BSS452 Building Construction And Materials II UITM Assignment Sample Malaysia

BSS452 Building Construction and Materials II is a course that covers advanced topics in building materials, construction techniques, and systems. The course is typically offered at the undergraduate level in architecture or civil engineering programs.

The course builds upon the knowledge gained in Building Construction and Materials I, and provides a deeper understanding of the properties, uses, and limitations of various building materials, including concrete, steel, wood, and masonry. It also covers advanced construction techniques, such as high-performance concrete, precast concrete, and steel-frame construction.

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Assignment Task 1: Acquire knowledge on the principles and procedures of building construction and material technology as applied to medium and simple high-rise building.

Building construction and material technology are key aspects of creating medium and simple high-rise buildings. The followings are the principles and procedures that are commonly applied to achieve this:

  1. Design: Before construction begins, the building design must be created. This includes the architectural and structural designs. The design should take into account the intended use of the building, local building codes and regulations, environmental factors, and the intended lifespan of the building.
  2. Foundation: The foundation is the base on which the entire building rests. The foundation should be designed and constructed to support the weight of the building and withstand external forces such as wind and earthquakes. The type of foundation used will depend on the soil type and the weight of the building.
  3. Framing: The frame of the building provides structural support for the building. The type of framing used will depend on the building design and materials being used. Common types of framing include steel, concrete, and wood.
  4. Walls: Walls provide insulation, soundproofing, and structural support for the building. The type of wall used will depend on the building design and materials being used. Common types of walls include brick, concrete, and wood.
  5. Roofing: The roof provides protection from the elements and insulation for the building. The type of roofing used will depend on the building design and materials being used. Common types of roofing include shingles, tiles, and metal.
  6. Plumbing and Electrical: Plumbing and electrical systems must be installed to provide water, heating, and electricity to the building. The systems must be designed to meet local building codes and regulations.
  7. Finishes: The finishes of the building include interior and exterior materials such as paint, flooring, and siding. The type of finish used will depend on the building design and materials being used.
  8. Sustainability: Sustainable building practices can be integrated into the construction process to reduce the environmental impact of the building. This can include the use of energy-efficient materials, renewable energy sources, and water conservation measures.

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Assignment Task 2: Identify the needs, reason and technologies involved in shoring and underpinning works and the requirements of the Building by-laws.

Shoring and underpinning are construction techniques used to support existing buildings or structures during renovation, construction, or excavation works. The primary purpose of shoring and underpinning is to prevent any structural damage, collapse, or instability of the building.

The following are the needs, reasons, and technologies involved in shoring and underpinning works:

Needs and Reasons:

  1. Structural support during excavation and construction works.
  2. Repairing or reinforcing existing foundations and footings.
  3. Protecting adjacent buildings and structures from damage.
  4. Maintaining the stability of the building during construction.
  5. Ensuring the safety of the workers and the public.

Technologies Involved:

  1. Hydraulic jacks and steel beams are commonly used to support the building during shoring and underpinning works.
  2. Soil nailing or anchoring may be used to reinforce the soil around the foundation.
  3. Micropiles, helical piles, and underpinning piers are used to stabilize the foundation.
  4. The use of geotextile fabrics, rock bolts, and shotcrete may also be employed.

Requirements of the Building by-laws:

  1. Prior to undertaking any shoring or underpinning work, the building owner must obtain a permit from the local authorities.
  2. The building owner must ensure that the work complies with the building by-laws and regulations.
  3. The building owner must ensure that the work does not cause any damage to adjacent buildings and structures.
  4. The building owner must ensure that the work does not pose any risk to the public and the workers.

Assignment Task 3: Identify and interpret the concept of the medium-to-high-rise buildings and the choice of appropriate structures.

Medium-to-high-rise buildings refer to buildings that are typically between 5 and 20 stories tall, although the exact height range may vary depending on local building codes and regulations. These buildings often have specific structural requirements and considerations due to their height, including the need to withstand wind and seismic forces, support vertical loads, and provide adequate fire safety measures.

Choosing an appropriate structure for a medium-to-high-rise building requires careful consideration of a range of factors, including the building’s intended use, local building codes and regulations, and site-specific conditions. Some common structural options for medium-to-high-rise buildings include:

  1. Steel-frame structures: Steel is a popular choice for medium-to-high-rise buildings due to its strength, durability, and flexibility. Steel-frame structures can also be prefabricated offsite, which can help speed up construction times and reduce costs.
  2. Reinforced concrete structures: Concrete is another popular choice for medium-to-high-rise buildings. Reinforced concrete structures can provide excellent durability and fire resistance, but they may be more costly than steel-frame structures.
  3. Composite structures: Composite structures combine the strengths of steel and concrete to create a hybrid building system that can provide a high degree of strength, durability, and fire resistance.

In addition to these structural options, other considerations for medium-to-high-rise buildings may include the use of advanced materials, such as carbon fiber or high-performance concrete, as well as the use of advanced construction techniques, such as modular construction or building information modeling (BIM).

Ultimately, the choice of an appropriate structure for a medium-to-high-rise building will depend on a range of factors, including the building’s intended use, site-specific conditions, and local building codes and regulations. A qualified structural engineer should be consulted to help ensure that the chosen structure is appropriate and meets all necessary safety requirements.

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