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GB/T 33112-2016 English PDF

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GB/T 33112-2016: Verification method of instruments devoted to geotechnical engineering prototype monitoring
Status: Valid
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GB/T 33112-2016679 Add to Cart 5 days Verification method of instruments devoted to geotechnical engineering prototype monitoring Valid

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Basic data

Standard ID: GB/T 33112-2016 (GB/T33112-2016)
Description (Translated English): Verification method of instruments devoted to geotechnical engineering prototype monitoring
Sector / Industry: National Standard (Recommended)
Classification of Chinese Standard: P10
Classification of International Standard: 07.060
Word Count Estimation: 34,358
Date of Issue: 2016-10-13
Date of Implementation: 2017-05-01
Regulation (derived from): National Standard Notice No.1716 of 2016
Issuing agency(ies): General Administration of Quality Supervision, Inspection and Quarantine of the People's Republic of China, Standardization Administration of the People's Republic of China

GB/T 33112-2016: Verification method of instruments devoted to geotechnical engineering prototype monitoring


---This is a DRAFT version for illustration, not a final translation. Full copy of true-PDF in English version (including equations, symbols, images, flow-chart, tables, and figures etc.) will be manually/carefully translated upon your order.
Verification method of instruments devoted to geotechnical engineering prototype monitoring ICS 07.060 P10 National Standards of People's Republic of China Verification Method of Special Instrument for Prototype Observation of Geotechnical Engineering 2016-10-13 released 2017-05-01 implementation General Administration of Quality Supervision, Inspection and Quarantine of the People's Republic of China China National Standardization Management Committee released Directory Preface III 1 Scope 1 2 normative reference document 1 3 Terms and definitions 1 General 1 5 check parameter requirements 2 5.1 Calibration parameter classification 2 5.2 Indoor calibration 2 5.3 Field Verification 3 6 check conditions 4 6.1 Environmental conditions 4 6.2 calibration equipment 4 7 check items and calibration methods 5 7.1 Indoor calibration items and calibration methods 5 7.2 Field calibration items and calibration methods 6 8 check results and check cycle 7 8.1 Verification Results 7 8.2 Verification cycle 8 Appendix A (informative) Differential Resistive Instrument Indoor Check Record Table 9 Appendix B (informative appendix) Vibrating wire type instrument indoor calibration record table 10 Appendix C (informative) Potentiometer Instrument Laboratory Verification Record Table 11 Appendix D (informative) Photocopical record of photoelectric type (CCD) instrument Appendix E (informative) Manual checklist for stepper motor equipment Appendix F (informative appendix) Capacitive instrument indoor calibration record table 14 Appendix G (informative) Temperature measurement instruments Laboratory checklist 15 Appendix H (informative) Differential Resistive Instrument Field Verification Record Table 16 APPENDIX I (INFORMATION APPENDIX) Vibrating wire type instrument Verification record table 17 Appendix J (informative) Potentiometer Verification Record Table 18 Appendix K (informative) Photoelectric type (CCD) type/stepper motor type field check record table 19 Appendix L (Informative Appendix) Capacitive Instrument Field Verification Record Table 20 Appendix M (informative) Four-core differential resistive instrument Positive and negative measured resistance ratio checklist 21 Appendix N (Informative Appendix) Instrumentless Field Verification Record Table Appendix O (informative) Recorded recording of pressure instruments in pressurized pressure Appendix P (Informative Annex) Static Level Verification Record Table 24 Appendix Q (informative) Vertical calibration table APPENDIX R (INFORMATION APPENDIX) STANDARD CALIBRATION RECORD Appendix S (informative) Verification Report Cover 27 Appendix T (informative) Verification report title page 28 Reference 29

Foreword

This standard is drafted in accordance with the rules given in GB/T 1.1-2009. This standard is proposed and centralized by the Ministry of Water Resources of the People's Republic of China. The drafting of this standard. Ministry of Water Resources hydrological equipment and geotechnical equipment quality supervision and inspection test center, the Ministry of Water Resources Nanjing Water Resources Hydrology Institute of Automation, Jiangsu South Water Technology Co., Ltd. The main drafters of this standard. Fang Weihua, Chen Xingang, Zhao Yue, Yang Dongli, Zhang Yucheng, Guo Wei, Li Dong, Zhao Yang, Ji Hongjun, Xu Haisheng. Verification Method of Special Instrument for Prototype Observation of Geotechnical Engineering

1 Scope

This standard specifies the verification of field calibration and field calibration for special instruments for geotechnical engineering prototyping (hereinafter referred to as "prototype observation instruments") Parameter requirements, calibration conditions, calibration items and calibration methods. This standard applies to differential resistors, vibrating wire, potentiometer, photoelectric (CCD), stepper motor and capacitive prototype observation equipment Of the check.

2 normative reference documents

The following documents are indispensable for the application of this document. For dated references, only the dated edition applies to this article Pieces. For undated references, the latest edition (including all modifications) applies to this document. GB/T 13606 Geotechnical test equipment Geotechnical engineering equipment Vibrating wire sensor General technical conditions GB/T 24106 Terminology and symbols for geotechnical engineering instruments Code for inspection and verification of dam safety monitoring instruments

3 terms and definitions

GB/T 24106 Definitions and the following terms and definitions apply to this document. 3.1 Prototype observation According to technical regulations, the engineering structure of the traits and changes in the process of dynamic monitoring and observation of technical operations. 3.2 Geotechnical prototyping instrumentation instrumentsdevotedtogeotechnicalengineeringprototypemonitoring On the geotechnical engineering structure of the characteristics and changes in the observation of the instrument collectively. Note. According to the principle of measurement is divided into angle, displacement, pressure, stress, strain and temperature measurement instruments. According to the principle of instrument structure is divided into differential resistive, vibrating wire Type, potentiometer type, photoelectric (CCD), stepper motor and capacitive instruments. Its working principle is to use the characteristics of the instrument itself to obtain geotechnical engineering Prototype observations of various parameters. 3.3 Indoor calibration Under the indoor conditions, the accuracy of the prototype observation equipment, temperature parameters and insulation resistance and other technical indicators of the calibration. 3.4 Field verification in-siteverification Prototype observation equipment installation/embedded in the engineering entity state, the stability of the instrument measurement, insulation resistance, four-core differential resistance instrument Positive and negative resistance ratio, than the measurement limit and reset accuracy and other technical indicators of the calibration.

4 General

4.1 Prototype observation equipment and connecting cables should be identified, the name of the instrument, model, the main technical parameters, manufacturer name, factory number and date, etc.
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