


































Global Research in Higher Education 
ISSN 2576-196X (Print) ISSN 2576-1951 (Online) 

Vol. 8, No. 1, 2025 

www.scholink.org/ojs/index.php/grhe 

9 

 

Original Paper 

Research on Teaching Reform of Civil Engineering Construction 

Course 

Kong Zhe
1
, Guo Yuanxin

2*
, Qiu Ziming

1
, Yang Chuanli

1
 & Liu Yang

1
 

1
 College of civil engineering, Qingdao City University, Qingdao, China  

2
 College of civil engineering and architecture, Qingdao Agricultural University, Qingdao, China 

*
 Guo Yuanxin, E-mail: guoyuanxin@qau.edu.cn 

 

Received: November 20, 2024 Accepted: December 10, 2024  Online Published: December 16, 2024 

doi:10.22158/grhe.v8n1p9            URL:http://dx.doi.org/10.22158/grhe.v8n1p9 

 

Abstract 

In light of the long-standing and prominent issues in the teaching of the Civil Engineering Construction 

course, such as the simplistic teaching method, the severe disconnection between theoretical teaching 

and practical teaching, the lack of learning initiative and participation among students, the 

insufficiency of online teaching resources, and the insufficient manifestation of curriculum 

characteristics, based on the student-centered concept, through innovative teaching design, the 

restructuring of course content, and integrated teaching approaches, a new teaching model of “Three 

Rings and Six Integration” is constructed. That is, through the teaching design of “before class, 

during class, and after class”, the integration of teaching materials and subject frontiers, theory and 

virtual reality, offline and online resources, evaluation and teaching activities, teaching and scientific 

research, and ideology and politics and knowledge transfer is achieved. In combination with the 

teaching content of the course, inquiry-based teaching is carried out, and the teaching evaluation 

method of the course is innovated. 

Keywords 

civil engineering construction, reform in education, Curriculum construction 

 

1. Introduction 

“Civil Engineering Construction” is a compulsory professional course available for junior students 

majoring in civil engineering and intelligent construction. After analyzing the teaching content and 

knowledge structure of this course, the following characteristics are identified: (1) The knowledge 

structure of this course encompasses building materials, civil engineering survey, structural mechanics, 

and another related knowledge, making it comprehensive. (2) This course is closely associated with 



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civil engineering production, and most of the knowledge points are derived from the summary of 

construction experience, thus having strong practicality. (3) With the advancement and progress of 

science and technology, new materials and new processes keep emerging constantly, so it demonstrates 

relatively obvious timeliness. 

 

2. Teaching Pain Points 

2.1 Textbook Content Lags Behind 

With the rapid development and progress of science and technology, although the textbooks have been 

revised for many times, some contents of the textbooks have failed to keep pace with the development 

of the industry in time, resulting in outdated teaching contents and lack of cutting-edge and practical. 

2.2 Outdated Teaching Methods 

Most of the traditional teaching methods are based on teachers teaching theoretical knowledge, 

supplemented by blackboard writing and multimedia, abstractly teaching complex civil engineering 

construction technology and methods. Students’ learning initiative and participation are not enough, 

which is not conducive to the cultivation of students’ ability to actively explore problems and 

innovation 

2.3 Lack of Online Teaching Resources 

Many engineering practice cases are needed in the teaching process of Civil Engineering Construction. 

At present, the development of construction technology is accelerating, and new engineering cases are 

emerging in an endless stream. However, the construction of curriculum resources is not systematic, 

which cannot meet the needs of teaching, especially the needs of online and offline mixed teaching. 

2.4 Insufficient Practical Aspects 

Theory teaching is not closely connected with practice, and course design is often superficial. The 

interval between production practice and course in construction site is long, and the process of 

production practice is shallow, which is difficult to achieve the established effect of combining theory 

and practice. 

 

3. Measures and Methods of Teaching Reform 

With teaching pain points as the logical starting point, cause analysis as the important basis, moral 

education as the value of the guidance, from the teaching content, methods, resources, assessment and 

evaluation, ideological and political elements and other aspects of innovative reform, explore the 

formation of the “Three Rings and Six Integration” teaching innovation path. 

3.1 The “Three Rings” Design Highlights the Advanced Nature of the Course 

3.1.1 Before Class: Students Find Problems and Ask Questions in the Process of Self-Study 

Teachers publish guide task lists and tests on the online learning platform, and students learn by 

themselves. The teacher grasps the students’ learning situation and accurately locates the teaching plan. 



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3.1.2 During Class: Teachers and Students Analyze and Solve Problems Together 

CBL (Case-Based Learning) teaching method is adopted in the teaching process. It is a group discussion 

teaching method that is based on construction cases, student-centered, and problem oriented. Its core is 

to guide students to actively learn and solve problems through real cases, so as to deepen understanding 

and master knowledge. 

