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Multi-Granularity Comprehensive Transportation Efficiency Analysis of Concrete
In the construction of hydroelectric dams, the efficiency of concrete transportation directly impacts the quality and timeline of the dam. Currently, concrete transportation scheduling still heavily relies on manual coordination, which makes it difficult to truly obtain the actual efficiency of the transportation equipment at each stage of concrete transportation. To more precisely evaluate the efficiency of concrete transportation in dams, this paper proposes a multi-granularity concrete transportation efficiency analysis algorithm (MCE). Our model comprehensively evaluates the efficiency of concrete transportation by utilizing the equipment utilization rate, equipment runtime rate, equipment work efficiency, and quality qualification rate. It can not only subdivide and analyze equipment effectiveness at different time scales, but also analyze efficiency from both the macro and specific equipment levels, providing a scientific basis for improving concrete transportation efficiency.
Multi-Granularity Comprehensive Transportation Efficiency Analysis of Concrete
In the construction of hydroelectric dams, the efficiency of concrete transportation directly impacts the quality and timeline of the dam. Currently, concrete transportation scheduling still heavily relies on manual coordination, which makes it difficult to truly obtain the actual efficiency of the transportation equipment at each stage of concrete transportation. To more precisely evaluate the efficiency of concrete transportation in dams, this paper proposes a multi-granularity concrete transportation efficiency analysis algorithm (MCE). Our model comprehensively evaluates the efficiency of concrete transportation by utilizing the equipment utilization rate, equipment runtime rate, equipment work efficiency, and quality qualification rate. It can not only subdivide and analyze equipment effectiveness at different time scales, but also analyze efficiency from both the macro and specific equipment levels, providing a scientific basis for improving concrete transportation efficiency.
Multi-Granularity Comprehensive Transportation Efficiency Analysis of Concrete
Advances in Engineering res
Bilgin, Hüseyin (Herausgeber:in) / Chen, Jiajian (Herausgeber:in) / Daud, Zawawi Bin (Herausgeber:in) / Chen, Yajun (Autor:in) / Zhao, Heng (Autor:in) / Li, Haipeng (Autor:in) / Xia, Yong (Autor:in) / Du, Guangyuan (Autor:in) / Zhang, Libing (Autor:in) / Zhang, Zhenyu (Autor:in)
International Conference on Civil Engineering, Environment Resources and Energy Materials ; 2024 ; Guangzhou, China
24.12.2024
10 pages
Aufsatz/Kapitel (Buch)
Elektronische Ressource
Englisch
Comprehensive transportation planning
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