ASCE 20-96-1997 Standard Guidelines for the Design and Installation of Pile Foundations《桩基础设计和安装标准指南》.pdf
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1、SPECIAL NOTICE The material presented in this publication has been prepared in accordance with recognized engineering principles. This Standard and Commentary should not be used without first securing competent advice with respect to their suitability for any given application. The publication of th
2、e material contained herein is not intended as a representation or warranty on the part of the American Society of Civil Engineers, or of any other person named herein, that this information is suitable for any general or particular use or promises freedom from infringement of any patent or patents.
3、 Anyone making use of this information assumes all liability from such use. STD.ASCE 20-ENGL L99b m 0759b00 002.5828 340 m ASCE 20-96 American Society of Civil Engineers Standard Guidelines for the Design and Installation of Pile Foundations STD-ASCE 20-ENGL 177b w 0757b00 0025827 287 ASCE 20-96 Ame
4、rican Society of Civil Engineers Standard Guidelines for the Design and Installation of Pile Foundations Published by American Society ASCE of Civil Engineers 345 East 47th Street New York, NY 1 O01 7-2398 STD-ASCE 20-ENGL L77b = 0757b00 0025830 TT7 = Abstract: This Standard provides a guideline for
5、 an engineering approach to the design and subsequent installation of pile foundations. The purpose is to furnish a rational basis for this process, taking into account published model building codes and general standards of practice. It covers such topics as: i) Administrative requirements; 2) pile
6、 shaft strength requirements; 3) soil-pile interface strength requirements and capacity; 4) design loads; 5) design stresses; 6) construction and layout guidelines for pile design; and 7) installation guidelines for pile construction. In addition, the Standard includes information on applicable stan
7、dards from ASTM, AWPA, and ACI. It concludes with an Appendix on partial factors of safety. Library of Congress Cataloging-in-Publication Data American Society of Civil Engineers. Standard guidelines for the design and installation of pile foundations / ASCE, American Society of Civil Engineers. P.
8、cm. 1. Piling (Civil engineering)-Design and construction-Standards. I. Title. TA780.A523 1997 96-30072 624.154-dc21 CIP ISBN 0-7844-02 19- 1 Photocopies. Authorization to photocopy material for internal or personal use under circumstances not falling within the fair use provisions of the Copyright
9、Act is granted by ASCE to libraries and other users registered with the Copyright Clearance Center (CCC) Transactional Reporting Service, provided that the base fee of $4.00 per article plus $.50 per page is paid directly to CCC, 222 Rosewood, Drive, Danvers, MA 01923. The identification for ASCE Bo
10、oks is O-7844-0219-1/97/$4.00 + $SO per page. Requests for special permission or bulk copying should be addressed to Permissions also called down-drag load. Pile Cushion: Material, most commonly plywood, placed on top of a precast concrete pile to control compressive and tensile stresses in the pile
11、 during driving; to distribute the force of the hammer blow uniformly over the top of the pile; and to compen- sate for surface irregularities at the top surface of the pile. Static Analysis: Analysis of the supporting capacity of the pile-soil system employing rele- vant soil and/or rock strength p
12、arameters and prop- erties along with established interaction correla- tions between the pile shaft and the soilhock materials. Service Load (Design Load): The maximum com- pressive, tensile, or lateral load, or combination thereof, considered to act on the pile during the life of the structure. Set
13、tlement (Load Test): Gross settlement is the total downward movement of a pile that occurs under an applied test load. Net settlement is gross settlement minus the rebound that occurs after removal of the applied test load. Supporting Materials: The layer or layers of soil or rock that provide princ
14、ipal support to the pile. ultimate Load (Capacity): The load at which the pile failure first occurs due to exceeding the struc- tural strength of the shaft, or the ultimate resistance of the supporting materials. Wave Equation Analysis: A rational computer- based method of analysis of the interactio
15、n of the hammer, pile, and soil, based on one-dimensional elastic wave propagation principles. Working Load (Design Load): The maximum compressive, tensile, or lateral load, or combination thereof, considered to act on the pile during the life of the structure. 2 STD-ASCE 20-ENGL L77b 0757b00 002583
16、7 L2b STANDARD GUIDELINES FOR THE DESIGN AND INSTALLATION OF PILE FONDATIONS CHAPTER 2 Administrative Requirements 2.1 Investigation for Design analysis of the site and subsurface conditions should be conducted, under the supervision of a Geotechni- cal Engineer, to provide the basis for the design
17、and installation of foundation piles. Borings, test pits, cone probes, subsurface sampling, field and labora- tory tests, or in the sole judgement of the Engineer, other data including information from adjacent sites, previous construction or engineering, and other sources of site information may be
18、 used to identify appropriate geotechnical design criteria, or to con- firm design and installation criteria previously obtained. All such information should be identified and maintained in the project files. A foundation investigation and engineering 2.2 Design Analysis other available data should
19、then be used by the Engineer to prepare the pile foundation design analysis. The design analysis should include consid- eration of the loading conditions, environment, structure deformation tolerances, anticipated bearing strata, acceptable methods of pile instailation, suit- able pile types, and th
20、e character and performance of previous or existing construction at the site or adjacent sites. The Engineer should then prepare a design for the pile foundation with appropriate margins of safety against (1) failure of the earth materials, and (2) against over-stressing of the pile shaft as require
21、d by this Standard. The foundation design should be consistent with the deformation tolerances of the structure. The pile type, design load, pile capacity, estimated pile lengths, and installation cri- teria are integral parts of the foundation design. The results of the subsurface investigation and
22、/or 2.3 Durability Piles may deteriorate due to biological, chemical, and physical actions caused by particular site condi- tions. Therefore the Engineer should evaluate possi- ble deleterious actions on pile materials that limit the life of the pile or reduce its structural capacity. The pile desig
23、n should show a reasonable expecta- tion of the shaft structural strength required by this Standard for the expected life of the supported structure, or provisions should be made for pile pro- tection, or for any subsequent replacement that may be required. For piles that extend above the ground sur
24、face or through open water, special consideration should be given to the possible effect of environ- mental conditions on the pile material. Appropriate measures should be taken to safeguard the founda- tion from deterioration due to conditions such as atmospheric corrosion, sea water exposure, ther
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