SCDM71-316 - Structures and Soil Mechanics – Case Study - Engineering Assignment Help

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Assignment Task:

Task:

Project details

This project requires you to interpret and evaluate a structure in the built-environment. Engineers make decisions on materials, member shape and the connections for the individual members that make up a structure based on their understanding of how each of them performs under loading and over time. This project requires you to be that engineer and consider how these factors influence material choice and building shape.

You (an engineer) have been approached by a client who wished to build a tall timber building at Robina, Gold Coast. The client recently visited Norway where he was inspired the innovative timber building named, “Treet” and now wishes for a very similar building to be built in Robina. In preparation for the future development you will need to assess the “Treet - a 14-Storey Timber Residential Building” from an engineering point of view. The following descriptive tasks are to be completed as you assess the structural performance of the building and prepare some details for the design and construction of the building at Robina, Gold Coast, Australia.

Getting Started:
Some of the resources for the building have been provided on iLearn (see Assessment tab). This is not an exhaustive list and therefore you are encouraged to seek additional resources. The reference lists in the provided resources would be a good start point for additional research.

Descriptive tasks

Respond to the following tasks in your report:
Introduction
1. Provide a summary of the structure detailing the design philosophy of the structure (consider aesthetics, function and design statements) (~150 words) 4 marks
Loading
Dead loads

2. Describe the elements contributing to the dead load of the structure. Annotate on pictures of the structure all elements that contribute to the structural dead load. For each element, also indicate the material used. Be sure to include items that are also considered super-imposed dead loads.


You may need to use at least three different pictures to show all internal and external elements. 4 marks
 

Dynamic loads
3. Create a live loading plan for a typical floor plan of the building. You must use the values form the AS1170.1. The plan should consist of a floor plan with different areas highlighted based on its usage (e.g. storage, kitchen etc.) and a legend indicating the associated design pressure (AS1170.1) based on the area’s use. There are some floors that also have a different usage (e.g. roof), provide a list of these uses and the associate design load. The floor plan can be found in “Some structural design used of the 14-storey timber framed building “Treet” in Norway by Malo K et.al. 2016”. 4 marks
4. Determine the Vr for the structure based on AS1170.2. You may assume the structure was built on Bond University Campus, Robina. Ensure that you detail all assumptions/factors that you have used. (Note - You only need to calculate the VR which is the regional wind speed. So, do not consider shielding, terrain, topography etc.) 4 marks
 

Materials Durability
5. The structure is built primarily from concrete, timber and steel. Identify and describe potential fire and durability issues common to the steel and concrete and describe how the issue was/should have been managed. (Hint: you could create a list of issues for each material and then detail the appropriate management strategy for each). High quality responses to this task will require you to provide evidence of the solutions integrated in the Treet building (from the literature). 8 marks

6. The design of a building made primary from timber often requires extensive management strategies around the control of fire and durability. What strategies (give at least 2 for each) were employed by the designers of this building for:
i. fire
ii. durability
In addition, for each issue identified above, describe other solutions available for the management/design of the specified issues that was not used in Treet. 7 marks

Structural systems and Performance
 

Load paths

7. Describe the transition of the load paths through structural elements in the building and draw the load path for a person standing on the 12th floor. The floor plan can be found in “Some structural design used of the 14-storey timber framed building “Treet” in Norway by Malo K et.al. 2016”. You need to provide both plan and elevation view. 4 marks
8. Describe in words the load path for the wind and then draw and example of a suitable load path for one (1) assumed wind direction. (hint: You will first need to identify the stability systems for the structure and also consider how the wind is transferred from the façade to the structural systems). 4 marks
 

Vertical System
9. Describe and if required sketch or annotate on drawings, the vertical structural system. i.e. how is the building transferring the dead and live loads to the foundations. Be sure to identify the key design elements. 5 marks

 

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