ABS 218-2016 GUIDE FOR ENHANCED SHAFT ALIGNMENT.pdf
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1、 Guide for Enhanced Shaft Alignment GUIDE FOR ENHANCED SHAFT ALIGNMENT NOVEMBER 2016 American Bureau of Shipping Incorporated by Act of Legislature of the State of New York 1862 2016 American Bureau of Shipping. All rights reserved. ABS Plaza 16855 Northchase Drive Houston, TX 77060 USA Foreword For
2、eword The ABS Guide for Enhanced Shaft Alignment has been developed to address requests from owners and operators who wish to perform a more detailed shaft alignment analysis and installation assessment. Vessels designed, constructed and operated in compliance with the requirements of this Guide may
3、 be assigned the Class Notation ESA. Assignment of the ESA Notation requires the review of plans and calculations by an ABS Engineering Office and the attendance of an ABS Surveyor during additional shafting alignment efforts. The intention of the Guide is to address shafting arrangements that may b
4、enefit from a more detailed analysis and a more accurate and structured procedure so as to optimize the shaft alignment and improve the service life of the vessels powertrain. This Guide is intended to apply mainly to shaft alignment-sensitive vessels, as defined in this Guide, although it could app
5、ly to a wider range of powertrains including geared installations. The main aspects that distinguish compliance with this Notation from the standard Rule application are: A final Shaft Alignment sighting is to be conducted after the engine or gearbox and other heavy machinery are installed on board
6、and all major steel works are completed at the aft part of the vessel. Shaft alignment optimization calculations are required. Compulsory inclusion of hull deflections to be taken into account in the analysis. Requirement for Lateral Vibration (Whirling) analysis of the powertrain shafting system. S
7、haft alignment verification at more than one service condition. The vessel must be assigned the Tailshaft Condition MonitoringTCM Notation. The ABS Guide for Enhanced Shaft Alignment is to be used in conjunction with all other applicable Rules, Guides and Guidelines published by ABS. This Guide beco
8、mes 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 this Guide is the most current. We welcome your feedback. Comments or suggestions can be sent electronically by email to rsdeagle.org. i
9、i ABSGUIDE FOR ENHANCED SHAFT ALIGNMENT .2016 Table of Contents GUIDE FOR ENHANCED SHAFT ALIGNMENT CONTENTS SECTION 1 General 1 1 Introduction . 1 1.1 ESA Notation . 1 1.3 Definitions 2 3 Application 3 3.1 General 3 5 Documentation 4 5.1 Documentation to be Submitted 4 TABLE 1 Propulsion Types and S
10、haft Alignment Systems that can be Covered by the ESA Notation . 4 FIGURE 1 Selected Differences between ESA Notation Requirements and ABS Rules 1 SECTION 2 Calculation Requirements for the ESA Notation . 6 1 Calculations 6 1.1 General 6 1.3 Additional Specialized Calculations . 6 3 Hull Girder Defl
11、ections 10 3.1 General 10 FIGURE 1 Schematic Showing the Requirement of the Gearbox Forces Calculation in the Shaft Alignment Analysis Report 7 FIGURE 2 Stern Tube Bearing Contact Analysis Screenshot from the ABS Shaft Alignment Software . 8 FIGURE 3 Representation of Critical Speeds for a Whirling
12、Calculation using a Campbell Diagram 9 FIGURE 4 Screenshot from the ABS Shaft Alignment Software Showing Typical Data Required for Fast Determination of Hull Deflection for Shaft Alignment Optimization Analysis . 10 FIGURE 5 Typical Finite Element Model for the Purposes of Hull Deflection Calculatio
13、ns . 11 ABSGUIDE FOR ENHANCED SHAFT ALIGNMENT .2016 iii SECTION 3 Alignment Procedure . 12 1 General Requirements 12 1.1 Major Stages . 12 3 Shaft Alignment Installation Procedure . 12 3.1 Conditions 12 3.3 Means of Bearing Reaction Measurement and Verification . 12 3.5 Recordings 14 TABLE 1 Perform
14、ance Characteristics of Typical Measurement Techniques 13 FIGURE 1 Bearing Reaction Values During Sea Trials for Different Vessel Conditions for the Forward Sterntube Bearing (FWD), the Intermediate Bearing (IB) and the Aftmost Main Engine Bearing (ME) 14 FIGURE 2 Correlation between Measured and Ca
15、lculated Bearing Reaction Values for a Specific Vessel Condition 15 SECTION 4 Sea Trials 16 1 General Requirements 16 1.1. Test Procedure 16 1.3 Running-in Procedure 17 FIGURE 1 Bearing Temperatures Monitored during Acceptance Sea Trials . 16 SECTION 5 Maintenance of ESA Notation . 18 1 Maintenance
16、of ESA Notation . 18 SECTION 6 Surveys . 19 1 Initial Survey 19 3 Surveys after Construction 19 APPENDIX 1 Definitions of Shaft Alignment Optimization . 20 1 Shaft Alignment Optimization Alternative Definitions . 20 FIGURE 1 2D Design Optimization Mathematical Concept . 20 FIGURE 2 3D and higher Des
17、ign Optimization Mathematical Concept . 21 APPENDIX 2 References 22 iv ABSGUIDE FOR ENHANCED SHAFT ALIGNMENT .2016 ABSGUIDE FOR ENHANCED SHAFT ALIGNMENT .2016 1 Section 1: General SECTION 1 General 1 Introduction 1.1 ESA Notation Requirements of this Guide are optional for classification purposes. H
18、owever, where assignment of the optional notation ESA Enhanced Shaft Alignment is being requested, provisions of this Guide are compulsory. This Guide provides criteria for additional calculation requirements, such as design optimization, as well as more detailed requirements regarding the shaft ali
19、gnment procedures in support of the optional notation ESA - Enhanced Shaft Alignment. Typical differences can be explained through the flowchart examples of Section 1, Figure 1. FIGURE 1 Selected Differences between ESA Notation Requirements and ABS Rules (1 November 2016) ABS Steel Vessel Rules4-3-
20、2/11.1.2(e)Shaft Alignment CalculationsHull Deflections Available: Bearing Reaction verification measurements taken in one condition (such as Dry Dock or Very Light Ballast condition).Hull Deflections Not Available: Bearing Reaction verification measurements taken in multiple loading conditions, as
21、agreed.Whirling Calculations Requirements No forward ST bearing Bearing Span 450d Supports outside of hull Cardan shafts incorporated Calculated with all bearings loadedTCM Notation OptionalESA NotationShaft Alignment CalculationsHull Deflections Compulsory Load measurements taken under ballast and
22、fully laden conditions, as per 2/1.1.1(a) and 2/1.1.1(b) of the ESA Guide.Whirling Calculations Requirements Unanimously (i.e., all cases under ESA Notation) Calculated with all bearings loaded Calculated with fore ST bearing unloadedTCM Notation CompulsoryFinal sighting to be conducted after engine
23、 or gearbox or other heavy machinery are installed onboard and all major steel works are completed OptionalFinal sighting to be conducted after engine or gearbox or other heavy machinery are installed onboard and all major steel works are completed CompulsorySection 1 General 1.1.1 Objective The obj
24、ective of this Guide is to identify additional requirements and procedures beyond the minimum requirements currently specified in the ABS Rules for Building and Classing Steel Vessels so as to further enhance the shaft alignment. Vessels designed, constructed and operated in compliance with the requ
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