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Journal articles on the topic 'Construction technology'

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1

Chen, Mei Fang, Yan Li, and Wei Tu. "The Platform Designing of Resources Construction Based on Virtual Synergistic Technology." Advanced Materials Research 765-767 (September 2013): 841–44. http://dx.doi.org/10.4028/www.scientific.net/amr.765-767.841.

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As the development of synergistic technology application into educational fields, synergistic learning and synergistic working have been hot spots. The article discussed the Synergistic technology. It adopted the concept on Resources Constructing Based on Synergistic Technology, and analyzed the standpoint of resources characteristic and the need of resources construction. The platform of Resources Construction Based on Virtual Synergistic Technology designed is made up of resources constructing, managing and applying. And the resources construction system contains the team of construction, distance synergism & control and constructional pool.
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2

Wang, Li Wen, and Hai Rong Bao. "Construction Pollution and Green Construction Technology." Applied Mechanics and Materials 438-439 (October 2013): 1751–54. http://dx.doi.org/10.4028/www.scientific.net/amm.438-439.1751.

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This paper, through the analysis of the construction features of civil engineering in each stage, analyzes the factors of adverse effects of construction activity on the environment; aiming at pollution sources, the specific characteristics and pollution status of construction, such as dust, noise, waste and other pollution sources, puts forward corresponding countermeasures and material methods, water conservation and green construction control to reduce the pollution of the environment; explores the effectiveness of some green construction techniques, such as plate construction method of the rebar lifting stool control plate reinforcement protective layer and thickness, and new prefabricated concrete structure, on the prevention and control of of environmental pollution from construction projects. The purpose is to find the method to maintain the construction and harmonious development of environment in the system, in order to be more active and effective implementation of environmental management of the construction of civil engineering.
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3

Nii, Tadahiko. "Ancient construction-technology." HISTORICAL STUDIES IN CIVIL ENGINEERING 11 (1991): 265–68. http://dx.doi.org/10.2208/journalhs1990.11.265.

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4

Khorramshahi, Mohammad Reza, and Ali Mokhtari. "Automatic Construction by Contour Crafting Technology." Emerging Science Journal 1, no. 1 (July 8, 2017): 28. http://dx.doi.org/10.28991/esj-2017-01113.

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Contour Crafting is a novel technology in construction industry based on 3D printing that uses robotics to construct free form building structures by repeatedly laying down layers of material such as concrete. It is actually an approach to scale up automatic fabrication from building small industrial parts to constructing buildings. However, there are little information about contour crafting (CC) in current use; present paper aims to describe the operational steps of creating a whole building by the machine reviewing relevant literature. Furthermore, it will represent the advantages of CC usage compared to traditional construction methods, as well as its applicability in construction industry.
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5

Beheiry, Salwa Mamoun. "Benchmarking Sustainable Construction Technology." Advanced Materials Research 347-353 (October 2011): 2913–20. http://dx.doi.org/10.4028/www.scientific.net/amr.347-353.2913.

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The objective of this research was to measure the use of recognized technology that promotes and supports sustainable development in building construction projects. This research hinged on the use of the Sustainable Construction Technology Index (SCTI) developed by Beheiry and Abu-Lebdeh in 2009 [1]. The SCTI was created in 2009 to investigate the use of technology in all phases of the building process from planning to occupancy. The index consists of four main sections that address the major phases of a typical construction project. These phases include the planning phase, the design phase, the construction phase and the occupancy phase. In the first stage of the research the SCTI was validated using expert feedback and weighted using trial data samples of close to 100 projects. In this stage of the research the SCTI was used to collect data from 208 building construction projects executed between 2005 and 2010 in the United Arab Emirates (UAE). The study brings to light that low and renewable energy use systems are spearheading the change process to more sustainable technologies in building construction projects in the UAE, followed by water preservation and reuse systems. The study also shows that the use of sustainable technology is still relatively low in residential buildings, compared to newer commercial buildings. The data show a clear trend upwards in the use of the technology albeit the total use is still low. This research provided a benchmark for current sustainable technology use in UAE project and a platform for further sustainable construction planning.
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6

Nord, Walter R., and David F. Noble. "Social Construction of Technology." Academy of Management Review 11, no. 3 (July 1986): 666. http://dx.doi.org/10.2307/258318.

