ASTM D7498-2009 516 Standard Test Method for Vertical Strip Drains Using a Large Scale Consolidation Test《垂直地带排水大规模应力测试的标准试验方法》.pdf
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1、Designation: D 7498 09Standard Test Method forVertical Strip Drains Using a Large Scale ConsolidationTest1This standard is issued under the fixed designation D 7498; the number immediately following the designation indicates the year oforiginal adoption or, in the case of revision, the year of last
2、revision. A number in parentheses indicates the year of last reapproval. Asuperscript epsilon () indicates an editorial change since the last revision or reapproval.1. Scope1.1 This test method is a performance test, which measuresthe effectiveness of vertical strip drains on the time rates ofconsol
3、idation of compressible soils from construction projectsites.1.1.1 It is expected that the design agency will be respon-sible for performing this test. It is not intended to be amanufacturer performed test.1.2 This test method is applicable to all vertical strip drains.1.3 The values stated in SI un
4、its are to be regarded as thestandard. No other units of measurement are included in thisstandard.1.4 This standard does not purport to address all of thesafety concerns, if any, associated with its use. It is theresponsibility of the user of this standard to establish appro-priate safety and health
5、 practices and determine the applica-bility of regulatory limitations prior to use.2. Referenced Documents2.1 ASTM Standards:2D 4354 Practice for Sampling of Geosynthetics for TestingD 4439 Terminology for Geosynthetics3. Terminology3.1 DefinitionsFor definitions related to geosynthetics,see Termino
6、logy D 4439.3.2 Definitions of Terms Specific to This Standard:3.2.1 vertical strip drains, na geocomposite consisting ofa geotextile cover and drainage core installed vertically intosoil to provide drainage for accelerated consolidation of soils.4. Summary of Test Method4.1 This test method describ
7、es procedures for determiningthe effectiveness of vertical strip drains used under specifiedsoil conditions to enhance the time rate of consolidation ofcompressible soils.4.2 A specimen of the vertical strip drain is inserted in thetest chamber and compressible soil from the project site isremolded
8、around the vertical strip drain, such that the drain isin a similar position as it would be on the project site.4.3 The top of the soil is sealed with a wax seal, such thatdrainage only occurs through the vertical strip drain. Thevertical strip drain protrudes up through the seal.4.4 Asand drainage
9、blanket is placed on top of the wax seal,such that the vertical strip drain drains into the sand blanket.4.5 A rubber cup seal provides the means of applyingincremental loads in a similar manner to a standard soilsconsolidation test.4.6 A similar setup is used, only with a 50 mm (2 in.) sanddrain in
10、 place of the vertical strip drain.4.7 The Coefficients of Consolidation are determined fromthe test results for both the vertical strip drain and the sanddrain. Time rates of consolidation are then compared.4.8 Persons performing this test shall have knowledge in theconsolidation testing of soils.5
11、. Significance and Use5.1 As this is a time intensive test, it should not beconsidered as an acceptance test for commercial shipments ofprefabricated vertical strip drains.5.2 Prior to the development of vertical strip drains, when itwas desired to increase the rate of consolidation of a compress-ib
12、le soil on a construction project, large diameter sand drainswere installed. Vertical strip drains can be installed in areaswhere it is desired to increase the rate of soils consolidation inplace of these large diameter sand drains.5.3 This test method can be used to compare the perfor-mance of vert
13、ical strip drains to that of sand drains.1This test method is under the jurisdiction of ASTM Committee D35 onGeosynthetics and is the direct responsibility of Subcommittee D35.03 on Perme-ability and Filtration.Current edition approved June 1, 2009. Published July 2009.2For referenced ASTM standards
14、, visit the ASTM website, www.astm.org, orcontact ASTM Customer Service at serviceastm.org. For Annual Book of ASTMStandards volume information, refer to the standards Document Summary page onthe ASTM website.1Copyright ASTM International, 100 Barr Harbor Drive, PO Box C700, West Conshohocken, PA 19
15、428-2959, United States.6. Apparatus6.1 The apparatus for this test method is a specialty piece ofequipment that must be capable of safely handling loads up to206.8 kPa (30 psi) using compressed air.6.1.1 As this is a time intensive test, it is recommended tohave three test apparatus setups. This wi
16、ll allow simultaneoustesting of three vertical strip drain specimens.6.1.2 Test ChamberA 254.0-mm (10-in.) diameter by558.6-mm (22-in.) high by 12.7-mm (0.5-in.) wall thicknessPVC pipe. (Fig. 1)6.1.2.1 Drainage PortsSix 3.18-mm (0.125-in.) drainageports are located 152.4-mm (6-in.) from the top, and
17、 equallyspaced around the perimeter of the cylinder.6.1.2.2 On the outside of the cylinder, at 180 to oneanother, two 19.05-mm (0.75-in.) thick acrylic hooks arelocated 25.4 mm (1 in.) from the bottom of the test chamber forthe purpose of fastening the test chamber to the base plate.6.1.3 Base Plate
18、:A 361.95-mm (14.25-in.) diameter PVC flat plate, 38.1 mm(1.5 in.) thick.6.1.3.1 The base plate has a 12.7-mm (0.5-in.) wide by6.35-mm (0.25-in.) deep concentric groove, having an insidediameter of 254.0 mm (10 in.), located on the top side of thebase plate.6.1.3.2 A 3.17-mm (0.125-in.) by 228.6-mm
19、(9-in.) diam-eter rubber O-ring is stretched and placed in this groove.FIG. 1 Large Scale ConsolidatorD74980926.1.3.3 The test chamber is seated into the groove on top ofthe O-ring.6.1.4 Tension Rods:Equally spaced around the base plate, 158.75 mm (6.25 in.)from the center of the plate, are six 0.95
20、2-mm (0.375-in.)diameter by 76.2-mm (30-in.) long threaded tension rods.6.1.4.1 Each tension rod is attached to the base plate by twohex nuts, one above the plate, and one beneath.6.1.4.2 On two 180 opposing tension rods place a wing nutthat is used to secure the test chamber to the base plate via t
21、hehooks referred to in 6.1.2.2.6.1.5 Double Cup Seal Assembly:This is used to evenly distribute the consolidation load overthe soil in the test chamber. It consists of the following parts:6.1.5.1 Two 254.00-mm (10-in.) diameter by 4.76-mm(0.3125-in.) thick rubber cup seals that are placed back to ba
22、ck.They are sandwiched between two 241.3-mm (9.5-in) diameterby 12.7-mm (0.5-in) flat PVC plates.6.1.5.2 A 12.7-mm (0.5-in.) diameter by 228.6-mm (9-in.)long center rod centrally located on the cup seal assembly. It isattached to the assembly by a ball and socket device.6.1.5.3 A removable PVC platf
23、orm that is attached to thecenter rod after the test chamber is completely assembled. Thisis used to seat the deflection dial or transducer on.6.1.6 Top Plate:an identical plate to the base plate, including the groove fortest chamber seating, and holes for tension rods to go through.6.1.6.1 A 3.17-m
24、m (0.125-in.) by 228.6-mm (9-in.) diam-eter rubber O-ring is stretched and placed in the groove.6.1.6.2 A threaded 6.35-mm (0.25-in.) diameter hole goingcompletely through the top plate into which a brass fitting ismounted. The air supply line is attached to this fitting. Theconsolidation loads are
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