ANSI EP486.2-2012 Shallow Post and Pier Foundation Design.pdf
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1、 ANSI/ASAE EP486.2 OCT2012 (R2016) Shallow Post and Pier Foundation Design American Society of Agricultural and Biological Engineers ASABE is a professional and technical organization, of members worldwide, who are dedicated to advancement of engineering applicable to agricultural, food, and biologi
2、cal systems. ASABE Standards are consensus documents developed and adopted by the American Society of Agricultural and Biological Engineers to meet standardization needs within the scope of the Society; principally agricultural field equipment, farmstead equipment, structures, soil and water resourc
3、e management, turf and landscape equipment, forest engineering, food and process engineering, electric power applications, plant and animal environment, and waste management. NOTE: ASABE Standards, Engineering Practices, and Data are informational and advisory only. Their use by anyone engaged in in
4、dustry or trade is entirely voluntary. The ASABE assumes no responsibility for results attributable to the application of ASABE Standards, Engineering Practices, and Data. Conformity does not ensure compliance with applicable ordinances, laws and regulations. Prospective users are responsible for pr
5、otecting themselves against liability for infringement of patents. ASABE Standards, Engineering Practices, and Data initially approved prior to the society name change in July of 2005 are designated as “ASAE”, regardless of the revision approval date. Newly developed Standards, Engineering Practices
6、 and Data approved after July of 2005 are designated as “ASABE”. Standards designated as “ANSI” are American National Standards as are all ISO adoptions published by ASABE. Adoption as an American National Standard requires verification by ANSI that the requirements for due process, consensus, and o
7、ther criteria for approval have been met by ASABE. Consensus is established when, in the judgment of the ANSI Board of Standards Review, substantial agreement has been reached by directly and materially affected interests. Substantial agreement means much more than a simple majority, but not necessa
8、rily unanimity. Consensus requires that all views and objections be considered, and that a concerted effort be made toward their resolution. CAUTION NOTICE: ASABE and ANSI standards may be revised or withdrawn at any time. Additionally, procedures of ASABE require that action be taken periodically t
9、o reaffirm, revise, or withdraw each standard. Copyright American Society of Agricultural and Biological Engineers. All rights reserved. ASABE, 2950 Niles Road, St. Joseph, Ml 49085-9659, USA, phone 269-429-0300, fax 269-429-3852, hqasabe.org ASAE EP486.2 OCT2012 (R2016) Copyright American Society o
10、f Agricultural and Biological Engineers 1 ANSI/ASAE EP486.2 OCT2012 (R2016) Revision approved October 2012 as an American National Standard Shallow Post and Pier Foundation Design Developed by the ASAE Post and Pole Foundation Subcommittee; approved by the Structures and Environment Division Standar
11、ds Committee; adopted by ASAE March 1991; revised editorially December 1992; reaffirmed December 1995, December 1996, December 1997, December 1998; revised December 1999; approved as an American National Standard October 2000; reaffirmed by ASAE February 2005;reaffirmed by ANSI March 2005; periodic
12、review extension for two years approved October 2009; revised October 2012; revision approved by ANSI October 2012; editorial revision June 2013; reaffirmed by ASABE and ANSI December 2016. Keywords: Foundation, Post, Shallow, Structures 1 Purpose and scope 1.1 Purpose. The purpose of this Engineeri
13、ng Practice is to present a procedure for determining the adequacy of shallow, isolated post and pier foundations in resisting applied structural loads. This Engineering Practice will help ensure that soil and backfill are not overloaded, foundation elements have adequate strength, frost heave is mi
14、nimized, and lateral movements are not excessive. 1.2 Scope. This engineering practice contains safety factors and other provisions for allowable stress design (ASD) which is also known as working stress design, and for load and resistance factor design (LRFD) which is also known as strength design.
15、 It also contains properties and procedures for modeling soil deformation for use in structural building frame analyses. 1.2.1 Limitations. Application of this Engineering Practice is limited to post and pier foundations with the following characteristics: Vertically installed in relatively level te
16、rrain; Concentrically-loaded footings; Minimum post or pier foundation spacing equal to the greater of 4.5 times the maximum dimension of the post/pier cross-section, or three times the maximum dimension of a footing or attached collar. 2 Normative references The following referenced documents are i
17、ndispensable for the application of this document. For dated references, only the edition cited applies unless noted. For undated references, the latest approved edition of the referenced document (including any amendments) applies. 2.1 Structural design specifications ACI 318, Building Code Require
18、ments for Structural Concrete and Commentary ANSI/AWC NDS, National Design Specification (NDS) for Wood Construction with Commentary ANSI/ASAE EP484, Diaphragm Design of Metal-Clad, Wood-Frame Rectangular Buildings ASAE EP486.2 OCT2012 (R2016) Copyright American Society of Agricultural and Biologica
19、l Engineers 2 ANSI/ASAE EP559, Design Requirements and Bending Properties for Mechanically Laminated-Wood Assemblies ASCE/SEI 7-10, Minimum Design Loads for Buildings and Other Structures SEI/ASCE 32 Design and Construction of Frost-Protected Shallow Foundations 2.2 Laboratory soil testing standards
20、 ASTM D422, Standard Test Method for Particle-Size Analysis of Soils ASTM D854, Standard Test Methods for Specific Gravity of Soil Solids by Water Pycnometer ASTM D2166, Standard Test Method for Unconfined Compressive Strength of Cohesive Soil ASTM D2435, Standard Test Methods for One-Dimensional Co
21、nsolidation Properties of Soils Using Incremental Loading ASTM D2487, Standard Practice for Classification of Soils for Engineering Purposes (Unified Soil Classification System) ASTM D2850, Standard Test Method for Unconsolidated-Undrained Triaxial Compression Test on Cohesive Soils ASTM D3080, Stan
22、dard Test Method for Direct Shear Test of Soils Under Consolidated Drained Conditions ASTM D4318, Standard Test Methods for Liquid Limit, Plastic Limit, and Plasticity Index of Soils ASTM D4643, Test Method for Determination of Water (Moisture) Content of Soil by Microwave Oven Heating ASTM D4767, S
23、tandard Test Method for Consolidated Undrained Triaxial Compression Test for Cohesive Soils 2.3. In-situ soil testing standards ASTM D1586, Standard Test Method for Standard Penetration Test (SPT) and Split-Barrel Sampling of Soils ASTM D2573, Standard Test Method for Field Vane Shear Test in Cohesi
24、ve Soil ASTM D3441, Standard Test Method for Mechanical Cone Penetration Tests of Soil ASTM D4719, Standard Test Method for Prebored Pressuremeter Testing in Soils ASTM D1194, Standard Test Method for Bearing Capacity of Soil for Static Load and Spread Footings (withdrawn 2003) ASTM D4750, Standard
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