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

Control of Gob‐Side Roadway with Large Mining Height in Inclined Thick Coal Seam: A Case Study

View through CrossRef
The gob‐side roadway of 130205, a large‐mining‐height working face in the Yangchangwan coal mine, was investigated in terms of the mine pressure law and support technology for large mining heights and narrow coal pillars for mining roadways. The research included field investigations, theoretical analysis, numerical simulation, field tests, and other methods. This paper analyzes the form of movement for overlying rock structure in a gob‐side entry with a large mining height and summarizes the stress state and deformation failure characteristics of the surrounding rock. The failure mechanism of the surrounding rock of the gob‐side roadway and controllable engineering factors causing deformation were analyzed. FLAC3D numerical simulation software was used to explore the influence law of coal pillar width, working face mining height, and mining intensity on the stability of the surrounding rock of the gob‐side roadway. Ensuring the integrity of the coal pillar, improving the coordination of the system, and using asymmetric support structures as the core support concept are proposed. A reasonably designed support scheme for the gob‐side roadway of the working face for 130205 was conducted, and a desirable engineering effect was obtained through field practice verification.
Title: Control of Gob‐Side Roadway with Large Mining Height in Inclined Thick Coal Seam: A Case Study
Description:
The gob‐side roadway of 130205, a large‐mining‐height working face in the Yangchangwan coal mine, was investigated in terms of the mine pressure law and support technology for large mining heights and narrow coal pillars for mining roadways.
The research included field investigations, theoretical analysis, numerical simulation, field tests, and other methods.
This paper analyzes the form of movement for overlying rock structure in a gob‐side entry with a large mining height and summarizes the stress state and deformation failure characteristics of the surrounding rock.
The failure mechanism of the surrounding rock of the gob‐side roadway and controllable engineering factors causing deformation were analyzed.
FLAC3D numerical simulation software was used to explore the influence law of coal pillar width, working face mining height, and mining intensity on the stability of the surrounding rock of the gob‐side roadway.
Ensuring the integrity of the coal pillar, improving the coordination of the system, and using asymmetric support structures as the core support concept are proposed.
A reasonably designed support scheme for the gob‐side roadway of the working face for 130205 was conducted, and a desirable engineering effect was obtained through field practice verification.

Related Results

On Flores Island, do "ape-men" still exist? https://www.sapiens.org/biology/flores-island-ape-men/
On Flores Island, do "ape-men" still exist? https://www.sapiens.org/biology/flores-island-ape-men/
<span style="font-size:11pt"><span style="background:#f9f9f4"><span style="line-height:normal"><span style="font-family:Calibri,sans-serif"><b><spa...
Research on Gob-Side Entry Retaining Mining of Fully Mechanized Working Face in Steeply Inclined Coal Seam: A Case in Xinqiang Coal Mine
Research on Gob-Side Entry Retaining Mining of Fully Mechanized Working Face in Steeply Inclined Coal Seam: A Case in Xinqiang Coal Mine
As a kind of non-coal pillar roadway support technique, gob-side entry retaining is of great significance to improve the production efficiency of a fully mechanized working face. H...
Investigation of the Optimal Layout of the Roadway in Closely Spaced Ultra‐Thick Coal Seams Mining with Remaining Coal Pillars
Investigation of the Optimal Layout of the Roadway in Closely Spaced Ultra‐Thick Coal Seams Mining with Remaining Coal Pillars
The reasonable layout of the roadway in closely spaced, ultra‐thick coal seam mining is of great significance to mining safety. Based on the research background of repeated roof le...
Coal
Coal
AbstractCoal is an organic, combustible, rock‐like natural substance that occurs in various forms from hard and brittle anthracite to soft and friable lignite. Coal is sometimes cl...
The Research on Stability of Surrounding Rock in Gob-side Entry Driving in Deep and Thick Seam
The Research on Stability of Surrounding Rock in Gob-side Entry Driving in Deep and Thick Seam
Abstract The gob-side entry driving is driving in low pressure area, which bears less support pressure and is easy to maintain, so it is widely used. Taking the gob-side en...
Study On In-Seam Wave Response Characteristics of Reflection in Fault Bearing Coal Seam of Shuangliu Coal Mine
Study On In-Seam Wave Response Characteristics of Reflection in Fault Bearing Coal Seam of Shuangliu Coal Mine
Abstract In order to study the response characteristics of reflected trough in-seam wave in fault bearing coal seam, find out the geological structure of coal mine, and ens...

Back to Top