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Modeling operators' emergency response time for chemical processing operations.

Susan L Murray1, Emrah Harputlu2, Ray A Mentzer3

  • 1Professor Engineering Management & Systems Engineering, Missouri University of Science and Technology, Rolla, Missouri.

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Summary
This summary is machine-generated.

Operators respond to emergencies significantly faster than during normal operations. This study models emergency response times, aiding in the design of safer industrial facilities and procedures.

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Area of Science:

  • Industrial Engineering
  • Human Factors Engineering
  • Safety Science

Background:

  • Operators in facilities like chemical plants face critical time constraints during emergencies.
  • Estimating operator response times is vital for designing safe procedures and facilities.

Purpose of the Study:

  • To develop a modeling approach for estimating operator response time ranges during emergencies.
  • To assist engineers and managers in establishing time requirements for emergency situations.

Main Methods:

  • Combines a predetermined time standard system with author-developed emergency adjustment coefficients.
  • Analyzed videos of workers performing tasks at maximum pace, decomposing actions into fundamental motions.
  • Compared emergency pace motions to normal pace to determine performance coefficients.

Main Results:

  • Developed a model to estimate emergency response time standards for operators.
  • Identified performance coefficients representing time reduction in emergency situations.
  • Emergency response times were found to be approximately one-third faster than normal.

Conclusions:

  • The developed methodology aids in designing and predicting hazardous operations, alarm management, and evacuation processes.
  • Provides a framework for establishing realistic time standards for operator actions in emergencies.
  • Highlights the potential for faster operator performance under emergency conditions.