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7

Sun, Li Gong. "Pump Concrete Construction Technology." Applied Mechanics and Materials 229-231 (November 2012): 2518–21. http://dx.doi.org/10.4028/www.scientific.net/amm.229-231.2518.

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In recent years, pump concrete construction technology is widely put in use because the modern architecture trends to over- height, large- span, and over-load. In the basis of the railway engineering examples, the thesis elaborates the ratio design of high-strength pump concrete, construction technology and quality control with reference to projects of the same kind.
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8

Ahuja, Hira N. "Computer technology in construction." Canadian Journal of Civil Engineering 13, no. 3 (June 1, 1986): 398. http://dx.doi.org/10.1139/l86-056.

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9

Khopade, Mohini Ashok, and Dr Sunil Vikram Desale. "Lean Technology in Construction." International Journal for Research in Applied Science and Engineering Technology 10, no. 5 (May 31, 2022): 1510–18. http://dx.doi.org/10.22214/ijraset.2022.42512.

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Abstract: Since the 1940’s, lean production principles have evolved and were successfully implemented by Toyota Motor Company. Lean construction is a production and management-based approach to a project. An increasing number of construction academics and professionals are storming the ramparts of conventional construction management in an attempt to deliver better value to owners while making real profits. As a result, lean-based tools have emerged and are successfully applied to simple and sophisticated construction projects. Generally, lean construction projects are easier to manage, safer, completed sooner, cost less and are of higher quality. Thanks to the success of the lean production system in manufacturing the construction industry has adapted lean techniques to eliminate waste and increase profit. It is a way to design production system to minimize the wastage of material, time, and effort in order to generate the maximum possible amount of value. The main objective of this study is to analyze and implement the lean construction practices. Keywords: lean construction, economic, safe, construction management
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10

Gan, Shen Qi, and Hong Zhang. "Application of Virtual Construction Technology in Green Construction." Applied Mechanics and Materials 368-370 (August 2013): 1139–42. http://dx.doi.org/10.4028/www.scientific.net/amm.368-370.1139.

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This paper first introduces the current situation of the world housing industrialization, and start from our modern construction techniques to explore the concept of virtual construction technology and its important role in recent years in industrialized construction, virtual construction technology is the future of housing industrialization another direction of development in China.
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11

CHIKUSHI, Shota, Hiromitsu FUJII, Yusuke TAMURA, Hiroshi YAMAKAWA, Keiji NAGATANI, Yonghoon JI, Ikuya SAKAI, et al. "Development of Construction Technology for Intelligent Construction System." Proceedings of JSME annual Conference on Robotics and Mechatronics (Robomec) 2019 (2019): 1P2—D03. http://dx.doi.org/10.1299/jsmermd.2019.1p2-d03.

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12

连, 晶莹. "Construction Enterprise Technology Center Environmental Evaluation System Construction." Modern Management 12, no. 01 (2022): 63–70. http://dx.doi.org/10.12677/mm.2022.121010.

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13

Abdukhalimjohnovna, Mirzaakhmedova Ugiloy. "Technology Of Elimination Damage And Deformation In Construction Structures." American Journal of Applied sciences 03, no. 05 (May 31, 2021): 224–28. http://dx.doi.org/10.37547/tajas/volume03issue05-35.

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The study found that the necessary maintenance work should be carried out in the first 7 days after the completion of concreting in reinforced concrete structures, which significantly increases the penetration in concrete, the formation of cracks, decreased strength, load bearing capacity of structures.
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14

Bao-qiang, Yue. "Construction Thinking of Concrete Pouring Technology in Building Construction." IOP Conference Series: Earth and Environmental Science 295 (July 25, 2019): 042099. http://dx.doi.org/10.1088/1755-1315/295/4/042099.

