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 | I. Shear and Bending |  | 
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 | 1 |  |  |  | Lecture 1: Shear and Bending (PDF) |  |  |  | - Hull Girder Response Analysis: Ship Structural Design, Hughes, Ch. 3 -- Sections 3.1-3.3.
 - Longitudinal Strength - Excerpt from Part 3: Hull Construction and Equipment. In Rules for Building and Classing Steel Vessels 2003, ABS.
 
  |  |  |  | Problem Set 1: Shear and Bending |  | 
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 | 2 |  |  |  | Lecture 2: Balance (PDF) |  |  |  |  |  |  |  | Problem Set 2: Shear and Bending, Balancing |  | 
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 | II. Characteristics of Thin Walled Sections |  | 
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 | 3 |  |  |  | Lecture 3: Bending Without Twist (PDF) |  |  |  |  |  |  |  | Problem Set 3: Shear Stress, Center of Twist |  | 
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 | 4 |  |  |  | Lecture 4: Pure Twist Open Section (PDF) |  |  |  |  |  |  |  | Problem Set 4: Combined Torsion and Multi-Cell St. Venant's Torsion |  | 
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 | 5 |  |  |  | Lecture 5: Pure Twist Closed Section (PDF) |  |  |  |  |  |  |  |  |  | 
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 | 6 |  |  |  | Lecture 6: Pure and Warping Torsion (PDF) |  |  |  |  |  |  |  |  |  | 
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 | 7 |  |  |  | - Lecture 7: Calculation Of Section Properties - Open (PDF)
 - Lecture 7a: Calculation of Section Properties Closed (PDF)
 
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 | 8 |  |  |  | - Lecture 8: Shear Center - Closed Section (PDF)
 - Lecture 8a: Shear Stress Multicell Section (PDF)
 - Lecture 8b: St. Venant Torsion Multi-cell (PDF)
 
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 | 9 |  |  |  | - Lecture 9a: Composite Sections (PDF)
 - Lecture 9b: Shear Lag (PDF)
 - Lecture 9c: Yield Criteria (PDF)
 
  |  |  |  | - Ch. 3 and 6 of Hughes.
 - Refererence: Ch. 11 of Shames.
 
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 | III. Introduction to Maestro |  |  |  | Problem Set 5: Maestro Tutorial and building model (preliminary) |  | 
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 | IV. Design Approach and Failure Analysis |  | 
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 | 10 |  |  |  | Design Philosophy and Approach (PDF) |  |  |  | Structural Design Introduction: Ch. 1 and 2 of Hughes. |  |  |  |  |  | 
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 | 11 |  |  |  | Loads and Design Approach continued (PDF) |  |  |  |  |  |  |  |  |  | 
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 | V. Plate Bending |  | 
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 | 12 |  |  |  | Plate Bending Introduction (PDF) |  |  |  |  |  |  |  |  |  | 
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 | 13 |  |  |  | Plate Bending (PDF) |  |  |  |  |  |  |  |  |  | 
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 | 14 |  |  |  | Plate Bending Solution (PDF) |  |  |  |  |  |  |  |  |  | 
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 | VI. Panel, Girder, Frame Bending Failure Analysis |  | 
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 | 15 |  |  |  | Panel, Girder and Frame Limit States (PDF) |  |  |  | Plastic Hinge and Plastic Section Analysis: Section 16.1 of text. |  |  |  | Problem Set 6: Panel and Girder PSF Calculations |  | 
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 | VII. Buckling and Ultimate Strength of Columns |  | 
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 | 16 |  |  |  | Buckling (PDF) |  |  |  | Buckling and Ultimate Strength of Columns: Ch. 13 of text. |  |  |  | - Problem Set 7: Design Notes Part II
 - Problem Set 8: Design Notes Part III
 
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 | VIII. Buckling and Ultimate Strength of Plates |  | 
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 | 17 |  |  |  | Plate Buckling (PDF) |  |  |  | Buckling and Ultimate Strength of Plates: Ch. 12 of text. |  |  |  |  |  | 
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 | IX. Buckling of Stiffened Panels |  | 
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 | 18 |  |  |  | Buckling of Stiffened Panels (PDF) |  |  |  | Longitudinally Stiffened Panels: Section 13.1 of text. Includes local buckling of stiffener (tripping). |  |  |  |  |  | 
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 | X. Ultimate Strength of Stiffened Panels |  | 
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 | 19 |  |  |  | Ultimate Strength of Stiffened Panels (PDF) |  |  |  | Ultimate Strength of Stiffened Panels: Ch. 14 of text. |  |  |  |  |  | 
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 | XI. Matrix, Grillage and FEM Analysis |  | 
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 | 20 |  |  |  | Intro to Matrix Analysis (PDF) |  |  |  | - Example of Grillage Analysis.
 - Constant Stress/Strain Triangle Element: Hughes 7.3.
 
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 | 21 |  |  |  | Matrix Analysis continued (PDF) |  |  |  |  |  |  |  |  |  | 
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 | 22 |  |  |  | Pin-jointed Beam Example (PDF) |  |  |  |  |  |  |  |  |  | 
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 | 23 |  |  |  | Flexure Only Beam - General Method (PDF) |  |  |  |  |  |  |  |  |  | 
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 | 24 |  |  |  | Grillage Introduction Degrees of Freedom (PDF) |  |  |  |  |  |  |  |  |  | 
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 | Final Project |  |  |  | Barge Optimization |  | 
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