Seepage Characteristics of Slurry with Particle Additives in the High-Permeability Sand Layer
In the process of the slurry shield construction, the formation of the filter cake is the key to maintain the stability of the excavation face. In high-permeability formation, ordinary pure bentonite slurry is easy to pass through the formation void. Therefore, it is necessary to study the slurry pe...
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2021-01-01
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Series: | Geofluids |
Online Access: | http://dx.doi.org/10.1155/2021/5546932 |
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doaj-47dff096236245a6bc2bcee5aba7ad2c2021-04-19T00:04:39ZengHindawi-WileyGeofluids1468-81232021-01-01202110.1155/2021/5546932Seepage Characteristics of Slurry with Particle Additives in the High-Permeability Sand LayerYuan Wang0Zhikui Wang1Di Feng2Sijin Liu3Shujun Xu4Kun Zhou5College of Civil and Transportation EngineeringCollege of Civil and Transportation EngineeringCollege of Civil and Transportation EngineeringChina Railway 14TH Bureau Group Co.China Railway 14TH Bureau Group Co.China Railway 14TH Bureau Group Co.In the process of the slurry shield construction, the formation of the filter cake is the key to maintain the stability of the excavation face. In high-permeability formation, ordinary pure bentonite slurry is easy to pass through the formation void. Therefore, it is necessary to study the slurry permeability characteristics of the high-permeability sand layer. For the purpose of researching the permeability characteristics of slurry in sandy formation, this paper studies the influence of slurry viscosity on the formation of the filter cake in high-permeability formation under different pressure gradients by the slurry permeability test. The effect of additive particle size on the film-forming gain was studied by adding additives with different particle sizes into pure bentonite slurries with different viscosities. This paper presents a method to determine the optimum slurry viscosity and particle size for high-permeability formation so as to guide the slurry shield construction in high-permeability formation.http://dx.doi.org/10.1155/2021/5546932 |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Yuan Wang Zhikui Wang Di Feng Sijin Liu Shujun Xu Kun Zhou |
spellingShingle |
Yuan Wang Zhikui Wang Di Feng Sijin Liu Shujun Xu Kun Zhou Seepage Characteristics of Slurry with Particle Additives in the High-Permeability Sand Layer Geofluids |
author_facet |
Yuan Wang Zhikui Wang Di Feng Sijin Liu Shujun Xu Kun Zhou |
author_sort |
Yuan Wang |
title |
Seepage Characteristics of Slurry with Particle Additives in the High-Permeability Sand Layer |
title_short |
Seepage Characteristics of Slurry with Particle Additives in the High-Permeability Sand Layer |
title_full |
Seepage Characteristics of Slurry with Particle Additives in the High-Permeability Sand Layer |
title_fullStr |
Seepage Characteristics of Slurry with Particle Additives in the High-Permeability Sand Layer |
title_full_unstemmed |
Seepage Characteristics of Slurry with Particle Additives in the High-Permeability Sand Layer |
title_sort |
seepage characteristics of slurry with particle additives in the high-permeability sand layer |
publisher |
Hindawi-Wiley |
series |
Geofluids |
issn |
1468-8123 |
publishDate |
2021-01-01 |
description |
In the process of the slurry shield construction, the formation of the filter cake is the key to maintain the stability of the excavation face. In high-permeability formation, ordinary pure bentonite slurry is easy to pass through the formation void. Therefore, it is necessary to study the slurry permeability characteristics of the high-permeability sand layer. For the purpose of researching the permeability characteristics of slurry in sandy formation, this paper studies the influence of slurry viscosity on the formation of the filter cake in high-permeability formation under different pressure gradients by the slurry permeability test. The effect of additive particle size on the film-forming gain was studied by adding additives with different particle sizes into pure bentonite slurries with different viscosities. This paper presents a method to determine the optimum slurry viscosity and particle size for high-permeability formation so as to guide the slurry shield construction in high-permeability formation. |
url |
http://dx.doi.org/10.1155/2021/5546932 |
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