本专业培养适应我国石油工业发展需要,德、智、体全面发展,具有录井方向的基本理论、基本知识和基本技能,能从事油气勘探与开发过程中的现场录井与工程管理、资料解释评价与综合地质研究、录井仪器应用与研发等方面工作,基础扎实、知识面广、实践能力强、适应能力强、有一定专业特长并富有创业精神和创新能力的高级复合型、实用型人才。
本专业按照“确保通识教育、加强学科基础、凝练专业核心、强化实践能力、拓宽专业方向”原则进行人才培养。本专业毕业生应获得以下几方面的知识和能力:
1. 系统掌握本专业必需的基础理论、基本知识和基本技能;
2.系统掌握录井资料采集、分析、应用和评价的原理和方法,并具有一定的录井仪器设计和维护的能力;
3. 具有综合利用所学的专业知识解决实际问题并能够承担现场录井工作的基本能力,具备一定的创新意识和批判性思维;
4.掌握文献检索和其他信息获取的方法,具有独立获取知识和了解专业发展动态的能力,具备一定的科学研究、设备研发和组织管理的能力;
5.具备正确的世界观、人生观和价值观,具有良好的思想道德品质、团结协作精神和高度的社会责任感;
6.具备必要的自然科学基础知识和良好的人文社会科学素养,掌握一门外国语,能顺利地阅读专业文献,并具有一定的听、说、写能力;
7.具有健康的体魄和良好的心理素质,具有吃苦耐劳、适应不同地区的生活和工作环境的能力。
1、主干学科:勘查技术与工程、仪器科学与技术、钻井工程。
2、学位课程:C语言程序设计、电工与电子技术、数字电子技术、地质学基础、普通岩石学、油气地球化学、录井地质学、录井工程与方法、录井仪器原理、综合录井实验。
3、主要实践性教学环节:面向对象程序设计课程设计、基础地质实习、录井地质学课程设计、综合录井生产实习、毕业设计。
本专业方向全国首办,国内唯一,融合了石油勘探开发与信息技术领域多个专业方向的理论与技术;
针对录井行业实践性强的特点,加强实践环节的投入与动手能力的培养,实现了学校教育与企业需求的无缝对接,体现了理论教学与工程实践相结合的特色。
学生在毕业时应达到德育培育目标和大学生体质健康标准,应获得最低总学分169.5学分,其中课内理论必修课104.5学分,实践教学32学分,选修课(含通识教育选修课8学分)33学分。自主发展计划10学分。
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注:1. 新生入学后通过英语水平测试(相当于英语六级水平),或者已通过托福(80分)或雅思英语(6分)考试的,奖励6个学分,修读《高级英语》课程;2.《马克思主义基本原理概论》、《思想道德修养与法律基础》和《毛泽东思想和中国特色社会主义理论体系概论》3门课程分别安排8学时、16学时和16学时用于学生课外研习。
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| 注:通识选修课程由学校提供,分为人文科学与社会科学、语言学习与跨文化交际、自然科学与现代技术和艺术欣赏与体育健康4个模块,本专业学生应在人文科学与社会科学模块中至少选修2个学分。修业年限内应至少取得10个通识教育选修学分。人文素质教育、大学艺术、心理健康教育、职业发展规划与就业指导为限定通识教育选修课程,不计入上述模块中。不得重复修读本专业必修课程中相同或相近的课程。
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学生应取得10个自主发展计划学分,具体详见《长江大学第二课堂学分管理办法(试行)》。
注:统计实践教学环节占总学时的比例时,含集中性实践教学环节,单设实验课、课内上机、实践及实验学时(集中性实践教学环节按每周20学时计)。
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| 录井专业概论 Introduction to mud logging
| | 地球科学概论 Introduction of earth geology
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| 基础地质实验 Experiments of basic geology
| | C语言程序设计 C language programming
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| Introduction to drilling engineering
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| 沉积岩石学 Sedimentary petrology
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| Electrical and electronic technology
| | Experiments of electrical and electronic technology
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| Digital electronic technique
| | Experiments of digital electronic technique
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| | | Mud logging method and technique
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| Experiments of mud logging instrument
| | Principle of mud logging instrument
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| 地震勘探原理 Seismic Survey Principle
| | Experiments of mud logging analytical
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| Object-oriented programming
| | Mud logging information technology
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| Sensors and testing technology
| | New technology of mud logging
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| MATLAB程序设计 MATLAB programming
| | 地球物理测井 Geophysical well logging
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| | | Computer network technology and application
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| | | Mineral resources and engineering exploration policies and regulations
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| | | Oil and gas field exploration and resource evaluation
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| | | Horizontal well drilling technology
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| Oil and gas enterprise management
| | 地质软件应用 Geological software application
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| 中外油气田 Chinese and foreign oil and gas fields
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| Literature retrieval and utilization
| | 录井专业英语 English for mud logging
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