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DESIGN OF SHIP ENCLOSURE

DESIGN OF SHIP ENCLOSURE. GROUP 2. Design 1. The Queen’s Crown. Design 1. This design is inspired by the shape of a crown. It has an arc shape which gives it a unique design. The adjacent building design is an inspiration from a lighthouse. This makes it outstanding. Advantages:

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DESIGN OF SHIP ENCLOSURE

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  1. DESIGN OF SHIP ENCLOSURE GROUP 2

  2. Design 1 The Queen’s Crown

  3. Design 1 • This design is inspired by the shape of a crown. • It has an arc shape which gives it a unique design. • The adjacent building design is an inspiration from a lighthouse. This makes it outstanding. Advantages: • The structure has a unique design. • The design wasn’t chosen because ; • Design of the trusses was critical due to the large clear span. • The building was too high, construction would be difficult. • The adjacent building is far from main structure and the span of the bridge from the adjacent building to the crow’s nest was too long. • High columns that are at a risk of buckling • Massive roof design Generally the construction of this structure would not only be difficult but also expensive.

  4. DESIGN 2 THE ECLIPSE

  5. Design 2 • This design concept is a visualization of the ‘Eclipse’. The curved semi-circular shape of the previous design is maintained . Unlike the previous design, this elliptical design saves more vertical space and this eases the process of construction as well as reduction in the cost. Reasons for choosing this design: • Simpler design which makes construction easier; this also reduces the cost of construction. • This structure can easily be dissembled and the materials recycled .

  6. Design Process 1. Input Design in AutoCAD 2. Use Euro-Code to calculate loading 3. Use IDS to calculate and analyse trusses 4. Using GSA for column analysis

  7. 3-D Design of Main Structure

  8. Designs for the primary member for main structure Structural Frame Roof truss Design Rectangular Column Design

  9. Design Concept for the truss and column support

  10. Roof truss Design Loading on truss and column sections of the structre

  11. Adjacent Structures Design 2 Design 1

  12. Crow’s Nest Design 1st Alternative Second Design

  13. Design of the platform

  14. ro Inspiration for platform

  15. Construction method

  16. Crow’s Nest construction method

  17. Bracing and Sway stability Lift shaft support Front view Side view

  18. Sustainability For the future

  19. Energy Consumption “Go-Green” • Both structures use solar energy. • The cladding gives way for natural lighting in both structures. • The E-Stack ventilation system minimal usage of AC • Rain harvesting system installed on the adjacent building • The adjacent building is a ‘smart building’ with the electro-chromic glass feature.

  20. Sustainability- Main structure • Roof top: • solar panel (KalzipAluPlusSolar) • Pilkington Activ™ self cleaning glass • Kalzip low u-value system (layer of metal sheeting) • Low-e value glass

  21. E-stack ventilation Light-sensored shading

  22. Adjacent building • Electro-chromic glass: • Advantages: • Privacy • Light control • UV protection • Temperature and energy control • Comfort & productivity TGE glass provides thermal control. Water harvesting system

  23. The End PLAN VIEW FRONT ELEVATION

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