体系”。创立了构造影响带理论,研发了矿井水害防治技术体系,提出了“矿井瓦斯赋存规律预测方法”,建立了岩浆岩分布规律推断方法;研究成果在阜新矿业(集团)有限责任公司、抚顺矿业集团有限责任公司、内蒙古平庄煤业(集团)有限责任公司、大同煤矿集团有限责任公司、神华集团有限责任公司等多个局矿得到了推广应用,取得20多亿元的经济效益。 矿业工程学科始建于1949年,是辽宁工程技术大学最具优势和特色的一级学科,下设采矿工程、矿物加工工程、矿山安全与灾害防治3个二级学科。1999年获准设立博士后科研流动站,2003年获一级学科博士学位授予权,2009年被确定为辽宁省具有核心竞争力一流重点建设学科,2014年入选辽宁省一流特色学科,2017年获批辽宁省一流学科。采矿工程二级学科1983年获硕士学位授予权,1993年获博士学位授予权;采矿工程专业于2009年通过教育部工程教育专业认证,于2013年获批为教育部综合改革试点专业;在2016年度辽宁省普通高等学校本科专业综合评价中排名第一。安全技术及工程二级学科2002年获批辽宁省重点学科,2007年获批国家重点(培育)学科。矿物加工工程二级学科2003年获博士授予权。
学科拥有一支职称、学历、年龄、学缘结构合理的教师队伍,现有专职教师70人,其中教授24人、副教授26人,具有博士学位的教师63人;拥有1个国家级教学团队和1个辽宁省高等学校创新团队;拥有辽宁省优秀创新团队1个,国家安全生产专家6人,“653”工程首席专家2人、辽宁省攀登学者1名,辽宁省特聘教授2人,辽宁省"百千万人才工程"百层次人选6名、千层次人选8名,辽宁省高层次科技专家库专家3名,辽宁省优秀人才10名,辽宁省优秀青年骨干教师2名,辽宁省青年科技奖获得者2名,全国优秀科技工作者2人,辽宁省杰出科技工作者1人,辽宁省优秀科技工作者3人,辽宁省教指委矿业类专家委员2名。
学科拥有辽宁省煤炭资源安全开采与洁净利用工程中心、煤矿虚拟仿真实验教学中心、辽西古生物地质博物馆等7个省部级研究中心和平台;拥有各型仪器设备近700余台(套),总价值4500余万元,其中价值10万元以上的仪器设备90余台(套),MTS-815型岩石力学实验系统、X射线荧光光谱仪等大型精密设备30余台(套)。
学科成立以来,共培养全日制本科生10000余名,培养博士、硕士研究生及国际留学生3000余名,为我国煤炭行业输送了大批的优秀人才,为我国煤炭事业发展做出了重要贡献。
学院师资力量雄厚,现有专业教师72人,其中教授、副教授47人,具有博士学位63人。其中中国工程院及外籍院士4人(含外聘),国家级专家7名,辽宁省攀登学者、特聘教授3人,辽宁省百千万人才工程百人层次5人,高等学校教学指导委员会及分委会委员5人,省部级以上人才称号获得者20余名。
近5年来,学院承担国家级课题70余项、省部级及企事业委托项目200余项,获国家科技进步奖3项、省部级科技进步奖51项,编写与修订国家行业法律、法规、标准和规范9项,出版专著和教材50余部,发表高水平文章530余篇,授权发明专利43项。与美国、俄罗斯、德国、澳大利亚、日本、越南以及国内多所高校科研院所和大型能源矿山企业建立了长期稳定的交流与合作关系。
辽宁工程技术大学矿业学院的联系方式 
地址:辽宁省阜新市中华路47号致远楼 电话:0418-5110040  邮政编码:123000  

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