API STD 4B-1952 WOODEN DERRICKS (Fourteenth Edition).pdf
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1、mrmr.m“lttililllmmnmunntlmmnnnn;JJmmrn“Immri“r.mmiiiiilloooou.,.,.,tmmTJil11mmTomnrmlilfl1r.itiiliiontltillmnmnmlliililiiiiimlhmflniNnlliiiin“Jil API SPECIFICATION for API STD 48 Fourteenth Ed.itioo January, 1952 WOODEN DERRICKS AMERICAN PETROLEUM INSTITUTE New York, N.Y. Issued by AMERICAN PETROLEU
2、M INSTITUTE Division of Production Dallas, Texas llltllllllltlllllllllllflllllfllll.llllllltlolllfiiJ0111ti11111111111UIIIIIUIIIIIIII1tlllllllllllllllllllllllllllllllllllllllllllllllltlllllllltllllllllllllllllllllllllltlllllllfiiiiiii“IIIIIIIIIIIIIIIJII“IIIIIIIIItm Copyr1J;rht 1952 by Amtrican Petro
3、leum In!IUtute 2 Atnerira Pt:troleum Iniltltute -=“= TABLE 01 CONTENTS Foreword - . . . . . 3 Sect. I: Scope . . . . 4 Sect. II: Material _ . 4 Sect. Ill: Design Dimensions 4 Sect. IV: Design Loads , . 5 Sect. V: Allowable Unit Stresses 7 Sect. VI: Workmanship - 7 Sect. VII: Marking : - 8 Sect. VIII
4、: Inspection and Rejection - 8 Appendix A: Safe Load Capacity . 9 Appendix B: List of Atthorized Manufacturers lO Appendix C: Use of API Monogram 11 Note fhb edltioft aupenedes tbst nqultemeote on .oodn denieb aa ILlJNG UDJC 0 UD“ u UDOORe“ u “ of “ of . “f . CALtiOA“IA CCM91_ TION OAILLikC. CA8LE T
5、OO_ DRILLING PRODUCTION d. Requirements on standard rigs are ven-in API Std. 4A, Specification for Steel Derricks (Including Standard Rigs). e. Recommended practice on the erection, care. and use of steel derricks as given in Appendix A of API Std 4A includes some suggestions which are applicable to
6、 wooden derricks, particularly to derrick founda tions, and should be consulted by users of wooden derricks. Amerleaa Pt.troleurn ln9titute SECTION I SCOPE I. This specification covers requirements for wooden derricks, including atipulatiom1 on materials, design fontures, londlngs, and allowable str
7、esses. Rec.: ommendations on safe load capaciti.ea for wooden dew ricks are included ns an appendix. .1 2. NoJ.ing contained in this specification i5 to be constru,d as .a-ranting any right, by implication Of otherw e, !or manufacture, sale, or use in connecw tion lh any method, apparatus, or produc
8、t covered by lea:ers patent, nor a5 insuring anyone against liaw bi!it for infringement of letters patent. SECTJ ,;-f TI M.ft.tERIAL 3. Structural L:mber. Lumber used in construc tion of wooden denfcks shall conform to the manufac turers nssociatlon grading rules under which the material is Jurchase
9、d and shall be grade marked or accompanie by n manufacturers association certifi cate of inspection. SECTION III DESIGN DIMENSIONS Definitions of Measuremnts 4. Derriek Size. The si7.P.s of wooden derricks shall be as specified 111 Table 1. The si1:es may be referred to by number1 nnd eaeh size shRl
10、l have only the partic ulnr combination of height A, base square B. and water table opening D, lS given. 5. Derrick Height. The height dimension A shnll be measured Rlong the neutral axis of the derrick leg from the top of the nte-r of Drill Holt. For stTaiht cable-tool drilling the center of the dr
11、ill hole shall be 6 in. from the center of tht derrick base on the center line to8 wards the samson post, with a t“lerance of :!: in. For combination cble and rotary tool drilling, and for straigh. rotary drilling. the center of the drill hole shall be at the center of the derrick base, tolerance %i
12、n. 1U desl. bisrber iio poln may be e:u.red oD apt“Cial ordt. Spllc11lion for noden Derrlk 5 SECTION IV DESIGN LOADS 12. Ma:dnium Safe Load. he maximum o;afe load of a wooden derrick, exprssea in pounds, sh1.1l be the total sole load of the derrlek and shall be pecifled on the name plate. 13. Maximu
