A Review on Roller Compaction Quality Control and Assurance Methods for Earthwork in Five Application Scenarios

质量保证 工作流程 背景(考古学) 土方工程 计算机科学 压实 标准化 过程(计算) 质量(理念) 工程类 系统工程 运营管理 数据库 古生物学 哲学 外部质量评估 岩土工程 认识论 生物 操作系统
作者
Qinglong Zhang,Zaizhan An,Zehua Huangfu,Qingbin Li
出处
期刊:Materials [MDPI AG]
卷期号:15 (7): 2610-2610 被引量:24
标识
DOI:10.3390/ma15072610
摘要

Successful quality control and quality assurance (QC/QA) of earthwork compaction is critical to the long-term performance of roads, railways, airports, dams, and embankments. The purpose of this paper is to provide insights into the current practice, existing problems, challenges, and future development trends of QC/QA methods from the perspective of bibliometrics and the development stage. A bibliometric analysis is presented. Through quantitative analysis of literature and qualitative analysis of the development stage, insights into the current research practices and future directions of QC/QA methods have been derived from the perspectives of literature, cluster analysis, classification, different types of QC/QA methods, conclusions, and recommendations. It is found that the current QC/QA methods can be roughly divided into conventional compaction, digital rolling compaction, automatic rolling compaction, and intelligent control compaction. Currently, QC/QA methods are mainly confronted with the issues of accurate detection of compaction quality, autonomous optimization and intelligent decision-making of compaction process, multi-machine coordination, QC/QA-related specification formulation, and process standardization. To address these issues, several critical potential research directions are further identified: comprehensive CCI measurement system; simple and realistic mathematical representation of the complex compaction dynamics; parallel computing and distributed management of multi-source heterogeneous data; standardized application workflow and the cost-benefit assessment in the context of the full life cycle; intelligent control theories, methods, and technologies of earthwork compaction based on multidisciplinary integration. The paper enables researchers to obtain a comprehensive understanding of QC/QA methods for earthwork compaction as well as the suggested solutions for future work.
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