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15

Tao, Zhang. "Application of Diversion Construction Technology in Hydraulic Engineering Construction." IOP Conference Series: Earth and Environmental Science 525 (July 7, 2020): 012138. http://dx.doi.org/10.1088/1755-1315/525/1/012138.

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16

Guo, Yuzhen. "Analysis on Concrete Construction Technology in Civil Engineering Construction." Journal of Physics: Conference Series 2011, no. 1 (September 1, 2021): 012023. http://dx.doi.org/10.1088/1742-6596/2011/1/012023.

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17

Wang, Yingchun. "BIM + VR Technology in Construction Management of Construction Engineering." Journal of Physics: Conference Series 2037, no. 1 (September 1, 2021): 012083. http://dx.doi.org/10.1088/1742-6596/2037/1/012083.

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18

Gusev, E. V., and A. V. Hollay. "Construction Management Based on Modeling Technology of Object Construction." Bulletin of the South Ural State University. Ser. Computer Technologies, Automatic Control & Radioelectronics 21, no. 4 (November 2021): 156–66. http://dx.doi.org/10.14529/ctcr210414.

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The time schedule is the main source of information in construction management. The overall efficiency and success of the project ultimately depends on its quality. At present, the concept of "technology for the construction of an object" is associated with the technological sequence of works of the object, the relationship between them, but there are practically no deep theoretical studies in the field of determining the quantitative relationships between interrelated works. The traditional approach to determining quantitative ratios based on previously adopted organizational decisions is fully justified for organizational and technological planning. But in order to organize the production of work, that is, to make the appropriate organizational decisions for the implementation of specific volumes of work, it is necessary to preliminarily determine these volumes.In the process of determination, technological requirements must be taken into account, which dictate the quantitative relationships between interrelated works. Purpose of the study. Building a model that takes into account technological dependencies in the process of performing construction and installation work. Materials and methods. The work used publications available in open sources on the organization of construction work, as well as regulations used in the Russian Federation, regulating the construction industry. Results. A new concept of construction technology of an object is given, as a quantitative and qualitative assessment of technological links between works, which determine the possibility of planning works and organizing production, depending on the state of the previous ones. This definition allows us to formulate the essence of modeling the construction technology of an object, namely, the establishment of technological links between the works and the determination of the minimum volumes on the previous one, which open up the possibility for planning a technologically interconnected volume on the subsequent work. The article has developed and presented such a model (model of object technological dependencies), which describes the technological interrelationships of works and their quantitative estimates at the beginning and end of works. The possibilities of the model of object technological dependencies in the development of management decisions from the point of view of the general functions of construction management are shown. Conclusion. The described model can successfully serve as a technological basis for planning construction and installation works, making organizational decisions, monitoring the progress of work, as well as developing management decisions in the process of construction production. With its help, you can analyze the progress and status of work in each planning period of the planned year.
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19

Fulk, Janet. "Social Construction of Communication Technology." Academy of Management Journal 36, no. 5 (October 1993): 921–50. http://dx.doi.org/10.5465/256641.

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20

Hotta, Tomomichi. "Welding technology on construction site." Journal of the Japan Welding Society 56, no. 3 (1987): 124–26. http://dx.doi.org/10.2207/qjjws1943.56.124.

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21

Light, John D. "Blacksmithing Technology and Forge Construction." Technology and Culture 28, no. 3 (July 1987): 658. http://dx.doi.org/10.2307/3104997.

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22

Mark, Robert, Hans Wittfoht, and Edward Kluttz. "Building Bridges: History, Technology, Construction." Technology and Culture 27, no. 4 (October 1986): 887. http://dx.doi.org/10.2307/3105364.

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23

Miyatake, Yasuyoshi. "Technology Development and Sustainable Construction." Journal of Management in Engineering 12, no. 4 (July 1996): 23–27. http://dx.doi.org/10.1061/(asce)0742-597x(1996)12:4(23).

