專業代碼:430119 學科門類:工程碩士
Code of Specialty:430119 Department of Discipline:Master of Engineering
工程領域:礦業工程 學分要求:26
Engineering field:Mining Engineering Credit Setting:26
一、領域概況(FieldInstruction)
礦業工程是學校歷史最悠久的優勢學科,為遼寧省首批“雙一流”建設學科,先后獲批國家第二類特色專業、遼寧省礦業工程專業緊缺人才培養基地和遼寧省示范性專業,擁有煤炭資源安全開采與潔凈利用工程中心、煤礦虛擬仿真實驗教學中心等7個省級科研平臺。1984年獲碩士學位授予權,1993年獲博士學位授予權,1999年獲批設立博士后科研流動站,2003年獲礦業工程一級學科博士學位授予權。
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 and
exemplarydisciplines 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.
學科現有博士生導師39人、碩士生導師54人,擁有國家安全生產專家、國家“653”工程首席專家等學術造詣較深的學術帶頭人與結構合理的學術梯隊,重點圍繞礦井開采理論與技術、露天開采理論及技術、礦山壓力與巖層控制、礦井動力災害防治技術、礦井通風與安全、礦業經濟與數字礦山、礦物加工理論與技術和礦物資源綜合開發利用理論與技術等方向開展研究工作,在礦井動力災害防控、露天開采、礦井火災防控等領域具有突出優勢和鮮明特色。近5年,先后主持完成國家科技攻關項目、國家自然科學基金、“863計劃”、“973計劃”等國家級項目21項,其中獲得國家科技進步二等獎2項、國家教學成果二等獎1項、省部級科技進步獎23項、遼寧省教學成果獎6項;培養博、碩士及留學生研究生共計682名,為煤炭行業輸送了大批高層管理及高級工程技術人才,為我國經濟建設和煤炭工業的發展做出了突出貢獻。
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、培養目標(Objectives)
本學科把立德樹人作為碩士研究生教育的根本任務,瞄準國際礦業工程領域發展前沿,以礦產資源安全綠色開發與潔凈利用為主要研究內容,重點服務于礦井開采理論與技術、露天開采理論及技術、礦山壓力與巖層控制、礦井動力災害防治技術、礦井通風與安全、礦業經濟與數字礦山、礦物加工理論與技術和礦物資源綜合開發利用理論與技術等領域,培養德智體美全面發展、具備較強的工程實踐能力和創新能力、較強的實際問題解決能力、良好的職業素養和具備國際競爭力的應用研究型拔尖人才。
This subject regards cultivating people with
highmoralvaluesas 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、培養要求(Requirements)
(1)應較好地掌握馬克思主義、毛澤東思想、鄧小平理論、“三個代表”重要思想、科學發展觀及習近平新時代中國特色社會主義思想理論,擁護黨的基本路線和方針、政策,熱愛祖國和人民,遵紀守法,品行端正,具有良好的職業道德和奉獻精神,積極為我國經濟建設和社會發展服務,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)應掌握所從事的程領域的堅實基礎理論和寬廣專業知識;掌握解決復雜礦業工程問題的先進技術方法和現代技術手段;具有與學位相匹配的創新意識及能力和獨立擔負礦井開采理論與技術、露天開采理論及技術、礦山壓力與巖層控制、礦井動力災害防治技術、礦井通風與安全、礦業經濟與數字礦山、礦物加工理論與技術和礦物資源綜合開發利用理論與技術等工程技術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)應掌握至少一門外國語,能較為熟練地閱讀與礦業工程領域有關的外文資料,具有一定的寫作和翻譯能力,并具備一定的國際學術交流水平;掌握至少一種計算機語言及編程方法,能熟練運用計算機技術進行設計、模擬、分析等,解決礦業工程領域中有關問題。
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)
序號
No. |
名稱
Name |
研究方向的范圍及特點概述
Research Orientation and Characteristic |
1 |
礦井開采理論及技術
Underground mining theory and technology |
礦井開拓開采基本原理與方法,綠色開采技術,放頂煤開采技術,充填技術,三下開采技術,深礦井開采技術和特殊開采技術;煤層氣資源勘查及綜合評價,煤層氣井下、地面抽采與綜合利用;漿體管道參數,管道內漿體流態及其水力坡度,非均質流的濃度分布,速度分布和遷移速度等。
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 |
露天開采理論及技術
Surface Mining Theory and Technology |
露天開采工藝、邊坡工程、智能(綠色)露天開采、計算機輔助設計、系統仿真技術與應用,露天礦爆破技術,系統可靠性分析。
Surface mining technology, slope engineering, technology and application of computer aided design and system simulation, blasting technology in surface mine, systems reliability analysis. |
