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US$859.00 · In stock Delivery: <= 7 days. True-PDF full-copy in English will be manually translated and delivered via email. DBT17-2018: (Seismic station construction specification Strong vibration station) Status: Valid DBT17: Evolution and historical versions
| Standard ID | Contents [version] | USD | STEP2 | [PDF] delivered in | Standard Title (Description) | Status | PDF |
| DB/T 17-2018 | English | 859 |
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(Seismic station construction specification Strong vibration station)
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DB/T 17-2018
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| DB/T 17-2006 | English | 599 |
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Specification for the construction of seismic station Strong motion station
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DB/T 17-2006
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PDF similar to DBT17-2018
Basic data | Standard ID | DB/T 17-2018 (DB/T17-2018) | | Description (Translated English) | (Seismic station construction specification Strong vibration station) | | Sector / Industry | Chinese Industry Standard (Recommended) | | Classification of Chinese Standard | P15 | | Word Count Estimation | 37,375 | | Date of Issue | 2018-12-26 | | Date of Implementation | 2019-07-01 | | Older Standard (superseded by this standard) | DB/T 17-2006 | | Regulation (derived from) | China Earthquake Administration Announcement (2018.12.26) | | Issuing agency(ies) | China Earthquake Administration |
DBT17-2018: (Seismic station construction specification Strong vibration station)---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.
(Seismic station construction specification Strong vibration station)
ICS 91.120.25
P15
People's Republic of China Earthquake Industry Standard
Replace DB/T 17-2006
Seismic Station Construction Specification Strong Motion Station
2018-12-26 released
2019-07-01 implementation
Issued by China Earthquake Administration
Table of contents
Preface Ⅲ
Introduction Ⅳ
1 Scope 1
2 Normative references 1
3 Terms and definitions 1
4 Site selection and site conditions survey 2
5 Observation room construction 3
6 Instrument pier construction 3
7 Station equipment and facility configuration 3
8 Installation and commissioning of observation equipment 4
9 Preparation of station construction report and file filing 4
Appendix A (Normative Appendix) Test requirements for background vibration acceleration of the site 5
Appendix B (Normative Appendix) Site Condition Survey Requirements 6
Appendix C (informative appendix) Design example of brick-concrete observation room 7
Appendix D (informative appendix) Design example of glass fiber reinforced plastic cover observation room 23
Appendix E (Informative Appendix) Example of Instrument Pier Design 28
Appendix F (Normative Appendix) Contents of Station Construction Report 31
Reference 33
Foreword
This standard is one of the series of "Code for the Construction of Seismic Stations". The standard structure and name of the series are as follows.
---Seismic station construction specification for seismic station (DB/T 16-2006)
---Seismic Station Construction Specification Strong Motion Station (DB/T 17-2006)
---Seismic station construction specification geomagnetic station (DB/T 9-2004)
---Seismic station construction specification. Earth station station. Part 1.Earth resistivity station (DB/T 18.1-2006)
---Seismic station construction specification. Geostationary station. Part 2.Geoelectric field station (DB/T 18.2-2006)
---Seismic station construction specification gravity station (DB/T 7-2003)
---Seismic station construction specification topographic deformation station part 1.cavern ground tilt and ground strain station (DB/T 8.1-2003)
---Seismic station construction specification topographic deformation station part 2.borehole ground tilt and ground strain station (DB/T 8.2-2003)
---Seismic station construction specification topographic deformation station part 3.fault deformation station (DB/T 8.3-2003)
---Seismic station construction specification, global positioning system continuous observation station (DB/T 19-2006)
---Seismic station construction specification. Underground fluid station. Part 1.Water level and water temperature station (DB/T 20.1-2006)
---Seismic station construction specification. Underground fluid station. Part 2.Gas radon and gas mercury station (DB/T 20.2-2006)
---Seismic station construction specification earthquake intensity quick report and early warning station (DB/T 60-2015)
This standard was drafted in accordance with GB/T 1.1-2009 "Guidelines for Standardization Part 1.Standard Structure and Compilation".
This standard replaces DB/T 17-2006 "Specifications for Construction of Seismic Stations for Strong Motion Stations". Compared with DB/T 17-2006, the main technology
The technical changes are as follows.
a) Modified terms and definitions, and added instrument piers, observation chambers and gravitational acceleration;
b) Modified the technical requirements for site selection, and added the method for determining the background vibration acceleration;
c) Modify the site site test to site condition survey, merge fixed station and mobile station site survey requirements, and add soil
Dynamic characteristic parameter test and station site classification;
d) Modified the technical requirements for the construction of the observation room, and added the design examples of the brick-concrete structure observation room and the glass steel cover observation room;
e) Modified the technical requirements for the construction of the instrument pier, and added the reinforcement drawing of the instrument pier design example;
f) Modified the technical requirements for station equipment configuration, and added technical requirements for power distribution, communication and lightning protection facilities;
g) Technical requirements for installation and commissioning of observation equipment have been added.