The teaching method aims to increase students’ interest in learning, help students internalize knowledge, 

and stimulate students’ interest and motivation in learning through real cases and problems. Enabling 

students to transform theoretical knowledge into practical skills is conducive to cultivating talents with 

innovative spirit and practical ability. 

3.1.3 After Class: Expansion and Improvement, In-depth Exploration, Induction and Summary 

After class, teachers track students’ learning progress at any time, supervise and help them consolidate 

knowledge, deepen teaching content, and obtain teaching feedback. Specifically, it includes one-on-one 

discussions in offline office hours, online learning platforms publishing voting and Q&A sessions to 

understand students’ mastery, and common and typical problems reflected in them will be used as 

generative resources for feedback in the next class. 

3.2 The “Six Integration” Teaching Method Breaks the Limitation of Time and Space  

3.2.1 The Integration of Teaching Materials and Academic Foreland Reconfigures the Hierarchical 

Content System 

According to the target of talent training and graduation requirements, the logical relationship between 

knowledge is deeply explored. The teaching team adopts the network analysis system to build the core 

knowledge graph of the course. In combination with the core knowledge map, the teaching team breaks 

the original knowledge system of the textbook, organically integrates ideological and political elements, 

disciplinary frontiers, and practical cases, and reconstructs the stepped content system to form three 

knowledge modules-course introduction, construction technology, and construction organization, which 

solve the problems of the course being difficult, the teaching content being not logical, and lack of 

frontier and innovation. 

3.2.2 The Integration of Theory and Virtual Reality Establishes an Integrated Teaching Model 

Due to the large number of students in university classes, it is difficult for teachers to fully ensure the 

safety of students by taking students to the actual construction site for practical teaching of civil 

engineering construction. BIM (Building Information Modeling) and VR (Virtual Reality) technologies, 

as the development direction of building informatization, integrate big data, Internet and cloud 

computing into the design, construction and operation and maintenance of buildings. It can effectively 

combine theory with practice and improve students' innovative ability. In the teaching process, the BIM 

model produced in advance is imported into the VR platform to form a simulation teaching system, 

leading the innovation of teaching methods. 

 



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With the help of immersive VR helmets, students can enter virtual construction sites anytime and 

anywhere, and have in-depth experiences and learning of site management, safety management, 

construction techniques. This innovative teaching method effectively compensates for the regret that 

students cannot frequently visit the construction site in traditional teaching, making the learning process 

more practical and enhancing students’ practical and problem-solving abilities. 

3.2.3 The Integration of Offline and Online Resources Emphasizes Innovative Course Resources  

After years of collection and collation, a wealth of online and offline resources have been built, including 

construction case database, ideological and political elements database, auxiliary teaching materials. 

Students can study selectively according to their own characteristics. At the same time, a large number 

of Case-Based Learning (CBL) is introduced into the course teaching to highlight the novelty and 

effectiveness of the teaching content. 

The specific characteristics are shown in the following six characteristics, which are objectives, 

focusing on a specific type of construction tasks; Timeliness, keeping pace with rapidly evolving 

construction technology; Authenticity, to develop students’ ability to solve complex problems; 

Typicality, closely related to the knowledge points taught in class; Systematic, covering important 

knowledge points in teaching; Ideological and political elements, cultivate students’ spirit of 

responsibility and professionalism. 

In the course of teaching, online teaching and offline teaching are combined. In offline teaching, 

teachers first introduce knowledge points by sharing cases, then carry out theoretical knowledge 

learning, guide students to solve practical problems with theoretical knowledge, and improve students’ 

ability to analyze and solve problems. Online teaching is the use of construction cases to assist learning, 

including three links, which are pre-class preparation, analysis and discussion in class, and extension 

after class. 

3.2.4 The Integration of Evaluation and Teaching Activities Forms a Process Evaluation Mechanism  

In view of the single and one-sided teaching evaluation method, the teaching team of Civil Engineering 

Construction introduced the teaching evaluation mechanism of OBE (Outcomes Based Education). 

According to national development needs, industrial development needs, employer needs, school 

development positioning and teachers’ and parents’ expectations, the learning outcome needs are 

determined, and then the learning outcome is decomposed into the determination of training programs, 

and then the learning process is implemented. In this process, the teacher team, curriculum system and 

related support conditions need to be implemented. Conversely, these factors will also affect the 

implementation of the learning process, to evaluate the training program, to evaluate the learning 

results, and to require the learning results to meet various needs. 

