Submerge Pipeline under the Karun River by Artificial Intelligence Design of Spinal Cords Behavior and Physical Model
Publication: Pipelines 2008: Pipeline Asset Management: Maximizing Performance of our Pipeline Infrastructure
Abstract
Irrigation project of Khorramshahr area should be started to supply people with a new irrigation system to cover more than 10,000 HEC. Economic assessments led to a selection of an easy and financial scheme using international standards and national independence criteria. Therefore, artificial intelligence designing could be used to solve the problem of costly designing and expensive water transmission. Physical model is based on segmental parts and flexible joints. This model considers spinal cords behavior using three degrees of freedom of movement and bending. Joints are designed to absorb the interactions of soil bed and pipeline displacements. Therefore, tentative joints were made and then orders were given to Iranian factories for such a product. In addition, discharging pipeline for mending purposes may lead to section warping. Huge stresses created in practice should be considered by the factory design department. Maximum deflection is computed by physical models when the pipeline is empty or when it is instantly charged. A result of the physical model is that it can produce circular pipeline with a diameter of 500mm to 3000mm.
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© 2008 American Society of Civil Engineers.
History
Published online: Apr 26, 2012
ASCE Technical Topics:
- Artificial intelligence and machine learning
- Computer programming
- Computing in civil engineering
- Design (by type)
- Engineering fundamentals
- Geomechanics
- Geotechnical engineering
- Hydraulic design
- Hydraulic engineering
- Hydraulic properties
- Infrastructure
- Models (by type)
- Physical models
- Pipeline design
- Pipeline systems
- Pipelines
- River engineering
- Rivers and streams
- Soil dynamics
- Soil mechanics
- Soil-pipe interaction
- Submerging
- Water and water resources
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