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

Geotechnical Engineering

View through CrossRef
Geotechnical analysis below the surface of hydropower plant is one way to determine the stability of the opening holes in determining the supporting system. A discussion about supporting systems cannot be separated from the analysis of the construction of recommended supporting system based on the weighting value of the geomechanical classification of the RMR and Q-System. The aims of this study are: 1) understanding the quality and class types of rock, 2) determining the supporting of RMR and Q-system, 3) understanding the safety factor of opening hole using Phase2. This study was carried out by recording data directly in the field, which later were used to determine the number of rock bolt needed in the installation of the supporting. Based on geomechanical classification, the rock mass in headrace tunnel adit 1 up stream has an average RMR value of 58 (moderate rock quality) and Q-system value of 4.06 (moderate rock quality), while adit 2 up stream has an average RMR value of 47 (moderate rock quality) and Q-system value of 2.30 (poor rock quality). Based on these geomechanical classification data, each type of supporting types is obtained. Supporting headrace tunnel adit 1 and 2 type, RMR value of type 1 can be applied to the RMR (60-80). RMR value of type 2 can be applied to the RMR (40-60). Supporting headrace tunnel adit 1 and 2 type, Q-system value of type 1 can be applied to Q-value (4-10). Q-system value can be applied to Q-value (1-4). Based on the modeling results using phase2, the total displacement of headrace tunnel adit 1 up stream is 0.92 cm with safety factor value of 1.20 and the total displacement of headrace tunnel adit 2 up stream is 1.17 cm with safety factor value of 1.04.
Center for Open Science
Title: Geotechnical Engineering
Description:
Geotechnical analysis below the surface of hydropower plant is one way to determine the stability of the opening holes in determining the supporting system.
A discussion about supporting systems cannot be separated from the analysis of the construction of recommended supporting system based on the weighting value of the geomechanical classification of the RMR and Q-System.
The aims of this study are: 1) understanding the quality and class types of rock, 2) determining the supporting of RMR and Q-system, 3) understanding the safety factor of opening hole using Phase2.
This study was carried out by recording data directly in the field, which later were used to determine the number of rock bolt needed in the installation of the supporting.
Based on geomechanical classification, the rock mass in headrace tunnel adit 1 up stream has an average RMR value of 58 (moderate rock quality) and Q-system value of 4.
06 (moderate rock quality), while adit 2 up stream has an average RMR value of 47 (moderate rock quality) and Q-system value of 2.
30 (poor rock quality).
Based on these geomechanical classification data, each type of supporting types is obtained.
Supporting headrace tunnel adit 1 and 2 type, RMR value of type 1 can be applied to the RMR (60-80).
RMR value of type 2 can be applied to the RMR (40-60).
Supporting headrace tunnel adit 1 and 2 type, Q-system value of type 1 can be applied to Q-value (4-10).
Q-system value can be applied to Q-value (1-4).
Based on the modeling results using phase2, the total displacement of headrace tunnel adit 1 up stream is 0.
92 cm with safety factor value of 1.
20 and the total displacement of headrace tunnel adit 2 up stream is 1.
17 cm with safety factor value of 1.
04.

Related Results

Integrating Environmental Sustainability into Civil and Geotechnical Design for Energy Infrastructure
Integrating Environmental Sustainability into Civil and Geotechnical Design for Energy Infrastructure
The global shift towards sustainable development has placed increasing emphasis on the integration of environmental sustainability within the design, construction, and management o...
Problems of terminology in civil engineering
Problems of terminology in civil engineering
The professional terminology of Ukrainian researchers and geotechnical specialists was previously formed in Russian within the framework established by the Soviet authorities, as b...
Is There Anything Better Than LRFD For Simplified Geotechnical RBD?
Is There Anything Better Than LRFD For Simplified Geotechnical RBD?
Geotechnical design codes, be it reliability-based or otherwise, must cater to diverse local site conditions and diverse local practices that grew and adapted over the years to sui...
Environmental issues in geotechnical engineering
Environmental issues in geotechnical engineering
Although the exact date of when geotechnical engineers began to address environmental issues is uncertain, such issues became a primary concern in the field of Geotechnical Enginee...
Geotechnical assessments for renewable energy infrastructure: Ensuring stability in wind and solar projects
Geotechnical assessments for renewable energy infrastructure: Ensuring stability in wind and solar projects
Geotechnical assessments are crucial for ensuring the stability and longevity of renewable energy infrastructure, particularly in wind and solar projects. This review explores the ...
Kinematic Deformation Control in Slope Design of Banded Iron Formations: A Case Study from Nkout, Cameroon
Kinematic Deformation Control in Slope Design of Banded Iron Formations: A Case Study from Nkout, Cameroon
Reliable slope design is essential for ensuring the stability and safety of open pit operations, particularly in structurally complex terrains such as banded iron formations, where...
Management of geotechnical data and processes
Management of geotechnical data and processes
This General Report reviews the topic of Management of Geotechnical Data and Processes based on the papers submitted to the 17th International Conference on Soil Mechanics and Geot...
Geo Risk Management Results for a Public Client Organization
Geo Risk Management Results for a Public Client Organization
Rijkswaterstaat is the executive agency of the Ministry of Infrastructure and the Environment, responsible for development and maintenance of the Dutch main road network, main wate...

Back to Top