ABS 180 NOTICE 1-2017 RULES FOR BUILDING AND CLASSING OFFSHORE SUPPORT VESSELS 2017.pdf
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1、 RULES FOR BUILDING AND CLASSING OFFSHORE SUPPORT VESSELS 2017 NOTICE NO. 1 JULY 2017 The following Rule Changes were approved by the ABS Rules Committee on 30 May 2017 and become EFFECTIVE AS OF 1 JULY 2017. (See http:/www.eagle.org for the consolidated version of the Rules for Building and Classin
2、g Offshore Support Vessels 2017, with all Notices and Corrigenda incorporated.) Notes - The date in the parentheses means the date that the Rule becomes effective for new construction based on the contract date for construction, unless otherwise noted. (See 1-1-4/3.3.) PART 3 HULL CONSTRUCTION AND E
3、QUIPMENT CHAPTER 2 HULL STRUCTURES AND ARRANGEMENTS SECTION 14 RUDDERS AND STEERING EQUIPMENT 17 Double Plate Rudder (Revise Paragraph 3-2-14/17.1 and add new 3-2-14/Figures 5, 6, and 7, as follows:) 17.1 Strength (1 July 2017) Rudder section modulus and web area are to be such that stresses indicat
4、ed in the following Subparagraphs are not exceeded. In calculating the section modulus of the rudder, the effective width of side plating is to be taken as not greater than twice the extreme athwartship dimension of the rudder in way of horizontal section being considered. Bolted cover plates on acc
5、ess or inspection openings to pintles or nuts are not to be considered effective in determining the section modulus of the rudder. In order for a cover plate to be considered effective, it is to be closed using a full penetration weld and confirmed suitable by non-destructive testing method. Smooth
6、curvature or radii are to be provided at abrupt changes in section where stress concentrations occur, including in way of openings and cover plates. When inspection windows are located in the panel below the rudder hub, the stress is to be as permitted in way of cutouts. Moments, shear forces and re
7、action forces are to be obtained by direct calculation, which is to be submitted. Guidance for calculation of these values is given in Appendix 3-2-A4. For spade rudders and rudders with horns, the section modulus at the bottom of the rudder is not to be less than one-third the required section modu
8、lus of the rudder at the top of the rudder or at the center of the lowest pintle. Special attention is to be paid in design and construction of rudders with slender foil sections in the vicinity of their trailing edge (e.g., hollow foil sections, fishtail foil sections). Where the width of the rudde
9、r blade at the aftermost vertical diaphragm, w, is equal or less than 1/6of the trailing edge length measured between the diaphragm and the trailing edge, , finite element vibration analysis of the rudder blade is also to be submitted for review. See 3-2-14/Figure 5. ABSRULES FOR BUILDING AND CLASSI
10、NG OFFSHORE SUPPORT VESSELS .2017 1 Notice No. 1 July 2017 FIGURE 5 (1 July 2017) wSpade rudders with an embedded rudder trunk are to have a trailing edge with dimensions that satisfy the following requirements: i) For a rudder trailing edge having a monotonous transition to a rounded end with a fin
11、ite thickness or diameter (see 3-2-14/Figure 6), the vortex shedding frequency calculated using the equation given below is to be higher than 35 Hz. fs= TDUSTDt +where fs= vortex shedding frequency, in Hz U = flow velocity, in m/s (ft/s), which is taken as vessels design speed with vessel running ah
12、ead at the maximum continuous rated shaft rpm and at the summer load waterline St= nominal Strouhal number = 0.18 D= 0.27 C = minimal chord length of rudder cross section profile, in m (ft) D = nominal boundary layer thickness at trailing edge = 0.01C T= 0.77 T = thickness or diameter of rounded end
