University | Open Polytechnic(OP) |
Subject | CONS6001 Construction 2 |
Learning outcomes
1. Identify geotechnical factors, substructures, and structural systems for medium and large buildings.
4. Create technical sketches for medium and large building projects.
Case Study Investigation
This body of work will be a representation of all your study and research of medium and largem buildings. The main body of work will include research, sketching and short answer questions. All questions are related to the fictional ‘Lichfield Street Fire Station’. Drawings of fire station building have been provided.
Important: All details can be hand drawn and/or ruled, or CAD produced. Use appropriate scale and/or proportion. Clearly annotate all parts of your detail. Details must have a title and be presented in order as set out in the tasks. All details are to be scanned and ‘inserted’ into your document. Do not take photos of your details.
All referencing is to be APA 7th Edition.
This assessment leads to Assessments 2.
Overview
This building block (named ‘Lichfield Street Fire Station’) is in Concept Design Stage. A building consent for the structure has been issued to the client. You have been asked for advice on the design feasibility to fit out and complete the building. The building site is located on the corner of Lichfield / Madras Streets, Christchurch.
The drawings contained in Appendix 2: Fire Station Drawings include:
- A1 Site Plan
- A2 Basement Floor plan
- A3 Ground Floor plan
- A4 First Floor plan
- A5 Second Floor plan
- A6 Roof plan
- A7 Section A-A (Structure Only)
- A8 Section B-B (Structure Only)
- A9 Section C_C (Structure Only)
- A10 Section D-D (Structure Only)
- A11 Elevation North
- A12 Elevation East
- A13 Elevation South
- A14 Elevations West
- A15 3D and Detail.
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Construction
The structure is essentially column (with a shear wall on the east of structure) and concrete floor construction (floor construction undecided). All total floor heights are 3000mm. (see Sections for clarification).
It has a long-span structure (Portal Frame) attached to the West face of the Office Block.
All joinery and curtain wall system types and style are currently undecided on the South face of the building. (Refer to all floor plans for location).
All internal wall locations are as outlined on Floor plans. Construction and finishes / fittings are all undecided.
- All details can be hand drawn and ruled, or CAD produced. Use appropriate scale. Clearly mark all details with titles and present in order as set out in the tasks.
Task 1: Ground Conditions: Sub-structure Ground Conditions
Your task is to investigate the sub-structure ground conditions pertaining to the fire station.
- Start by referring to the section drawings GXS-CBD-13, provide an overview of how the geology in this section was formed in relation to the geological history of New Zealand.
- Explain in a paragraph why a soil investigation report is important for [refer to this case study].
- Identify five key factors that could be determined from a soil investigation report that would assist in the tendering and construction of the project.
- Produce a borehole log of the sub-soil strata in the proposed location of the fire station using the cross section drawing GXS-CBD-13. This must be to scale and include graphic illustrations of the different subsoils.
- Describe what you would expect the approximate bearing capacities of each sub-soil type are using the borehole log.
- Describe and illustrate the difference between permeability and porosity. Give
examples of the types of soils for each. Reference could be made to the subsoils found borehole in question 1 – list item 4. Please provide examples.
(Task 1: Word count guideline: 300 words)
Task 1: Total (12 marks)
Task 2: Foundations and Deep Foundations
Part 1: Foundation methods.
Based on the drawings provided of the proposed Fire Station Project, your task is to provide foundation solutions in the specified locations noted below.
You must include the following, as per the specified location.
- A plan sketch of your proposed solution with sections where applicable. Include annotations.
- Reinforcements used in commercial foundations: type, size, and location.
- Describe the selected foundation type in relation to the type of load transferred from the structure.
To be provided for the following locations:
A. Portal frame foundation:
In addition to providing the information detailed above, for a portal type
foundation calculate the size of a foundation pad under specified loadings and
provide feedback on the outcome. See attached loading conditions.
Refer to Appendix 1 Assessment 1 -Task 2. 1A -Pad Foundation
B. Basement foundation:
In addition to providing the information detailed above, explain the importance
of evenly distributing loads under a basement foundation.
Discuss the potential risks of an unsuitable load bearing capacity under the
basement foundation.
C. Office and apartment building with no basement:
In this scenario, the client has decided to omit the basement. They are expensive and timely to construct. This will be covered in more detail in Task 3. In this solution the foundation will be a combination of foundation types, dependent on the loads from the structure. In addition to providing the foundation solution detailed above describe the types of loads being transferred from the structure to the foundation.
Part 2: Deep foundation methods
Your task is to evaluate the various construction methods used for deep foundation systems pertaining to the fire station.
A. Discuss the specific conditions that require the use of a deep foundation system. With the borehole log from Task 1 as reference, suggest a depth for a viable deep foundation solution and provide justification.
