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ASTM D 7852 : 2013

Superseded

Superseded

A superseded Standard is one, which is fully replaced by another Standard, which is a new edition of the same Standard.

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superseded

A superseded Standard is one, which is fully replaced by another Standard, which is a new edition of the same Standard.

Standard Practice for Use of an Electrically Conductive Geotextile for Leak Location Surveys

Available format(s)

Hardcopy , PDF

Superseded date

18-07-2023

Language(s)

English

Published date

11-03-2013

CONTAINED IN VOL. 04.13, 2018 Defines standard procedures for using a conductive geotextile with electrical methods to locate leaks in exposed geomembranes and geomembranes covered with water or earth materials containing moisture.

1.1This standard practice describes standard procedures for using a conductive geotextile with electrical methods to locate leaks in exposed geomembranes and geomembranes covered with water or earth materials containing moisture.

1.2This standard practice provides guidance for the use of appropriate conductive geotextile used in leak location survey on geomembrane. This guide includes all types of conductive geotextile with sufficient conductivity for the particular electrical leak location method. A conductive geotextile is applicable to all types of geoelectric surveys when there is otherwise not a conductive layer under the geomembrane.

1.3The leak stream itself being adequately conductive. A conductive geotextile is applicable to all types of geoelectric surveys when there is otherwise not a conductive layer under the geomembrane.

1.4This standard practice is intended to ensure that leak location surveys can always be performed with a reasonable level of certainty. This standard practice provides guidance for the use of appropriate conductive geotextile used in leak location survey on geomembranes.

1.5Leak location surveys can be used on non-conductive geomembranes installed in basins, ponds, tanks, ore and waste pads, landfill cells, landfill caps, other containment facilities and building applications such as in parking garages, decks and green roofs. The procedures are applicable for geomembranes made of non conductive materials such as polyethylene, polypropylene, polyvinyl chloride, chlorosulfonated polyethylene, bituminous material, and other electrically-insulating materials. Leak location survey involving conductive or partially conductive geomembranes are not within the scope of this document.

1.6Warning—The electrical methods used for geomembrane leak location could use high voltages, resulting in the potential for electrical shock or electrocution. This hazard might be increased because operations might be conducted in or near water. In particular, a high voltage could exist between the water or earth material and earth ground, or any grounded conductor. These procedures are potentially VERY DANGEROUS, and can result in personal injury or death. Because of the high voltage that could be involved, and the shock or electrocution hazard, do not come in electrical contact with any leak unless the excitation power supply is turned off. The electrical methods used for geomembrane leak location should be attempted only by qualified and experienced personnel. Appropriate safety measures must be taken to protect the leak location operators as well as other people at the site.

1.7This standard guide does not purport to address all of the safety and liability concerns, if any, associated with its use. It is the responsibility of the user of this standard guide to establish appropriate safety and health practices and determine the applicability of regulatory limitations prior to use.

Committee
D 35
DocumentType
Standard Practice
Pages
3
PublisherName
American Society for Testing and Materials
Status
Superseded
SupersededBy

ASTM D 7931/D7931M : 2021 : REV A Standard Guide for Specifying Drainage Geocomposites
ASTM D 6747 : 2021 Standard Guide for Selection of Techniques for Electrical Leak Location of Leaks in Geomembranes
ASTM D 7931 : 2018 Standard Guide for Specifying Drainage Geocomposites
ASTM D 7931 : 2018 : REDLINE Standard Guide for Specifying Drainage Geocomposites

ASTM D 7002 : 2003 Standard Practice for Leak Location on Exposed Geomembranes Using the Water Puddle System
ASTM D 4439 : 2020 Standard Terminology for Geosynthetics
ASTM D 4439 : 2015 Standard Terminology for Geosynthetics
ASTM D 7002 : 2010 Standard Practice for Leak Location on Exposed Geomembranes Using the Water Puddle System
ASTM D 7007 : 2003 Standard Practices for Electrical Methods for Locating Leaks in Geomembranes Covered with Water or Earth Materials
ASTM D 6747 : 2015 : REDLINE Standard Guide for Selection of Techniques for Electrical Leak Location of Leaks in Geomembranes
ASTM D 7002 : 2016 : REDLINE Standard Practice for Electrical Leak Location on Exposed Geomembranes Using the Water Puddle Method
ASTM D 7007 : 2016 Standard Practices for Electrical Methods for Locating Leaks in Geomembranes Covered with Water or Earthen Materials
ASTM D 4439 : 2011 Standard Terminology for Geosynthetics
ASTM D 6747 : 2021 Standard Guide for Selection of Techniques for Electrical Leak Location of Leaks in Geomembranes
ASTM D 6747 : 2002 : EDT 1 Standard Guide for Selection of Techniques for Electrical Detection of Potential Leak Paths in Geomembrane
ASTM D 6747 : 2004 Standard Guide for Selection of Techniques for Electrical Detection of Potential Leak Paths in Geomembrane
ASTM D 4439 : 2015 : REV A Standard Terminology for Geosynthetics
ASTM D 7002 : 2016 Standard Practice for Electrical Leak Location on Exposed Geomembranes Using the Water Puddle Method
ASTM D 4439 : 2002 Standard Terminology for Geosynthetics
ASTM D 6747 : 2012 Standard Guide for Selection of Techniques for Electrical Detection of Leaks in Geomembranes
ASTM D 4439 : 2017 Standard Terminology for Geosynthetics
ASTM D 7007 : 2015 Standard Practices for Electrical Methods for Locating Leaks in Geomembranes Covered with Water or Earthen Materials
ASTM D 7007 : 2009 Standard Practices for Electrical Methods for Locating Leaks in Geomembranes Covered with Water or Earth Materials
ASTM D 4439 : 2001 Standard Terminology for Geosynthetics
ASTM D 4439 : 2014 Standard Terminology for Geosynthetics
ASTM D 4439 : 2004 Standard Terminology for Geosynthetics
ASTM D 6747 : 2015 Standard Guide for Selection of Techniques for Electrical Leak Location of Leaks in Geomembranes
ASTM D 4439 : 2017-08 TERMINOLOGY FOR GEOSYNTHETICS
ASTM D 7007 : 2016 : REDLINE Standard Practices for Electrical Methods for Locating Leaks in Geomembranes Covered with Water or Earthen Materials
ASTM D 4439 : 2000 Standard Terminology for Geosynthetics
ASTM D 4439 : 2018 Standard Terminology for Geosynthetics
ASTM D 7002 : 2015 Standard Practice for Electrical Leak Location on Exposed Geomembranes Using the Water Puddle Method

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