SANS 10120-5 L-1983 Code of practice for use with standardized specifications for civil engineering construction and contract documents Part 5 Contract administration Section L Med.pdf
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1、 Collection of SANS standards in electronic format (PDF) 1. Copyright This standard is available to staff members of companies that have subscribed to the complete collection of SANS standards in accordance with a formal copyright agreement. This document may reside on a CENTRAL FILE SERVER or INTRA
2、NET SYSTEM only. Unless specific permission has been granted, this document MAY NOT be sent or given to staff members from other companies or organizations. Doing so would constitute a VIOLATION of SABS copyright rules. 2. Indemnity The South African Bureau of Standards accepts no liability for any
3、damage whatsoever than may result from the use of this material or the information contain therein, irrespective of the cause and quantum thereof. SABS 0120 : Part 5 Section L-1983 edium-pressure pipelines PART 5 : CONTRACT ADMINISTRATION SECTION L CONTENTS Page Number START OF CONSTRUCTION 1 Genera
4、l 1 1MMEDIATELY AFTER THE HANDING OVER OF THE SITE . 1 General 1 DURING CONSTRUCTION 1 Methods of Construction 1 General 1 Materials 1 . Insertion pieces for flanges 1 Steel pipes of nominal bore over 150 m 1 Trenches and trench bottoms 1 Pipelaying in general 1 . AC pipes with C1 detachable joints
5、2 . Concrete mix for ancillary works 2 Filling of trenches 2 Mortar mixing 2 Hydraulic test on individual joints . 2 Administration . 2 Shop welding of steel pipes 2 Verifying protection . 2 Corrosive soils . 2 . Filing of AC pipe ends 2 Concrete casing . 2 Tolerances 2 Bleeding of AC pipeline joint
6、s . 2 Dye-penetrant teat on welded steel pipe . 2 Leakage rates 3 . QUALITY CONTROL AND OTHER CONSIDERATIONS 3 General . 3 Disputes . 3 DRAWINGS Drawing L.5.1 . Example of Data Required at Start of Contract . 4 Drawing L-5.2 . Maximum Permissible Leakage Rates for 100 urn Diameter AC Pipeline under
7、Hydraulic . . Test at 0. 4 2. 3 MPa 5 Drawing L-5.3 . Maximum Permissible Leakage Rates for 100 . 1200 m AC Pipelines under Hydraulic Test at Pressures up to 3 MPa 6 First Revision March 1983 This section of the code supersedes SABS 0120 : Part S : Section L-1980 Approved by the COUNCIL OF THE SOUTH
8、 AFRICAN BUREAU OF STANDARDS SABS 0120 : E1art 5 Section L-1983 Medium-pressure pipelines SABS 1200 L : MEDIUM-PRESSURE PIPELINES NOTE: The clause number(s) given at the beginning or after the heading of a clause is/a.re, unless otherwise stated, the number(s) of the relevant clause(s) of SABS 1200
9、L. START OF CONSTRUCTION GENERAL. For the purposes of this part of the code contract administration starts with instructions to the contractor to comnence work as set out in Subclause 4.1 of Section 0. IMEDIATELY AFTER THE HANDING OVER OF THE SITE GENERAL. The engineer should provide the contractor
10、with adequate information about where pipelines are to be laid. He should state positively the distances from boundaries, fences, kerb lines, etc., and also the depths to which the contractor is to excavate. The information should be extensive enough (as indicated on Drawing L-5.1) to enable the con
11、tractor to program the contract t completion. Information sufficient only to enable him to commence excavation is not acceptable. DURING CONSTRUCTION METHODS OF CONSTRUCTION General. Pipes of the finest quality and complying with a standard specification can be ruined by improper handling and by imp
12、roper bedding and backfilling. tn calculating the strength of a pipeline, certain assumptions are made in the design criteria regarding trench width, type of bedding, and backfilling. Observance of the recommendations of 3.1.2 - 3.1.10 below will assist in the achievement of optimum conditions in pr
13、actice. iidance on methods of-construction generally shotd also be obtained from the Code of practice for the construction of fibre-reinforced cement pipelinesL. Materials (Subclause 3.1). All pipes used must comply with the relevant requirements of the appropriate standard swcification, must be pro
14、tected durinq transportation and handlinq from damaqe caused by impact, drbpping, etc and must-be inspected for defects immediately before laying. aulty pipes or pipes that have suffered such damage that their serviceability is affected must not be used in the work. Insertion Pieces for Flanges (Sub
15、clause 3.8.3). Insertion pieces for flanges should be made of a) rubber, in the case of small pipes (of diameter under 450 mm) that are subject to a maximum test pressure not exceeding 2,s MPa; and b) compressed asbestos or similar approved material in the case of medium size pipes (of diameter 450
16、- 750 m), large pipes (of diameter over 750 mm), and small pipes that are subject to a maxnmum test pressure exceeding 2,s HPa. Steel Pipes of Nominal Bore over 150 nun (Subclause 3.9.2.2). The Sa 21 finish specified is equnvalent to a surface profile of 30-60 Mm. Trenches and Trench Bottoms (Subcla
17、use 5.1.1). Where the pipe is to be bedded on a natural earth bed, the mechanical excavation of trenches should be stopped high enough above the final elevation on the bottom of the pipe to enable the pipe barrel to be laid on a fim undisturbed earth bed. If overdigqing occurs, all loosened earth sh
18、ould be remved and the trench bottom brought back to grade with well-compacted material. In rock or water-bearing earth or where a concrete or granular base is to be provided, excavation should be done to the depth below the pipe bottom required for the class and thickness of bedding that is to be u
19、sed. Particular care should be taken with earth which, though fim when trenched, may be rendered unstable by rain or by seepage from drainage lines or leaking water mains. Until the pipeline has been laid and backfilled, it is essential that the bottom of the trench should be kept sufficiently free
20、from water to enable the bedding to be prepared and the pipeline laid. In the case of Class B and Class C bedding this means the trench must be kept quite dry. The following precautions should be taken: a) Surface water should be controlled by the disposition of excavated material and the constructi
21、on of drainage channels in such a manner that they prevent surface water or stormwater from entering the trench. b) When ground water is present, an adequate side channel should be made in the trench bottom adjacent to one side of the trench, and provision should be made to drain the water away fxom
22、 this channel at a low point or to remove it by pumping. Backfilling should be properly compacted in layers the thickness of which depends on local conditions. Care should be taken to prevent water from entering backfilled trenches. Road surfaces should be reinstated promptly. C) Where the trench bo
23、ttom is in a saturated silt and well-pointing is too difficult or expensive, a crushed stone working floor covered with a geofabric (porous drainage membrane) should te provided under the bedding layer for the pipe. Pipelaying in General (Subclauses 5.1.1, 5.1.2, and 5.1.4.2). The contractor is resp
24、orsible for laying the pipeline in such a manner that, when completed, it complies with the specification and drawings and performs its designed function. To achieve this he should ensure that his pipelayers axe qualified and experienced. In particular a) the onus for detecting damaged pipes (Subcla
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