In the teaching process, formative evaluation is adopted to collect students’ learning progress and 

feedback in time so as to adjust teaching strategies. Formative evaluation can be carried out through 

various forms such as classroom observation, homework analysis, group discussion report, mid-term 



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inspection, etc. Based on the evaluation results, provide timely feedback to students, point out their 

strengths and weaknesses in the learning process, and give suggestions for improvement. At the same 

time, the teaching team will also reflect on and improve the teaching methods and strategies according 

to the evaluation results, in order to continuously improve the teaching quality. 

3.2.5 The Integration of Teaching and Scientific Research Reflects the High Quality of the Course 

Content 

During the process of teaching implementation, teaching is taken as the lead to propose research topics 

for scientific research as scientific research support. Meanwhile, scientific research can indicate the 

direction for industrial upgrading and provide technical support. Industry can offer industry guidance 

and resources for personnel training, which will have a reciprocal effect on teaching. Conversely, 

teaching can supply industry with specialized talents. Industry can provide a research platform and 

achievement transformation for scientific research, and scientific research can offer technical support 

for teaching. In the teaching process, we always adhere to the guidance of scientific research and utilize 

relevant scientific research projects to promote students’ thinking, stimulate their exploration ability 

and cultivate the scientific spirit. 

Based on a number of research projects of the teacher team, including “A Reusable Sleeve Grouting 

Fullness Monitoring Tool”, “Numerical Simulation Study on the Bending Performance of Prefabricated 

Reinforced Concrete Composite Beams” and other university-level projects, the advantages of research 

resource platform are fully utilized, and students are encouraged to participate in scientific research 

innovation practice through the full tutor system of undergraduates and the multi-channel scientific 

research projects. With scientific research projects as the carrier, undergraduate students are fully 

guaranteed to participate in scientific research innovation practice and cultivate scientific research 

innovation ability. Adhere to the guidance of scientific research, and use the relevant scientific research 

projects to promote students’ thinking, stimulate students’ exploration ability and cultivate scientific 

spirit. 

3.2.6 The Integration of Ideology and Politics with Knowledge Teaching Achieves All-Round Education 

In addition to focusing on subject knowledge and skills, process and teaching methods, this course 

gives full play to the collective wisdom of the teaching team, forms a joint force for educating people, 

and fully taps into four ideological and political elements: engineering consciousness and professional 

skills, engineering ethics, artisans of great powers, and feelings of family and country. Five basic 

knowledge links of “engineering material cognition (engineering object), construction machinery 

familiarity (engineering machinery), construction technology and method mastery (engineering means), 

construction quality standard understanding (engineering specifications), defect problem disposal 

(engineering innovation)” are proposed. The “salt” of ideology and politics dissolves in the “soup” of 

curriculum, and moistens things silently into the whole process of teaching and learning. 

 



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4. Conclusion 

Through this course reform and innovation, students’ learning interest and participation have been 

heightened, making the learning process more vivid and engaging, and stimulating students’ learning 

appetite and enthusiasm. Meanwhile, by means of practical operation and roaming learning in the 

virtual environment, students can consolidate and deepen their theoretical knowledge in practice and 

enhance their practical skills. The construction and sharing of online digital resources offer students a 

convenient approach to learning and achieve the improvement of teaching quality. 

 

References 

Alok. V. (2017). Exploration on Teaching Reform of Civil Engineering Construction Organization 

Course Based on BIM Technology. Indian Journal of Public Health Research & Development, 

3(5). 

Cui, W. J., Zhao, C. K., Hou, D. S., & Qu, C. P. (n.d.). Civil Engineering Construction Teaching 

Innovation Facing Requirements of Emerging Engineering and Intelligent Construction. In China 

Metallurgical Education (pp. 19-24). 

Li, X. L., Wang, E. M., Bo, Y., & He, D. D. (n.d.). Discussion on teaching reform of “Civil 

Engineering Construction” course under the background of new engineering. Anhui Architecture, 

128-130. 

Pan, C. G., Chen, K. Y., & Shen, X. Y. (n.d.). Research on Teaching Reform of Civil Engineering 

Construction Course under the Background of New Engineering. IOP Conference Series: Earth 

and Environmental Science, 062011. https://doi.org/10.1088/1755-1315/510/6/062011 

Qiao, C. X., Yu, Y., Ma, X. H., & Huang, Y. H. (2023). Research on the Teaching Reform of the 

Course “Civil Engineering Construction Organization and Management” under the Background of 

New Engineering. International Journal of Mathematics and Systems Science, 6(4).  

Zhao, W., Liu, L. G., & Zhang, W. (2022). The Teaching Practice Reform Based on Virtual Simulation 

Technology Take the Course of “Civil Engineering Construction Technology” as an Example. 

2022 5th International Conference on Humanities Education and Social Sciences. 

https://doi.org/10.2991/978-2-494069-89-3_153 

 

 

https://doi.org/10.1088/1755-1315/510/6/062011
https://doi.org/10.2991/978-2-494069-89-3_153

