AASHTO R 13-2012 Standard Practice for Conducting Geotechnical Subsurface Investigations.pdf
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1、Standard Practice for Conducting Geotechnical Subsurface Investigations AASHTO Designation: R 13-121ASTM Designation: D420-98(2003) American Association of State Highway and Transportation Officials 444 North Capitol Street N.W., Suite 249 Washington, D.C. 20001 TS-1b R 13-1 AASHTO Standard Practice
2、 for Conducting Geotechnical Subsurface Investigations AASHTO Designation: R 13-121ASTM Designation: D420-98(2003) INTRODUCTION Investigation and identification of subsurface materials and conducting subsurface investigations involve complex techniques that may be accomplished by many different proc
3、edures and may be variously interpreted. These studies are frequently site specific and are influenced by geological and geographical settings; by the purpose of the investigation; by the design requirements for the project proposed; and by the background, training, and experience of the investigato
4、r. This standard practice for soil, rock, and groundwater investigation based on standard procedures will provide a more consistent, uniform, and rational methodology for site evaluations. An acceptable and consistent investigation, sampling, testing, and evaluation program will determine subsurface
5、 site conditions and thereby provide the information needed to bring about safer and more cost-effective transportation facilities. 1. SCOPE 1.1. This standard practice identifies recognized methods by which soil, rock, and groundwater conditions may be determined. The objective of the investigation
6、 should be to identify and locate, both horizontally and vertically, significant soil and rock types and groundwater conditions present within a given site area and to establish the characteristics of the subsurface materials by sampling and in situ testing. Laboratory testing of soil and rock sampl
7、es is governed by other AASHTO and ASTM standards. 1.2. This standard may involve hazardous materials, operations, and equipment. This standard does not propose to address all safety concerns associated with its usage. It is the duty and responsibility of the user of this standard to establish appro
8、priate safety and health practices and determine the applicability of regulatory limitations prior to use. Note 1The values stated in SI units are to be regarded as the standard. 2. REFERENCED DOCUMENTS 2.1. AASHTO Standards: M 145, Classification of Soils and Soil-Aggregate Mixtures for Highway Con
9、struction Purposes M 146, Terms Relating to Subgrade, Soil-Aggregate, and Fill Materials M 147, Materials for Aggregate and Soil-Aggregate Subbase, Base, and Surface Courses T 2, Sampling of Aggregates T 194, Determination of Organic Matter in Soils by Wet Combustion T 206, Penetration Test and Spli
10、t-Barrel Sampling of Soils 2015 by the American Association of State Highway and Transportation Officials.All rights reserved. Duplication is a violation of applicable law.TS-1b R 13-2 AASHTO T 207, Thin-Walled Tube Sampling of Soils T 221, Repetitive Static Plate Load Tests of Soils and Flexible Pa
11、vement Components for Use in Evaluation and Design of Airport and Highway Pavements T 223, Field Vane Shear Test in Cohesive Soil T 225, Diamond Core Drilling for Site Investigation T 252, Measurements of Pore Pressures in Soils T 267, Determination of Organic Content in Soils by Loss on Ignition T
12、306, Progressing Auger Borings for Geotechnical Explorations 2.2. ASTM Standards: C119, Standard Terminology Relating to Dimension Stone C294, Standard Descriptive Nomenclature for Constituents of Concrete Aggregates D653, Standard Terminology Relating to Soil, Rock, and Contained Fluids D1194, Stan
13、dard Test Method for Bearing Capacity of Soil for Static Load and Spread Footings (Withdrawn 2003) D1196/D1196M, Standard Test Method for Nonrepetitive Static Plate Load Tests of Soils and Flexible Pavement Components, for Use in Evaluation and Design of Airport and Highway Pavements D1586, Standard
14、 Test Method for Standard Penetration Test (SPT) and Split-Barrel Sampling of Soils D2487, Standard Practice for Classification of Soils for Engineering Purposes (Unified Soil Classification System) D2488, Standard Practice for Description and Identification of Soils (Visual-Manual Procedure) D3213,
15、 Standard Practices for Handling, Storing, and Preparing Soft Intact Marine Soil D3385, Standard Test Method for Infiltration Rate of Soils in Field Using Double-Ring Infiltrometer D3404, Standard Guide for Measuring Matric Potential in Vadose Zone Using Tensiometers D3441, Standard Test Method for
16、Mechanical Cone Penetration Tests of Soil (Withdrawn 2014) D3550, Standard Practice for Thick Wall, Ring-Lined, Split Barrel, Drive Sampling of Soils D3740, Standard Practice for Minimum Requirements for Agencies Engaged in Testing and/or Inspection of Soil and Rock as Used in Engineering Design and
17、 Construction D4083, Standard Practice for Description of Frozen Soils (Visual-Manual Procedure) D4220, Standard Practices for Preserving and Transporting Soil Samples D4394, Standard Test Method for Determining In Situ Modulus of Deformation of Rock Mass Using Rigid Plate Loading Method D4395, Stan
18、dard Test Method for Determining In Situ Modulus of Deformation of Rock Mass Using Flexible Plate Loading Method D4403, Standard Practice for Extensometers Used in Rock D4427, Standard Classification of Peat Samples by Laboratory Testing D4428/D4428M, Standard Test Methods for Crosshole Seismic Test
19、ing D4429, Standard Test Method for CBR (California Bearing Ratio) of Soils in Place D4452, Standard Practice for X-Ray Radiography of Soil Samples D4506, Standard Test Method for Determining In Situ Modulus of Deformation of Rock Mass Using a Radial Jacking Test D4544, Standard Practice for Estimat
20、ing Peat Deposit Thickness 2015 by the American Association of State Highway and Transportation Officials.All rights reserved. Duplication is a violation of applicable law.TS-1b R 13-3 AASHTO D4553, Standard Test Method for Determining In Situ Creep Characteristics of Rock D4554, Standard Test Metho
21、d for In Situ Determination of Direct Shear Strength of Rock Discontinuities D4555, Standard Test Method for Determining Deformability and Strength of Weak Rock by an In Situ Uniaxial Compressive Test D4623, Standard Test Method for Determination of In Situ Stress in Rock Mass by Overcoring MethodUS
22、BM Borehole Deformation Gauge D4630, Standard Test Method for Determining Transmissivity and Storage Coefficient of Low-Permeability Rocks by In Situ Measurements Using the Constant Head Injection Test D4631, Standard Test Method for Determining Transmissivity and Storativity of Low Permeability Roc
23、ks by In Situ Measurements Using Pressure Pulse Technique D4645, Standard Test Method for Determination of In-Situ Stress in Rock Using Hydraulic Fracturing Method D4700, Standard Guide for Soil Sampling from the Vadose Zone D4719, Standard Test Methods for Prebored Pressuremeter Testing in Soils D4
24、729, Standard Test Method for In Situ Stress and Modulus of Deformation Using Flatjack Method D4750, Standard Test Method for Determining Subsurface Liquid Levels in a Borehole or Monitoring Well (Observation Well) (Withdrawn 2010) D4879, Standard Guide for Geotechnical Mapping of Large Underground
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