ABS 208-2014 GUIDANCE NOTES ON THE IMPLEMENTATION OF HUMAN FACTORS ENGINEERING INTO THE DESIGN OF OFFSHORE INSTALLATIONS.pdf
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1、 Guidance Notes on the Implementation of Human factors Engineering Design of Offshore Installations GUIDANCE NOTES ON THE IMPLEMENTATION OF HUMAN FACTORS ENGINEERING INTO THE DESIGN OF OFFSHORE INSTALLATIONS JULY 2014 American Bureau of Shipping Incorporated by Act of Legislature of the State of New
2、 York 1862 Copyright 2014 American Bureau of Shipping ABS Plaza 16855 Northchase Drive Houston, TX 77060 USA ii ABSGUIDANCE NOTES ON THE IMPLEMENTATION OF HUMAN FACTORS ENGINEERING INTO THE DESIGN OF OFFSHORE INSTALLATIONS .2014 Foreword Foreword Offshore companies, along with many other maritime en
3、tities, are becoming increasingly aware of, and are responding to, the critical role of the human element as the root of effective safety standards and practices. As a result, during the last two decades, the offshore industry began to concentrate more on improving human performance and reducing hum
4、an error as a way to enhance offshore safety. The effort to improve safety and human performance introduced the engineering discipline of Human Factors Engineering (HFE) to the offshore industry. Despite the positive experiences and results from including HFE design practices and principles into off
5、shore design projects, HFE has yet to become a widely accepted and fully integrated aspect of design projects. These Guidance Notes on the Implementation of Human Factors Engineering into the Design of Offshore Installations provide a strategy for integrating and implementing HFE into the design pro
6、cess as a way to help improve human performance and personnel efficiency and reduce safety risks associated with working and living on offshore installations. This integration of HFE into a program and the human element into the design can also improve overall system performance. To help promote the
7、 effective integration and implementation of HFE design principles throughout the various lifecycle phases of an offshore capital project, a well-defined approach is required. The objective of these Guidance Notes is to identify the relevant HFE activities that need to be executed effectively and ef
8、ficiently by describing a plan to integrate HFE into existing project management systems. These Guidance Notes can be used as a roadmap for a larger effort to promote the application and understanding of HFE principles and criteria in system design and operations to help improve personnel performanc
9、e and safety while reducing the potential for human error. It should be noted that the guidance presented in this document is recommendatory. Compliance with these Guidance Notes is not required, although ABS strongly urges the principles to be adopted wherever feasible and tailored based on the siz
10、e and scope of the project. These Guidance Notes become effective on the first day of the month of publication. Users are advised to check periodically on the ABS website www.eagle.org to verify that this version of these Guidance Notes is the most current. We welcome your feedback. Comments or sugg
11、estions can be sent electronically by email to rsdeagle.org. ABSGUIDANCE NOTES ON THE IMPLEMENTATION OF HUMAN FACTORS ENGINEERING INTO THE DESIGN OF OFFSHORE INSTALLATIONS .2014 iii Table of Contents GUIDANCE NOTES ON THE IMPLEMENTATION OF HUMAN FACTORS ENGINEERING INTO THE DESIGN OF OFFSHORE INSTAL
12、LATIONS CONTENTS SECTION 1 Overview of Human Factors Engineering and Its Implementation 1 1 Introduction . 1 1.1 The ABS Human Factors Engineering/Ergonomics Model: Elements that Enhance Human Performance and Safety . 2 2 Application 4 3 Scope 4 3.1 Section 2, “HFE Implementation Program Planning” .