3 |
礦山壓力與
礦井動力災害防治技術
Rock Pressure and Control Technology of Shaft Dynamic Disaster |
巖層變形、破壞與失穩規律及控制技術,采場與巷道及圍巖礦山壓力顯現規律和支護技術,巖土工程應力分析;地質動力區劃及在礦業中的應用,煤礦地下采掘活動誘發的煤與瓦斯突出、沖擊地壓、礦震等礦井動力災害的防治理論與技術。
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 |
礦井通風與安全
Mine Ventilation and Safety |
空氣流動基本理論、通風阻力和動力、風量分配與調節、通風系統與通風設計及礦井瓦斯、火災、粉塵和水災等的防治技術。
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 |
礦業經濟與數字礦山
Mining Economics and Digital Mine |
礦業投資與成本、煤炭項目與資產評估及企業管理信息系統;建立三維礦區地質模型、開采模型的理論與方法、生產系統仿真與監控技術、礦井安全監測技術,采礦計算機輔助設計技術、礦山虛擬開采技術、信息管理系統和辦公自動化開發技術。
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 |
礦物加工理論與技術
Theory and Technology of Mineral Processing |
研究現代分析測試技術及工藝礦物學中的應用;研究重選、浮選、磁選、電選、化學選、濕法冶金與生物選礦等工藝理論和技術;多學科交叉,研究新工藝、新技術、新材料、新產品和新設備;重點開展應用技術和應用基礎理論的研究。
研究礦物材料計算與設計及其改性藥劑分子設計。
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 |
礦物資源綜合開發利用
理論與技術
Mineral resources utilization theory and technology |
以礦物巖石學為基礎,礦物加工工程技術為手段,以礦物巖石材料為目標,研究金屬礦、化石能源、非金屬礦產等低品位、共伴生礦產、礦山固體廢棄物及尾礦等工藝礦物學;研究高效、環保的資源化理論與產業化技術,研究煤系共伴生礦物開發利用,包括:有價元素提取、有益組分及有用礦物的分離、富集、直接利用或組合利用,實現無尾排放、無廢排放的清潔生產。研究“城市礦山”技術。
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、學制與學習年限(Program duration)
學制2.5年,最長學習年限一般4年。2.5 years of schooling with 4 years of maximum duration.
六、培養方式與方法(Modes and Methods)
(1)全日制專業學位碩士研究生采取學校和實踐基地聯合培養方式,部分研究生采取與實踐基地合作的定單式培養模式。
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)全日制專業學位碩士研究生實行雙導師制。以校內導師為主,聘請企業內具有高級技術職稱的專業工程技術人員擔任副導師。校內導師負責制訂研究生培養計劃,組織開題、中期考核和學位論文答辯,指導項目研究和學位論文等工作,同時對研究生的思想品德、學術道德有引導、示范和監督責任;校外導師提供源于實際且具有應用價值的研究課題,協助解決學生開展學位論文工作所需的研究條件,參與實踐實訓和學位論文的指導、學位論文質量監督和答辯等各個環節,充分發揮雙方優勢,提高專業學位碩士研究生的綜合素質和能力。
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、課程設置(Curriculum)
課程類別
Course Type |
課程
編號
Course No. |
課程名稱
Course Name |
學分
Credit |
學時Hour
課內/試驗
Class/test |
開課學期
semester classes |
開課單位
Class Department |
備注
Remarks |
Obligatory Courses
必修課 |
Common Courses
公共課 |
|
科學社會主義理論與實踐
Scientific Socialist Theoryand Practice |
2 |
40 |
1 |
公共管理與法學院 |
8學分 |
|
自然辯證法概論
Natural Dialectics |
1 |
20 |
1 |
|
第一外國語
First Foreign Language |
4 |
80 |
1-2 |
外國語學院 |
|
科技英語翻譯
Sci-tech English Translation |
1 |
20 |
1 |
|
Basic Courses
基礎課 |
|
數值分析
Numerical Analysis |
2 |
40 |
1 |
理學院 |
2學分 |
Specialized Courses
專業課 |
|
現代采礦理論與方法
Modern Mining Theory and Method |
2 |
40 |
2 |
礦業學院 |
任選3門,
6學分 |
|
非線性巖石力學
Non-linear Rock Mechanics |
2 |
40 |
2 |
力學與工程學院 |
|
礦山災害防治技術 |
2 |
40 |
2 |
礦業學院 |
|
系統工程理論