B. Industry professionals classify deep foundation systems into two types: replacement and displacement. Explain how each system transfers load to the subsoil or subsurface rock formation. Include sketches and/or illustrations.
C. Select a replacement or displacement piling system that meets the project’s requirements and that the project’s office and apartment section approves.
- Assess the project’s structure and ground conditions.
- Outline the pros and cons.
- Explain the installation process (use sketches/illustrations).
- How does your piling method connect to the foundation system to provide
lateral restraint?
(Task 2: Word count guideline: 300 words)
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Task 2: Total (21 marks)
Task 3: Basement Construction
- Your task when considering the basement construction of the fire station project is to provide sketches or illustrations where appropriate to describe:
- Evaluate the pros and cons of incorporating a basement in a building,
specifically within an urban context. - Describe a method of supporting excavation sites during construction using current H&S regulations. Include the approximate depth of supported soil during excavation.
- Describe a suitable method of controlling groundwater and surface water
during construction. When is the appropriate time to remove the dewatering system?
- Evaluate the pros and cons of incorporating a basement in a building,
- Provide a brief description of a typical in situ formwork system used in basement wall construction.
- Include annotated sketches and or illustrations to support your answer.
Includes, but is not limited to:- Formwork material.
- The method of tying the forms.
- Supporting formwork and plumbing forms.
- Describe how to release the forms from the concrete.
- Provide a description with annotated sketches of the following:
- A method of preventing water penetration into a completed
structure. - Provide details on how to prevent water penetration at the
formed construction joints.
- A method of preventing water penetration into a completed
- Include annotated sketches and or illustrations to support your answer.
(Task 3: Word count guideline: 500 words)
Task 3: Total (20 marks)
Task 4: Stability of Structures: Portal Frames
- Your task is to provide a section drawing of the Fire Station Building’s portal frame structure. (Refer to Section B, p. 8).
You can enlarge sections/details. Create a freehand sketch of this section, including annotations and maintaining proportions. Information to include:- Identify the key structural or construction components.
- Provide a brief description of each critical component and its primary
purpose. - Please explain the connection between structural elements.
(Refer to details marked 1 on p. 8).
- To reinforce the west elevation facade, cross bracing must be installed between the 250UC stanchion legs. (Refer to the West Elevation, p. 14 of the drawings). Your task is to design a ‘concentric’ bracing system for this elevation. Create an elevation sketch showing your proposed bracing. Please include a brief explanation of why you selected this configuration.
(Task 4: Word count guideline: 200 words)
Task 4: Total (12 marks)
Task 5: Stability of Structures: Office Structure
- Your task involves presenting a concise explanation and differentiation of moment frame, braced frame, and shear wall construction.
Based on your research on the pros and cons of each construction system in Topic 4, determine the most appropriate system for the Fire Station Office Building and explain why. - To counteract horizontal forces, precast panels are implemented in the office building’s east and west elevations. Explain why eccentrically braced frames are ideal for the Office building’s north and south elevations.
- Calculate how many braced bays each elevation requires.
- Provide a solution for limiting the large forces exerted on the structural
frame.
- You are required to take a photograph of a building, either under construction or completed within the last five years, that prominently features the bracing element. Provide a description of the bracing type/system. Provide a detailed sketch or illustration that depicts and labels how the system is connected to the structure (beam or column).
(Task 5: Word count guideline: 200 words)
Task 5: Total (10 marks)
Task 6: Superstructure: Structural Pre-cast Concrete
The precast panels on the north elevation of the portal frame building are cast onsite. All remaining precast panels are manufactured off-site.
- Please answer the following questions regarding these precast panels.
- Explain the advantages and disadvantages of manufacturing precast panels on and off site?
- Identify two details that are appropriate for connecting the precast (on or offsite manufactured) to the foundation.
- In comparison to other building materials, what are the advantages of precast panels?
- Provide a detailed description of how the precast panels are made on site. Include where the panels would be made and the lifting device for placing them. To support your answer, you can use generic methods and illustrations.
(Task 6: Word count guideline: 200 words)
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Task 6: Total (10 marks)
Task 7: Superstructure: Superstructure Construction Methods
- This task relates to the first floor, Office 1 floor plate. Refer to the attached drawings for the location. The superstructure is constructed using structural steel. Please provide the following information:
- Provide the shear connection detail of the horizontal main steel member to
the precast shear wall.
(Shown as detail 2 on the drawings). - On the drawing, provide the moment connection detail of the horizontal
main steel member to the vertical steel member.
(Shown s detail 2 on the drawings). - Provide the splice detail for vertical continuity of a structural steel column.