13、 4 3.2 Section 3, “Human Factors Engineering Implementation Program” . 5 3.3. Appendices 5 FIGURE 1 ABS Human Factors Engineering/Ergonomics Model 2 SECTION 2 HFE Implementation Program Planning . 6 1 General . 6 2 Factors Critical to Successful HFE Implementation . 6 3 Engage Critical Parties in th
14、e HFE Implementation Process . 6 3.1 Human Factors Engineering Practitioners . 6 3.2 The Company Who Will Operate . 7 3.3 The Company Who Will Lease 8 3.4 The “Design Agent” Working for the Company 8 3.5 The “Design Agent” Working for the Construction Yard 8 3.6 The Vendor/Manufacturer 8 4 Determine
15、 the Level of HFE Involvement . 8 4.1 Tradeoffs . 8 5 Obtain Management Commitment 9 5.1 Creation of an HFE Foundation and Integration within the Company . 10 5.2 Creation of an Organized Company Management Structure to Promote the Use of HFE . 10 5.3 Equalization of HFE with other Engineering Disci
16、plines 11 5.4 Use of HFE Principles in Areas Other than Engineering Design . 11 5.5 Cooperation between HFE and Operations/Maintenance Personnel 12 iv ABSGUIDANCE NOTES ON THE IMPLEMENTATION OF HUMAN FACTORS ENGINEERING INTO THE DESIGN OF OFFSHORE INSTALLATIONS .2014 6 Additional Critical Considerat
17、ions . 12 6.1 Mandate HFE in Design . 12 6.2 Utilize Accepted HFE Standards 12 6.3 Lessons Learned . 12 TABLE 1 HFE Involvement Survey 9 FIGURE 1 Organizational Location for HFE . 11 SECTION 3 Human Factors Engineering Implementation Program . 13 1 Introduction . 13 2 Lifecycle Phases . 13 3 Concept
18、ual Design 15 3.1 Task #1 HFE Planning and Organization 15 3.2 Task #2 Identify HFE Tasks and Prepare the HFE Implementation Plan (HFEIP) 15 3.3 Task #3 Assist in Review and/or Development of Early Project Design Documents 16 3.4 Task #4 Select or Develop the HFE Design Standards that will be Applie
19、d to All Phases and Components of the Project 17 3.5 Task #5 Prepare/Present HFE Awareness Training Packages for Project Management, Engineering, and Construction/ Fabrication Personnel 19 3.6 Task #6 Create an HFE Tracking Database . 20 3.7 Task #7 Participate in Preparation of the Project Specific
20、ation or Statement of Work (SOW) for Contractor Support for the Design Agent for Preliminary and Detail Design Phases . 21 3.8 Task #8 Evaluate the Design Agent-provided HFEPP 22 3.9 Task #9 Participate in Selection of the Design Agent . 23 4 Preliminary Design 23 4.1 Task #10 Select or Prepare HFE
21、Design Aids 23 4.2 Task #11 Conduct Design Reviews of Design Drawings 24 4.3 Task #12 Include HFE Design Standards into Vendor Purchase Specifications 24 4.4 Task #13 Conduct Special Studies . 26 5 Detail Design . 30 5.1 Task #14 Provide General HFE Design Inputs . 31 5.2 Task #15 Conduct Facility L
22、abeling Program . 31 5.3 Task #16 Prepare or Review Operations and Maintenance Manuals . 32 5.4 Task #17 Conduct Computer Aided Design (CAD) Reviews 33 6 Construction, Fabrication, Installation, and Commissioning (CFIC) . 34 6.1 Task #18 Conduct Periodic Visits to the Construction Yard and Vendor Fa
23、brication Sites 34 6.2 Task #19 Monitor Selected Engineering Tests to Identify HFE Design Deficiencies . 34 6.3 Task #20 Monitor Commissioning Activities to Identify HFE Deficiencies . 35 6.4 Task #21 Observe Facility Installation Activities to Identify HFE Design Deficiencies . 36 ABSGUIDANCE NOTES
24、 ON THE IMPLEMENTATION OF HUMAN FACTORS ENGINEERING INTO THE DESIGN OF OFFSHORE INSTALLATIONS .2014 v 7 Operations 36 7.1 Task #22 Follow-up Evaluation after Period of Operation 36 8 General Task 37 8.1 Task #23 Prepare Progress Reports 37 TABLE 1 Overview of HFE Tasks and Responsibilities . 14 APPE
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