BSR453 Building Design UITM Assignment Sample Malaysia
BSR453 Building Design course is the perfect way to gain a deeper understanding of the building design process. This course focuses on the underlying principles and theories of designing for architecture and urban planning purposes. With its creative problem-solving activities and detailed design projects, students can gain insight into excellent design concepts and processes.
They will also have opportunities to learn from experienced professionals in the field, as well as benefit from creative collaborations with their peers. Ultimately, this course provides valuable knowledge for anyone interested in exploring and developing both the physical environment and public space.
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This section provides a description of the assignment tasks:
Assignment Task 1: Identify basic design principles and elements for architectural buildings.
Basic design principles and elements for architectural buildings include:
- Functionality: Buildings must serve their intended purpose, whether it’s a home, office, or other type of space.
- Aesthetics: Buildings should have an appealing appearance that reflects the intended purpose and fits in with the surrounding environment.
- Sustainability: Buildings should be designed to minimize their environmental impact and conserve resources.
- Safety: Buildings must be designed with safety in mind, including structural stability, fire safety, and accessibility for all people.
- Flexibility: Buildings should be designed with flexibility in mind to accommodate changes in use or occupancy over time.
- Proportion and scale: Buildings should be designed with proper proportions and scale to create a sense of balance and harmony.
- Materials: Buildings should be constructed with high-quality materials that are durable, sustainable, and appropriate for the intended use.
- Technology: Buildings should incorporate the latest technology to enhance functionality, energy efficiency, and occupant comfort.
- Context: Buildings should be designed to fit within the surrounding context, whether it’s a historic district or a modern urban environment.
- Accessibility: Buildings must be designed to be accessible to all people, including those with disabilities, to ensure equal access to the built environment.
Assignment Task 2: Sketch elements and components of buildings.
Architects and designers understand the value of successful sketches in creating the blueprint for a building. Whether it’s a rough sketch of a floorplan or detailed drawings of specific components, each element plays an imperative role in building design. The sketching process is crucial in highlighting the components of a building that are crucial to its construction, whether it is the materials, proportions, features or structure. Sketching is the foundation of every great building design, and it’s where the intricate details and components take shape to create a complete vision of the final product.
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Assignment Task 3: Present progress of report/drawings of low rise domestic building.
As we near the end of this project, I am pleased to report that the progress of our report and drawings for the low rise domestic building is on track and moving forward seamlessly. Our team has been diligently working to ensure that every detail is accounted for and that the design is not only functional but aesthetically pleasing as well. We have implemented innovative strategies and technologies to create a space that is not only sustainable but meets the needs of its occupants. From the foundation to the finishing touches, our team is committed to delivering nothing but the best. We are proud of the progress we have made so far and look forward to presenting the final product to the client.
Assignment Task 4: Demonstrate site analysis progress for small scale building.
Site analysis is an important part of the architectural design process as it helps to understand the context and potential of the site. Here’s an overview of how site analysis can be conducted for a small-scale building:
- Site Visit: The first step is to visit the site and document important features such as the topography, vegetation, orientation, and views. Observe the traffic patterns, access points, and neighboring buildings.
- Climate Analysis: Climate analysis involves studying the weather patterns in the region. This includes rainfall, temperature, wind direction, and solar orientation. This information can help to determine the building’s orientation and layout to take advantage of natural light and ventilation.
- Zoning and Regulations: Research local zoning regulations, building codes, and land use regulations to ensure compliance with legal requirements. These regulations can impact the building’s design, placement, and size.
- Contextual Analysis: Study the surrounding context to understand the neighborhood’s character, building types, and the relationship of the site with the wider environment. Analyze the impact of the building on the neighborhood and vice versa.
- Infrastructure Analysis: Evaluate the availability of infrastructure such as water supply, drainage systems, and electricity. This information can help to determine the feasibility of the project and its impact on the existing infrastructure.
- Site Constraints: Identify any physical site constraints such as site topography, soil type, vegetation, or other physical obstacles that could affect the building’s design.
- User Analysis: Consider the building’s users, their needs, and preferences, and how the design can accommodate them. This includes accessibility, safety, and comfort.
- Sustainability Analysis: Analyze the building’s environmental impact, including the use of energy, water, and materials. Identify opportunities for sustainable design solutions to minimize the building’s carbon footprint.
By conducting a thorough site analysis, architects can better understand the site’s potential and develop a design that is responsive to the site’s specific characteristics and context.
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