13、m Safe Load Determinations. rrhe maximum safe load of a wooden derrick shall be d,ter mined by multiplyin,.- the maximum safe loef the der-rick ulting (rom the pArticular point of nneborA.ge , 54 mph. An actual wind velocity of 54 mph. is .equivalent to 10 mph. indicated velocity as de t,rmined by t
14、he Robinson fou-rcup anemometer. w;,d velocities TepOTted by the u. s. IVeather Bureau. stations are currently determined on more accurate iustn,ments and are within. ap proximately .1 per cent of the actual wind velocities. 16. The wind-load area of the pipe setback shooo 83 7,980 WI SA 1136 5 8 8,
15、900 22.5 5 8“ X 90 510 8,720 6,000 83 7,980 lA-,plJN to 136ft. rlenlck with either 26lt. or 30ft. baae. 2132 atands (12 taDda ( 9 stan.U lly 10 stands). 6 Ami!rlcnD Pftroleum lnttltute NOTE: In prev1ous editions of this specifica tion, aasumed pipe setback weights and wind areas were established in
16、, -:der to pTovide for standardized derrick designs. In th:is editicnt thesa assumed loadings have been retained, in order to Tetain ezisti-ng designs. In Table :1, these a18Utned ladinB ate exprmid in term of total length of pipe, weight per foot, and dimenmons ofpipe Sf!t back. (Pipe sizes, total
17、lengths, and 1ueights pe-r foot haue. been adjuaeed to confurm to current field practices and because of this their relation ship to wiml-load areas are only approximately equivalent.) If th.R c:sumed setbnc:k load c;ondi tions shown in Tabls are ezceeded, ptroper pre cautions should !Joe takm to pr
18、otect the derrick muler conditions oj high wind loads. NOTE: The wind-load anc. of the 1ipe setba. 1“-ind load on the Pipe setback, hori:ontal compo-:umt of the weight of the piOB ,-;etback, and the comoined resultmtt of these two loads, all Cl8 given in Table JJ, are based on the following assumpti
19、on and compr.tta ttons. a. lYind-Load Area of Pipe Setback. The area. for wind load ina /01 pipe setbacks qiven in Col. 7, Table 3, are based on the usm1.med heights of stands, number of stand., and arrangement of st.tnd.-; shown in Table 2. b. nind Load on Pipe Stback. The wind loads on the pipa se
20、lbuck at the point ol ongin, as given in Col. 9, Table !, are based on the area of 11ips set.back (Col. 7, times specified -minimum unit wi-ncl load (Par. H). Example (1S6-It. derrick): 510 X 11.76 = 6,000. c. Horizontal Component of 1Vei9ht of Pipe Set back. The ho-rizontal C()mponents of the uei!J
21、ilt of r.pe setback at the point of origin, given in Col. 8, Tab e 2, are based on the tota.lnumber of feet of drill pipe in the setback (Col. 4), tf,e weight per foot for the par ticular size (Col. 5), aml an angle. of mclitta.tion of 2% deg. The 1Veiffht valitM shoum are a . sumed acting ut the ap
22、pro:riniate center of gravity of theJipe setback, at a height above the de7“Tick floor equa to one half the lenath of the stand, measured parallel to tl1e slope. The 1Ueight of pipe, shown in Col. 5, is the nominal :u;eioht of threaded and coupled external-upset tubin,q or of drill pipe with 11 tool
23、 joint at each connecUon. for the pipe sizes shown in Col. 3. Example (136-ft. derrick and 5-in. drill pipe): Horizontal component at point of origin, in pounds, equals the total number of feet of drill pipe in setback (8,900), times weight per foot (22.5), times sine of 2 deg. (0.04362). 8,900 X 2.
24、5 X 0.0.4:l62 = 8,7;20 d. Combined Resultant Load. The combined re sultant load3, at the pomt of suppned resultant load at the finger bo.ard of the horizontal component of ptpe W81ght and ths 1vind load on ths pipe setback. a b 45 :-. (8,70 + 6,000) (-) 88 = 7,890 /b, nt lh finger board. whe in: T:
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