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Environment” Three Loop Coupling Management Model, revealing the
transmission mechanism of quality defects to safety accidents, and establishing
an integrated prevention and control system based on PDCA cycle and risk
grading control; ③ Forward looking international perspective: compare and
analyze international standards such as ISO 45001 and CDM with the essence of
practice in Britain, the United States, Japan and Germany, propose localization
improvement strategies that adapt to the context of Chinese projects, and provide
theoretical support for cross-border security management of the “the Belt and
Road” project.
This book is aimed at researchers, policy makers, enterprise technical leaders,
and senior practicing engineers in the field of engineering safety, and is committed
to providing researchers with a systematic theoretical framework and cutting-
edge directions for technological innovation; Provide decision-makers with
international references for standard system construction and policy optimization;
Deliver practical risk assessment tools, intelligent solutions, and cross-cultural
management guidelines for practitioners.
The logical structure of the entire book follows the progressive mainline
of “cognition practice transcendence”: cognitive foundation (Chapters 1 and
2): defining the connotation of safety engineering technology, analyzing the
current development status and core tasks, and consolidating the theoretical
foundation of safety management for typical projects such as water conservancy
and hydropower; Innovative Practice (Chapters 3-8): Focusing on key scenarios
where new technologies empower safety management, analyzing quality and
safety collaboration mechanisms, construction site risk prevention and control,
environmental compliance constraints, and accident tracing improvements,
and verifying technical and economic feasibility through innovative cases;
Global Perspective and Future Transcendence (Chapters 9 and 10): Extracting
international advanced experience, predicting disruptive technological trends such
as digital twins and autonomous intelligent equipment, and proposing paths for
talent cultivation and social responsibility upgrading.
In the new era of intensified climate change, rising engineering complexity,
and widespread intelligent construction, this work aims to promote the shift of
safety engineering from passive defense to active immunity, from experience