- Describe with sketches and or illustrations two methods for constructing the first floor. The precise location is indicated by the shaded area on Page 4. Please include section and plan drawings that show:
- Span and spacing of both flooring systems.
- Main and secondary steel structures support both systems.
- Drawings showing the structural steelwork supporting the flooring system.
- Concrete topping details, including reinforcement.
- Connections to structural steel and precast units. Include edge details where applicable.
Using appropriate manufacturer literature will support your answer to d). All drawings should be annotated and dimensioned where relevant.
- Provide the shear connection detail of the horizontal main steel member to
- Describe how damage mitigation methods could be applied to this structure (after a seismic event), using sketches and or illustrations.
Provide a description of alternative structural solutions for structural frames other than steel.
If applicable, provide research information. Manufacturer’s literature must be cited for any construction method. Written text must be in your own words.
(Task 7: Word count guideline: 300 words)
Task 7: Total (15 marks)
(Assessment 1: Word count guideline: 2000 words)
Assessment 1: Total (100 marks)
Marking schedule
Task 1: Sub-structure Ground Conditions
10 – 12 marks | 8 – 9 marks | 6 – 7 marks | 5 marks | 1 – 4 marks |
---|---|---|---|---|
Part 1 – Substructure Overview of geology in the section. Description of the significance of a soil investigation report and identification of key factors that could be determined from a soil investigation report to assist the tendering and construction of the fire station. |
||||
In-depth understanding demonstrating of the geological formation of NZ using appropriate terminology throughout. Thorough understanding demonstrated of the purpose and function of a soil investigation report. |
Mostly in-depth understanding of the geological formation of NZ using mostly appropriate terminology. Mostly thorough understanding demonstrated of the purpose and function of a soil investigation report. |
Sufficient understanding of the geological formation of NZ using some appropriate terminology. Sufficient understanding of the purpose and function of a soil investigation report. |
Some understanding of the geological formation of NZ using just a limited appropriate terminology. Some understanding of the purpose and function of a soil investigation report. |
Little or no understanding of the geological formation of NZ using limited or no appropriate terminologies. Little or no understanding of the purpose and function of a soil investigation report. |
Part 1 – Borehole log Produce a borehole log of the sub-soil strata to scale with graphic illustrations of different subsoils. Identify approximate bearing capacities. Illustration of the difference between permeability and porosity using examples of the soils regarding subsoils in the borehole log. |
||||
An entirely accurate interpretation of the assessment drawings. Correct use of industry standard symbols and annotation. Fully accurate and to scale drawings produced. In-depth understanding demonstrated of bearing capacity, permeability, and porosity with relevant research material applied and correctly referenced. |
A mostly accurate interpretation of the assessment drawings. Mostly correct use of industry standard symbols and annotation. Drawings are mostly accurate and to scale. Mostly in-depth understanding demonstrated of bearing capacity, permeability, and porosity with some relevant research material applied and correctly referenced. |
Sufficient interpretation of the assessment drawings. Some correct use of industry standard symbols and annotation. Drawings are accurate and to scale in places. Sufficient understanding demonstrated of bearing capacity, permeability, and porosity with limited relevant research material apply and limited referencing. |
Some interpretation of the assessment drawings. Little correct use of industry standard symbols and annotation. Some of the drawings are accurate and to scale. Some understanding demonstrated of bearing capacity, permeability, and porosity with a few relevant research materials applied with no referencing. |
Inaccurate interpretation of the assessment drawings. No use of correct industry standard symbols and annotation. The drawings are inaccurate and not to scale. Little or no understanding demonstrated of bearing capacity, permeability, and porosity with little or no relevant research material applied with no referencing. |
Task 2: Foundations and Deep Foundations
17 – 21 marks | 14 – 16 marks | 11 – 13 marks | 8 – 10 marks | 1 – 7 marks |
---|---|---|---|---|
Part 1 – Foundation methods A) Portal frame foundation. To clarify ‘specified loadings’ Identify and describe three key factors required. Feedback: Assess pad size and specify safety impact on intended load. B) Basement foundation. Explain the significance of evenly distributing loads under base/foundation. Identifies six key potential risks that lead to structural failures if load bearing capacity is unsuitable. C) Office/Apt no basement. Provide combined foundation solution. Identify type of load transferred from structure to foundation. |
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Sketches are comprehensive in all aspects (e.g., to scale, all proportional, fully annotated, critical dimensions provided, accurately labelled, accurate, correct terminology used). Thorough in all aspects demonstrating a clear understanding of a variety of construction methods to suit various construction scenarios. Fully accurate calculations with appropriate comments included. Demonstrate an in-depth ability to analyse and suggest several alternative construction solutions. |
Sketches are comprehensive in most aspects (e.g., to scale, all p |
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