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24

Bassi, Kris G. "Building bridges: History, technology, construction." Canadian Journal of Civil Engineering 12, no. 4 (December 1, 1985): 941. http://dx.doi.org/10.1139/l85-112.

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25

Garyaev, Nikolay, and Venera Garyaeva. "Big data technology in construction." E3S Web of Conferences 97 (2019): 01032. http://dx.doi.org/10.1051/e3sconf/20199701032.

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The article presents the results of the analysis of the use of large amounts of data in the construction industry, new trends such as BIM, IOT, cloud computing, intelligent buildings and smart cities with great prospects for application. These problems are related to the presence of huge amounts of data produced by the construction industry during the entire life cycle of a building, which are not fully used for optimizing processes and making decisions in construction.
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26

Halpin, Daniel W. "International Competition in Construction Technology." Journal of Professional Issues in Engineering 116, no. 4 (October 1990): 351–59. http://dx.doi.org/10.1061/(asce)1052-3928(1990)116:4(351).

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27

Di Mauro, Ernesto, and Cornelis P. Hollenberg. "DNA technology in chip construction." Advanced Materials 5, no. 5 (May 1993): 384–86. http://dx.doi.org/10.1002/adma.19930050512.

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28

FULK, J. "SOCIAL CONSTRUCTION OF COMMUNICATION TECHNOLOGY." Academy of Management Journal 36, no. 5 (October 1, 1993): 921–50. http://dx.doi.org/10.2307/256641.

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29

Myers, Michael B., Thomas W. Stickrod, Dulcy M. Abraham, and Tom Iseley. "Microtunneling Technology for Conduit Construction." Practice Periodical on Structural Design and Construction 4, no. 2 (May 1999): 56–63. http://dx.doi.org/10.1061/(asce)1084-0680(1999)4:2(56).

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30

Tatum, C. B. "Classification System for Construction Technology." Journal of Construction Engineering and Management 114, no. 3 (March 1988): 344–63. http://dx.doi.org/10.1061/(asce)0733-9364(1988)114:3(344).

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31

Johnson, Kyle D., and C. B. Tatum. "Technology in Marine Construction Firms." Journal of Construction Engineering and Management 119, no. 1 (March 1993): 148–62. http://dx.doi.org/10.1061/(asce)0733-9364(1993)119:1(148).

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32

Ioannou, P. G., and L. Y. Liu. "Advanced Construction Technology System—ACTS." Journal of Construction Engineering and Management 119, no. 2 (June 1993): 288–306. http://dx.doi.org/10.1061/(asce)0733-9364(1993)119:2(288).

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33

邵, 子璐. "Suspension Bridge Construction Monitoring Technology." Journal of Oil and Gas Technology 42, no. 04 (2020): 280–85. http://dx.doi.org/10.12677/jogt.2020.424144.

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34

Zhu, Hong Rui, Ya Lou Liu, and Guang Feng Wang. "Evaluation on Tangshan City Science and Technology Innovation System." Applied Mechanics and Materials 209-211 (October 2012): 1658–61. http://dx.doi.org/10.4028/www.scientific.net/amm.209-211.1658.

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Based on the Tangshan scientific innovation system construction's realistic situation, profits from the domestic and foreign region innovation theory, analyzed Tangshan scientific innovation system current construction environment and the resources characteristic, has constructed the evaluating indicator system, has carried on the empirical analysis based on the indicator system using the principal components law to the Tangshan scientific innovation system construction condition, proposed in the Tangshan scientific innovation system construction exists question as well as optimized countermeasure suggestion..
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35

Nurmatov, B. A. "PROBLEMS OF TECHNOLOGY FOR THE CONSTRUCTION OF LOW-PROOF HYDROTECHNICAL CONSTRUCTIONS." EurasianUnionScientists 3, no. 60 (2019): 4–5. http://dx.doi.org/10.31618/esu.2413-9335.2019.3.60.4-5.

