Geotechnical Applications using Software (Arabic)
Original price was: 11,511.50 EGP.7.30 EGPCurrent price is: 7.30 EGP.
Description
Lecture 1: Site investigation – Lab tests – Field tests
Lecture 2: Site Investigation (Geotechnical report – soil parameters – BH cross section and Plan (drawings)
Lecture 3: Introduction – Constitutive models – Settlement assessment
Lecture 4: introduction – Settlement assessment using – SIMULATION OF LABORATORY TESTS Computational “new.”
Lecture 5: Settlement assessment
Lecture 6: Settlement assessment– stability analysis (Introduction)
Lecture 7: stability analysis
Lecture 8: stability analysis (real case) (2D – 3D)
Lecture 9: stability and settlement analysis (real case)
Lecture 10: seepage analysis (2D – 3D)- (3D: coupled flow model (rapid draw down and slow draw down)– Stability
Lecture 11: Pile design (Single pile (tension – lateral – compression)
Lecture 12: Pile group design (piles under footing – piles under embankment))
Lecture 13: side support system design (Introduction – 2d – 3D)
Lecture 14: side support system design (2d – 3D) – Soil nailing (2d) – add 3D “new example.”
Lecture 15: Monopile design (3D) – soil nailing stability (3D) – Shoring system continue
Lecture 16: (2D – 3D) – Dynamic (Introduction – 3D (machine footing – earthquake – dynamic loading on piles) – 2D (machine footing – earthquake)
Lecture 17: dynamic (2D earthquake) – seismic– Harbor simulation (2D and 3D) – Pile design – shoring
Lecture 18: Tunnel simulation (2d – 3D)
Lecture 19: Tunnel introduction in numerical modelling – tunnels with anchors (3D) – Tunnels
Lecture 20: Earthquake– settlement) – dewatering simulation (3D – 2D) simulation on software
Lecture 21: encased stone column simulation on 3D
Lecture 22: stone column design – stone column unit cell simulation (2D) – Introduction about dynamic damping – soil improvement
Lecture 23: 2D (settlement assessment -shoring system)
Lecture 24: 2D(embankment on soft clay with vertical drains – embankment on soft clay with stone columns – shoring system – tunnels)
Lecture 25: 2D (coupled flow model (rapid draw down and slow draw down) – embankment river






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