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Updated on: 11th Oct 2021
BPM113 Construction Technology Assignment Sample SUSS Singapore

BPM113 Construction Technology Assignment Sample SUSS Singapore

BPM113 Construction Technology class provides students with an insight into building components and construction methods. Topics include structural systems, architectural components and finishes, the sequence of how buildings are put together or built up one step at a time in order to complete their function as well as why this has been done that way before.

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Students learn about durability through assessing types of finishing materials for exterior façade such as wood siding versus brick veneer which varies on price; they also understand vertical members (such as columns) can be more expensive than horizontal ones because these structures must hold weight when erected vertically but not necessarily horizontally where only gravity would have effect if it was let go completely.

Read this: BPM405 Advanced Construction Technology

TOA, TMA, GBA Assignment sample of Construction Technology module SUSS Singapore

At the end of this course, Singaporean students will be able to learn Construction Technology module with the help of the following learning outcomes:

1. State the purpose, function and performance expected of buildings

“A building serves many purposes, including protecting the occupants from bad weather and providing shelter. The principal functions of a building are typically on the interior where people work, live, consume goods or provide services. A range of views exist regarding vernacular architecture and what constitutes a “good” architectural design; however most one-story buildings will include space for an entrance hall to create a sense of arrival.”

“Constructed with sound materials this would traditionally comprise masonry such as brick or stone blocks bonded with mortar likely reinforced with some form of mesh in steel or perhaps even glass.”

2. Describe the structural behaviors of different structural elements of buildings

There are many types of structural elements in buildings that make them stable, from columns to beams to wall structures and the foundation.

The most basic building component is a column; it supports weight by transferring it down to an object’s base. Columns are usually made with wood or steel bars, and attached to floors below. When these columns have short rises as they run up the building from the floor level, they’re called pilasters or tapering columns because their profile changes along its height as its length changes out horizontally.

They often function as a decorative element at storytelling windows or doors below on any surface of a building. The more common structural column resembles scaffolding beams you might see used in construction projects large square beams used for the skeleton. On a building, they rise vertically to meet the beams and floor structure above.

Read this: BPM203 Construction Project Management

3. Demonstrate understanding of the general functional requirements and the different types of main building components such as building foundations, floors, walls, roofs, windows, doors, stairs, ramps and surface finishes

Building foundations can be made of concrete. The floor should be level and strong enough to withstand the weight of the building and its contents. Walls need to have studs that will hold dry wall panels in place, or else they may fall down. Roofs protect buildings from weather and sunlight. Windows allow light into a building where you need it, doors provide access inside a building when entrance is needed and stairs make it easier for people (and other living things) to enter high places like tall buildings where ramps would not work as well.

Housing starts with planning ahead: deciding what kind of materials are needed for construction, how big the house needs to be, how many rooms there should be these are all important steps in designing your home.

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4. Identify and describe the different materials used and construction approaches used for the different types of building components

Building Components:

Structural components are typically built with materials that can efficiently span distances and resist forces. Materials such as steel, concrete, or wood can be used for this purpose. Exterior building cladding is primarily composed of laminates and blocks which offer excellent insulation qualities, low permeability to water vapor, resistance to insect attack, immunity from rot or decay due to weathering exposure (depending on the type), ease of installation (e.g., as veneer) and often a pleasing appearance in terms of coloration and texture effects with varying densities.

For interior finishes different types include timber wall paneling, plasterboard paneling made from renewable resources like paper by some manufacturers, vinyl flooring, tiling and carpet.

5. Discuss the environmental impact of buildings and their construction processes and how they can potentially be mitigated

Building a building, and its construction processes, has environmental impacts such as deforestation due to cutting down trees for roads, the paints and solvents used in the interior decorating process of the buildings that cause water pollution, energy consumption for heating and air conditioning.

Any new building needs to address these issues so that it doesn’t do more damage than good. Consider partnering with an established organization like Embassy’s Partnership on Energy Efficiency which awards grants to charitable organizations working to provide sustainable access to energy solutions around the world?

In addition it’s important that any new architecture is site specific. It should be created in collaboration with the project architect like Ron Arad Architecture.

Read also this: Construction industry challenges in Singapore

6. Explain how the material selection and construction of different building elements and surface finishes influence maintenance and operations of the buildings

The material selection and construction of different building elements, such as stairwells (see Fig 2), roofs, exterior walls, baseboards, countertops, cabinets, flooring products and more can all impact indoor air quality. Carpets absorb materials like dust and mold particles and can release foul odor when they’re vacuumed. Vinyl flooring is less porous than hardwood because the vinyl sheeting doesn’t need to bend for installation; it won’t swell or delaminate.

Toilet seats are a maintenance nightmare; they often need to be replaced every three months because toilet paper residue harbors bacteria that grow over time. After a while it smells like feces in your bathroom. Cabinetry materials depend on application area. In the kitchen, wall cabinets made from plywood are moisture resistant and can be wiped clean with soap.

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7. Discuss the potential performance and maintenance issues related to the design and construction of different building components

As for the design of different building components, the performance and maintenance issues can be a considerable problem. One issue is the construction of damp walls, which both slows down construction and makes it more expensive. The prospect of dealing with mold due to poor ventilation systems and humidity problems is another concern; this happens because fabricators do not always consider moisture levels in their work.

Lastly, we cannot forget about unsanitary conditions that could result from improper plumbing or refrigerator operation all of these factors have consequences for builders investing in new buildings, such as structural defects that lead to disaster situations (like the suffocating stench) or food spoilage.

Read this : FMT313 Building Information Modeling for facilities

8. Demonstrate understanding of the local regulatory approval and risk management processes to be adopted for the construction of buildings

The local regulatory approvals mean that the government of the municipality where we are building has approved this project.

Risk management processes to be adopted for the construction of buildings is a system that anticipates and mitigates potential risks inherent in projects, which allows designers to create more innovative, less risky designs. Removing uncertainty from design often leads to less expensive buildings to construct–the fundamental goal of risk management.

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