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36

Yin, Hai Ping, Gao Li, and Sheng Li. "Research on Controlling and Management Measures with Engineering Technology in Freeway Construction Project." Advanced Materials Research 1003 (July 2014): 203–6. http://dx.doi.org/10.4028/www.scientific.net/amr.1003.203.

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Based on the study on the recent years construction of freeway,the paper figures out the engineering technology quality control on constructing spot.The engineering technology quality control on constructing spot include:quality thinking,building construction site lab,checking on spot,encouragement and punishment,and so on.
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37

Guo, Hua. "Analysis on Construction Technology and Reinforcement Technology of Building Foundation." Journal of World Architecture 5, no. 6 (November 29, 2021): 38–41. http://dx.doi.org/10.26689/jwa.v5i6.2736.

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In the field of construction engineering, foundation engineering plays a critical role. In actual construction, we must first effectively regulate the foundation construction to ensure the safety and stability of the entire building in order to improve the overall quality of the project. It's also important to look into the technologies that go into building foundations. The construction technology and reinforcing technology of building foundations are examined in this study as a reference.
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38

Lv, Heng Lin, Chun Hua Xu, Shu Chun Zhou, Yue Xing Zhu, and Shi Jie Ding. "Exploration on the Underpinning Technology of One Masonry Structure." Advanced Materials Research 243-249 (May 2011): 5552–56. http://dx.doi.org/10.4028/www.scientific.net/amr.243-249.5552.

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Because of the change of using function of one masonry structure, its longitudinal walls need to be underpinned. The related members also need to be reinforced. This paper has a discussion on the thought of underpinning part, strengthening method and key construction process. They main involve the reinforcement of foundation, the transformation from non-bearing members to bearing members of ring beams and constructional columns. It also involves the construction points for attention during underpinning process. At last, the main points that shuold be paid attention to in strengthening deign and underpinning construction are concluded.
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39

Artyomova, Natalya A., and Olga V. Ushakova. "About grid generation in constructions bounded by the surfaces of revolution." Journal of Physics: Conference Series 2099, no. 1 (November 1, 2021): 012018. http://dx.doi.org/10.1088/1742-6596/2099/1/012018.

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Abstract For constructions bounded by the surfaces of revolution, structured grid generation technique is presented. Its technology has been elaborated within the variational approach for constructing optimal grids satisfying optimality criteria: closeness of grids to uniform ones, closeness of grids to orthogonal ones and adaptation to a given function. Grid generation has been designed for numerical solution of the differential equations modeling the vortex processes of multi-component hydrodynamics. In the technology, the three-dimensional construction in which it is required to construct a grid is represented in the form of the curvilinear hexahedron defining its configuration. The specific feature of the required configurations is that some faces of a curvilinear hexahedron lie in one plane and along edges of adjoining faces grid cells degenerate into prisms. Grid generation in the considered constructions has started to be developed by the elaboration of algorithms for the volume of revolution which has become the basic construction. The basic construction is obtained by the rotation through 180? around the axis of a generatrix consisting of straight line segments, arcs of circles and ellipses. Then the deformed volumes of revolutions are considered along with the generalizations of the volume of revolution which represent constructions obtained by the surfaces of revolution with parallel axis of rotation. The aim of the further development of the technology is to consider more and more complicated constructions and elaborate the technology for them. In the presentation, the current state of the development of the technology is given. Examples of generated grids are supplied.
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40

Yang, Wang. "Study on Construction Technology of Concrete Structure in Construction Engineering." Journal of Architectural Research and Development 1, no. 1 (July 20, 2017): 5–6. http://dx.doi.org/10.26689/jard2017.v1i1.45.

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41

Zhu, Ching. "Study on Application of Green Construction Technology in Construction Engineering." Journal of World Architecture 1, no. 1 (July 20, 2017): 27–29. http://dx.doi.org/10.26689/jwa2017.v1i1.38.

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42

Wu, Wei. "Research on construction technology of frame structure in construction engineering." IOP Conference Series: Materials Science and Engineering 780 (April 10, 2020): 052014. http://dx.doi.org/10.1088/1757-899x/780/5/052014.

