Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

Experimental Study on the Effect of Temperature on the Characteristics of Cutterhead Mud Cake in Complex Red-Bed Geology

View through CrossRef
Mud caking on shield cutterhead is a critical issue for tunnel safety, and temperature and duration are factors that can affect the characteristics of mud cake. Therefore, the aim of this study is to explore the characteristics of different temperatures and action times on the adhesion and hardness of red-bed geological mud cake. A self-designed experimental apparatus was used to simulate the adhesion of mud cake on the cutterhead. The adhesion and hardness of the mud cake were analyzed through mud cake shedding tests and hardness tests. In addition, water film theory is used to analyze the adhesion mechanism of the mud cake. The results indicate that temperature and duration are key factors affecting mud cake shedding. Within the range of 25~150 °C, mud cake shedding efficiency is positively correlated with temperature and duration. However, temperatures above 150 °C promote the sintering of the mud cake, reducing its shedding efficiency. The hardness of the mud cake increases with temperatures above 150 °C, where the mud cake hardens and sinters, increasing the difficulty of shield tunneling. The water content of mud cake is influenced by temperature and time, affecting the amount of mud cake shedding. As the water content increases, the shedding initially decreases and then increases, reaching its minimum at about 30%, where the adhesion is strongest. By controlling the temperature and time, the water content can be optimized, improving the handling of mud cake.
Title: Experimental Study on the Effect of Temperature on the Characteristics of Cutterhead Mud Cake in Complex Red-Bed Geology
Description:
Mud caking on shield cutterhead is a critical issue for tunnel safety, and temperature and duration are factors that can affect the characteristics of mud cake.
Therefore, the aim of this study is to explore the characteristics of different temperatures and action times on the adhesion and hardness of red-bed geological mud cake.
A self-designed experimental apparatus was used to simulate the adhesion of mud cake on the cutterhead.
The adhesion and hardness of the mud cake were analyzed through mud cake shedding tests and hardness tests.
In addition, water film theory is used to analyze the adhesion mechanism of the mud cake.
The results indicate that temperature and duration are key factors affecting mud cake shedding.
Within the range of 25~150 °C, mud cake shedding efficiency is positively correlated with temperature and duration.
However, temperatures above 150 °C promote the sintering of the mud cake, reducing its shedding efficiency.
The hardness of the mud cake increases with temperatures above 150 °C, where the mud cake hardens and sinters, increasing the difficulty of shield tunneling.
The water content of mud cake is influenced by temperature and time, affecting the amount of mud cake shedding.
As the water content increases, the shedding initially decreases and then increases, reaching its minimum at about 30%, where the adhesion is strongest.
By controlling the temperature and time, the water content can be optimized, improving the handling of mud cake.

Related Results

Effect of different clay additions to concrete on its ultrasonic acoustic parameters and compressive strength
Effect of different clay additions to concrete on its ultrasonic acoustic parameters and compressive strength
Abstract Concrete may have different levels of mud content due to various factors, which can lead to reduction in strength and changes in ultrasonic acoustic parameters. In...
Radial Filtration of Drilling Mud
Radial Filtration of Drilling Mud
Abstract A laboratory investigation has been made of the effects of mud hydraulics upon the formation and erosion of mud filter cakes. The tests were conducted to...
CFD Simulation and Optimization of a Cake Filtration System
CFD Simulation and Optimization of a Cake Filtration System
Abstract This study presents a simulation of filter cake formation during the filtration of rice hull ash and liquid mixture using ANSYS Fluent software. Filter cake...
Relationships Between the Mud Resistivity, Mud Filtrate Resistivity, and the Mud Cake Resistivity of Oil Emulsion Mud Systems
Relationships Between the Mud Resistivity, Mud Filtrate Resistivity, and the Mud Cake Resistivity of Oil Emulsion Mud Systems
Introduction The evaluation of certain reservoir properties, such as porosity and fluid saturation, from electrical well surveys has been widely accepted in petro...
Embedding storytelling in practice through CAKE – a recipe for team wellbeing and effectiveness
Embedding storytelling in practice through CAKE – a recipe for team wellbeing and effectiveness
Background: CAKE, an interactive resource to promote individual and team wellbeing and effectiveness through storytelling was co-designed with community nurses in 2020. In Phase 1 ...
Analysis Of The Sensory Quality Of Rolled Cake Using Coconut Milk Fat
Analysis Of The Sensory Quality Of Rolled Cake Using Coconut Milk Fat
This research was motivated by the high trans fat content in margarine which is associated with an increased risk of heart disease and there has been no research on the effect of u...
Experimental Investigation of Permeability and Fluid Loss Properties of Water Based Mud Under High Pressure-High Temperature Conditions
Experimental Investigation of Permeability and Fluid Loss Properties of Water Based Mud Under High Pressure-High Temperature Conditions
Drilling in deeper formations and in high pressure and high temperature (HPHT) environments is a new frontier for the oil industry. Fifty years ago, no one would have imagined dril...
Mud Displacement In Primary Cementation
Mud Displacement In Primary Cementation
Abstract Displacement experiments were carried out in a pilot-plant model, to arrive at means of improving zonal isolation. Scaled and full-sized annuli, with and...

Back to Top