13、, in m (ft) FIGURE 6 (1 July 2017) Thickness or Diameter of Rounded End2 ABSRULES FOR BUILDING AND CLASSING OFFSHORE SUPPORT VESSELS .2017 Notice No. 1 July 2017 ii) For a rudder trailing edge with a flat insert plate (see 3-2-14/Figure 7), the insert plate thickness, t0, is to be no larger than 1.5
14、Vdin mm, where Vdis the design speed in ahead condition, in knots, as defined in 3-2-14/3.1. The extension beyond the weld to rudder plate, , is to satisfy the following 3-2-14/Figure 7 and with consideration of possible local vibratory bending of the insert plate. FIGURE 7 (1 July 2017) Insert Plat
15、e Thicknesst0Rudder Plate Thicknesst1 (t0+ 2t1)Alternatively, a vibration analysis is to be carried out to confirm that the natural frequency of the rudder is to be at least 20% away from the vortex shedding frequency preferably determined using either a detailed numerical analysis method such as CF
16、D or testing for ballast and full draft at 85% and 100% Vdas defined in 3-2-14/3.1. (Renumber existing 3-2-14/Figures 5 through 11 as 3-2-14/Figures 8 through 14.) (Revise Subparagraph 3-2-14/17.1.2, as follows:) 17.1.2 In way of Cutouts Allowable stresses for determining the rudder strength in way
17、of cutouts (see 3-2-14/Figure 8) are as follows: Bending stress b= K/Q N/mm2(kgf/mm2, lbs/in2) Shear stress = K/Q N/mm2(kgf/mm2, lbs/in2) Equivalent stress e= 223 +b= Ke/Q N/mm2(kgf/mm2, lbs/in2) Where SI units MKS units US units K75 7.65 10,900 K50 5.1 7,300 Ke100 10.2 14,500 Q = 1.0 for ordinary s
18、trength hull steel = as defined in 3-2-1/5.5 for higher strength steel plate ABSRULES FOR BUILDING AND CLASSING OFFSHORE SUPPORT VESSELS .2016 3 Notice No. 1 July 2017 FIGURE 8 Z6r26r16r1r26r2XNote:r1= corner radius of rudder plate in way ofportable bolted inspection holer2= corner radius of rudder
19、plateIn way ofcutoutsr1PART 4 VESSEL SYSTEMS AND MACHINERY CHAPTER 2 PRIME MOVERS SECTION 1 DIESEL ENGINES 13 Testing, Inspection and Certification of Diesel Engines 13.9 Shop Tests of Internal Combustion, I.C. Engines (1 July 2016) 13.9.2 Engines Driving Propellers or Impellers Only (Revise Item 4-
20、2-1/13.9.2iv), as follows:) iv) (1 July 2017) 90% (or normal continuous cruise power), 75%, 50% and 25% of rated power, in accordance with the nominal propeller curve (the sequence to be selected by the engine manufacturer). 4 ABSRULES FOR BUILDING AND CLASSING OFFSHORE SUPPORT VESSELS .2017 Notice
21、No. 1 July 2017 (Revise 4-2-1/Table 1, as follows:) TABLE 1 Required Material and Nondestructive Tests of Diesel Engine Parts(1)(1 July 2017) Engine Part Material Properties (2)Nondestructive Tests for which purpose, plans and data as required by 4-2-2/1.5 are to be submitted to ABS for approval, sh
22、owing compliance with the requirements of this Section. A unit of the same type is to be satisfactorily containment and type tested, as required by 4-2-2/5.3 and 4-2-2/5.7. ABSRULES FOR BUILDING AND CLASSING OFFSHORE SUPPORT VESSELS .2016 9 Notice No. 1 July 2017 ii) Turbochargers of category C are
23、to be surveyed during its construction for compliance with the design approved, along with, but not limited to, material tests, hydrostatic tests, dynamic balancing, performance tests, etc., as indicated in 4-2-2/11.1, all to be carried out to the satisfaction of the Surveyor. iii) Each turbocharger
24、 required to be certified by 4-2-2/1.1 is to be delivered with certificates indicating compliance with the requirements of this section and the applicable type approval. 11.3.2 Approval Under the Type Approval Program 11.3.2(a) Product Design Assessment. Upon application by the manufacturer, each mo
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