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43

Wu, Yucai, Wei Wang, Dan Wang, Zhiqiang Liu, and Rongrong Qiang. "Research on the construction of green highway construction technology system." E3S Web of Conferences 145 (2020): 02042. http://dx.doi.org/10.1051/e3sconf/202014502042.

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Combined with the characteristics and actual needs of expressway project, the demonstration application of green highway construction is mainly carried out from four aspects: “building traffic infrastructure system integrated into natural landscape”, “promoting green construction technology of environmental protection, energy saving and high efficiency”, “creating tourism type Expressway demonstration project” and “promoting safety intelligent construction and control technology”, forming “respecting nature and smooth” The supporting technology system should be established for the green road of “nature, nature protection and integration”, and Zihui expressway should be built into a demonstration project of green road in mountain area which is coordinated and integrated with the natural environment.
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44

Wei, Aimin. "Construction Engineering Technology Specialty Group Construction in Big Data Age." Journal of Physics: Conference Series 1992, no. 4 (August 1, 2021): 042029. http://dx.doi.org/10.1088/1742-6596/1992/4/042029.

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45

Yang, Lipeng. "Research on Geotechnical Investigation and Construction Technology of Construction Engineering." IOP Conference Series: Earth and Environmental Science 783, no. 1 (May 1, 2021): 012062. http://dx.doi.org/10.1088/1755-1315/783/1/012062.

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46

Denisova, Yu V. "ADDITIVE TECHNOLOGY IN CONSTRUCTION." Construction Materials and Products, June 1, 2020, 33–42. http://dx.doi.org/10.34031/2618-7183-2018-1-3-33-42.

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the main innovative technologies of construction 3-D printing in modern construction are considered. This direction of research confirms the relevance of the selected issue. Development of compositions for building 3D printing allows for construction of not only individual constructions, but also buildings and constructions in general. Experimental compositions with effective for building print supplements will receive enough dense structure of concrete are developed. To assess the use of quartz sand for use in 3-d printers studies were conducted of their basic properties. The role of additive technologies in modern construction in the construction of buildings and structures that will lead to future changes in the construction market.
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47

"Discussion on Water Conservancy Construction Technology Innovation and Concrete Construction Technology." Foreign Language Science and Technology Journal Database Engineering Technology, September 2, 2021. http://dx.doi.org/10.47939/et.v2i9.32.

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48

Li, Xiao, and Qiantu He. "Application of Tower Girder Asynchronous Construction Technology." Smart Construction Research 2, no. 4 (August 23, 2018). http://dx.doi.org/10.18063/scr.v2i4.749.

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When constructing the tower beam in a traditional way, the tower beam will be simultaneously constructed with the tower column, it asks for a complicated construction procedure, difficult construction organization, long operating cycle, and highly increased construction cost. With the progress of technology, Asynchronous construction scheme of the tower column and tower beam is adopted and applied. This paper is based on the case of asynchronous construction of the H-type cable tower and beam of the six large-span Ao jiang Bridges.
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49

Mingbin, Yu. "Analysis on Hospital Construction Technology Management and Construction of Barrier - free Facilities." Journal of World Architecture 1, no. 2 (November 9, 2017). http://dx.doi.org/10.26689/jwa.v1i2.54.

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Abstract: In recent years,with the continuous progress of urban modernization in China, the intensity of urban infrastructure construction has been continuously strengthened. As an important part of urban infrastructure, the construction quality of hospital must be guaranteed. Therefore, we must strengthen the management of hospital construction. As an important part of construction management,the management of construction technology must be given sufficient attention.This article will study the management of hospital construction technology and the construction of barrier-free facilities further.
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50

"Application of Concrete Pouring Construction Technology in Constructional Engineering." Foreign Language Science and Technology Journal Database Engineering Technology, February 2, 2021. http://dx.doi.org/10.47939/et.v2i2.08.

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