This standard was proposed by the China Earthquake Administration.
This standard is under the jurisdiction of the Earthquake Monitoring and Prediction Standardization Technical Committee.
Drafting organizations of this standard. Institute of Geophysics, China Earthquake Administration, Institute of Engineering Mechanics, China Earthquake Administration, Earthquake Administration of Yunnan Province, Beijing Engineering
Industry University, Nanjing University of Technology, Beijing Earthquake Administration, Guangdong Earthquake Administration, Gansu Earthquake Administration, Shanxi Earthquake Administration, Jiangsu Earthquake Administration, China
National Seismological Network Center.
The main drafters of this standard. Li Xiaojun, Wen Ruizhi, Cui Jianwen, Wang Yushi, Lan Riqing, Li Shanyou, Zhou Zhenghua, Yu Haiying, Yu Yanxiang, Wang Xiangnan,
Ye Chunming, Li Zuotang, Xu Yang, Yang Weilin, Zhou Kechang, Ren Yefei, Chi Mingjie, He Qiumei, Yu Hao, Li Shicheng, Lin Guoliang.
This standard was first published in February.2006, and this is the first revision.
Important note. If you have any comments or suggestions during the implementation of this standard, please send your comments or suggestions to the Standardization Technical Committee of Earthquake Monitoring and Prediction
(Address. No. 5, Heng Street, Sanlihe, Xicheng District, Beijing, China Earthquake Networks Center; Postcode. 100045), and indicate the contact information.
Introduction
Since the implementation of DB/T 17-2006 "Seismic Station Construction Specification Strong Motion Stations", it has guided the construction of strong motion stations in my country, especially
It is the construction of the national digital strong motion network to ensure the quality of strong motion observation data. On May 12,.2008, Wenchuan 8.0, Sichuan
On April 20,.2013, a large number of high-quality strong motion records were obtained from the earthquake of Lushan, Sichuan with a magnitude of 7.0, which was used for engineering seismic fortification and seismic science.
The research provided reliable record data and achieved good social benefits. This revision is mainly based on the following reasons.
---From the magnitude 8.0 earthquake in Wenchuan, Sichuan on May 12,.2008, and the magnitude 9.0 earthquake in the Northeast Pacific Ocean off Japan on March 11,.2011
Obtained a wealth of strong motion observation experience in major earthquakes at home and abroad;
---Based on the analysis of a large number of strong motion record data in my country, new understanding of the impact of strong motion station construction on the quality of observation data has been obtained;
--- Important progress has been made in the construction of new schemes, new technologies, new processes and new equipment for strong vibration stations at home and abroad, and is gradually being applied;
---In addition to the earthquake industry, nuclear power plants, large dams, high-speed railways, long-span bridges and other related industries and some local governments are also
The station construction puts forward new demands.
In this revision process, the following factors were mainly considered.
---Strict regulations on the key links that affect the quality of strong motion observation data, such as standardizing the construction requirements and dimensions of the observation room and instrument piers, and giving examples;
--- Weigh and coordinate construction costs and construction quality, control key aspects of quality control, reduce capital investment in ancillary facilities, and strive to
To ensure quality and reduce costs, maximize the number of strong motion stations to increase the number of high-quality strong motion observation data.
Seismic Station Construction Specification Strong Motion Station
1 Scope
This standard specifies the site selection and site condition survey, observation room construction, instrument pier construction, and station design related to the construction of strong motion stations.
Technical requirements for equipment and facility configuration, observation equipment installation and commissioning, station construction report writing and document filing.
This standard applies to the construction of strong vibration fixed stations in my country, and the construction of mobile stations and dedicated arrays can be used as a reference.
2 Normative references
The following documents are indispensable for the application of this document. For dated reference documents, only the dated version applies to this document.
For undated references, the latest version (including all amendments) applies to this document.
GB/T 3241 Electroacoustic Octave and Fractional Octave Filter
GB 50011 Code for seismic design of buildings
GB 50021-2001 Geotechnical Engineering Survey Code
GB 50057-2011 Code for lightning protection design of buildings
GB 50169 Code for construction and acceptance of grounding devices for electrical installations
GB/T 50269-1997 Test Specification for Dynamic Characteristics of Foundation
GB/T 50328 Construction project document filing specification
DB/T 10 Digital Strong Vibration Accelerometer
DB/T 68 Comprehensive lightning protection for seismic stations
3 Terms and definitions
The following terms and definitions apply to this document.
3.1
Strong vibration
Strong vibration of the site or engineering structure caused by earthquake or blasting.
[DB/T 10-2016, definition 3.1]
3.2
Strong vibration accelerometer
An instrument that records the acceleration of strong ground motion caused by earthquakes.
[GB/T 18207.2-2005, definition 8.1.4]
3.3
Strong motion station
Seismic stations used to monitor strong vibrations.
3.4
Fixed station
Long-term strong-vibration stations in a certain geographical location.
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