Theory of System Engineering |
2 |
40 |
2 |
|
礦物深加工與礦物材料利用
Minerals Deep Processing and Material Utilization |
2 |
40 |
2 |
|
材料工藝學
Material Technology |
2 |
40 |
2 |
Selective Courses
選修課 |
Designated Courses
指選課 |
|
專業外語與文獻閱讀
Specialized Foreign
Language and Document Reading |
1 |
20 |
2 |
礦業學院 |
2學分 |
|
創新能力培養
Training Innovation Ability |
1 |
20 |
3 |
Optional Courses
任選課 |
|
礦井地質動力區劃
Geo-dynamic Division
Method of Coal Mine |
2 |
40 |
2 |
礦業學院 |
任選3門,6學分 |
|
采礦工程數值模擬
Numerical Simulation about Mining Engineering |
2 |
40 |
2 |
|
現代支護技術
Modern Supporting Technology |
2 |
40 |
2 |
|
礦井高產高效新技術
New Technology for High-production and High-efficiency Coal Mine |
2 |
40 |
2 |
|
煤層氣開發與利用技術
Coal bed Gas Development and Utilization Technology |
2 |
40 |
2 |
|
邊坡穩定性控制技術
Control Technology of Rock Slope Stability |
2 |
40 |
2 |
|
礦井生產系統優化
Optimization for Mining Production System |
2 |
40 |
2 |
|
專家系統設計技術
及其在礦山中的應用
Design Technique and Application of ES in the Mining |
2 |
40 |
2 |
|
煤礦監測與控制技術
Monitoring and Control Technology of Coal Mine |
2 |
40 |
2 |
|
數字礦山構建技術及應用
Conformation and
Application of Digitall Mine |
2 |
40 |
2 |
|
礦業管理系統設計與應用
Design and Application of Mining’s Management System |
2 |
40 |
2 |
|
煤炭企業資產評估
Assets Evaluation for Mining Enterprise |
2 |
40 |
2 |
|
礦業信息技術
Information Technology in the Mining |
2 |
40 |
2 |
|
煤礦地質信息系統及其應用
Geological Information System and Its Application in Coal Mine |
2 |
40 |
2 |
|
礦山環境與現代采礦
Mining Environment and Modern Mining |
2 |
40 |
2 |
|
實驗設計與實驗方法
Experimental Design and Method |
2 |
40 |
2 |
|
現代儀器分析測試技術
Modern Instrument Analysis and Testing technology |
2 |
40 |
2 |
|
生物技術
Biotechnology |
2 |
40 |
2 |
|
礦物資源綜合開發與
利用工藝學
Comprehensive Development and Utilization Technology of Mineral Resources |
2 |
40 |
2 |
|
現代無機化學合成方法
Modern Synthetic Method of Inorganic Chemistry |
2 |
40 |
2 |
|
膠體與界面化學
Colloid and Interface
Chemistry |
2 |
40 |
2 |
Make-up Courses
補修課 |
|
煤礦地質學
Geosciences of Coal Mine |
|
30 |
2 |
礦業學院 |
采礦工程方向 |
|
采礦學
Coal Mining Sciences |
|
60 |
2 |
|
井巷工程
Openings and Development Engineering of Shaft |
|
30 |
2 |
|
礦井通風與安全
Ventilation and Safety of Coal Mine |
|
40 |
2 |
|
結晶學及礦物學
Crystallography and Mineralogy |
|
40 |
2 |
礦業學院 |
礦物加工工程方向 |
|
礦物加工學
Minerals Processing Technology |
|
40 |
2 |
必修環節
Obligatory Part |
|
實踐總結報告
Practice Summary Report |
1 |
20 |
3 |
礦業學院 |
2學分 |
|
學術報告及學術活動
Academic Report and Activitie |
1 |
20 |
|
合計
Total |
|
|
|
|
|
|
26 |