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Analytic Framework Improves Environmental Risk Assessment in Grid Construction

Analytic Framework Improves Environmental Risk Assessment in Grid Construction

⚡ AI Executive Summary

A research team has developed an integrated methodology combining the Analytic Hierarchy Process and Fuzzy Comprehensive Evaluation to systematically assess environmental risks during power grid construction projects. The approach establishes standardized evaluation indicators, quantifies risk exposure across construction phases, and identifies practical mitigation strategies for field operations. This framework addresses a gap in enterprise safety management by providing structured assessment protocols tailored to the unique characteristics of grid infrastructure work. For utilities and grid operators, this work offers practical relevance in two ways. First, it demonstrates how formal multi-criteria evaluation techniques can prioritize environmental controls where they matter most—particularly during critical project phases like acceptance and handover. Second, it suggests that environmental and safety performance during construction can be systematized and benchmarked, enabling utilities to transfer best practices across regions and project types. The low-to-medium overall risk rating implies that systematic source control is achievable, though continued attention to high-weight phases remains essential.

This is a brief summary of reporting originally published by Energy Reports. Read the full article for the complete story:

Read the full story at Energy Reports ↗
#environmental risk assessment#power grid construction#analytic hierarchy process#fuzzy comprehensive evaluation#source control#safety management#risk quantification
Original source: Energy Reports ↗

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