EN ISO 11274:2019
土壤质量.水分保持特性的测定.实验室法

Soil quality - Determination of the water-retention characteristic - Laboratory methods (ISO 11274:2019)

2020-04

EN ISO 11274:2019 发布历史

This document specifies laboratory methods for determination of the soil water-retention characteristic. This document applies only to measurements of the drying or desorption curve. Four methods are described to cover the complete range of soil water pressures as follows: a) method using sand, kaolin or ceramic suction tables for determination of matric pressures from 0 kPa to −50 kPa; b) method using a porous plate and burette apparatus for determination of matric pressures from 0 kPa to −20 kPa; c) method using a pressurized gas and a pressure plate extractor for determination of matric pressures from −5 kPa to −1 500 kPa; d) method using a pressurized gas and pressure membrane cells for determination of matric pressures from −33 kPa to −1 500 kPa. Guidelines are given to select the most suitable method in a particular case.

EN ISO 11274:2019由欧洲标准化委员会 IX-CEN 发布于 2019-10-16,并于 2020-01-31 实施,于 2020-04-30 废止。

EN ISO 11274:2019在国际标准分类中归属于: 13.080.40 土壤的水文特性。

EN ISO 11274:2019的历代版本如下:

  • 2019年 EN ISO 11274:2019 土壤质量.水分保持特性的测定.实验室法
  • 2014年 EN ISO 11274:2014 土壤质量.水分保持特性的测定.实验室法(ISO 11274:1998 + Cor 1:2009)

 

 

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标准号
EN ISO 11274:2019
发布
2019年
发布单位
欧洲标准化委员会
当前最新
EN ISO 11274:2019
 
 
适用范围
This document specifies laboratory methods for determination of the soil water-retention characteristic. This document applies only to measurements of the drying or desorption curve. Four methods are described to cover the complete range of soil water pressures as follows: a) method using sand, kaolin or ceramic suction tables for determination of matric pressures from 0 kPa to −50 kPa; b) method using a porous plate and burette apparatus for determination of matric pressures from 0 kPa to −20 kPa; c) method using a pressurized gas and a pressure plate extractor for determination of matric pressures from −5 kPa to −1 500 kPa; d) method using a pressurized gas and pressure membrane cells for determination of matric pressures from −33 kPa to −1 500 kPa. Guidelines are given to select the most suitable method in a particular case.

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