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How to Design and Complete Tighes Hill Assignment with 2D Drawings

August 21, 2024
Jayden Knowles
Jayden Knowles
🇺🇸 United States
2D Drafting
Jayden Knowles earned a Ph.D. from the University of Colorado Boulder and brings 18 years of experience in References (Xrefs) Assignment. Specializing in Xrefs Binding, Jayden’s expertise ensures thorough understanding and efficient solutions for complex assignments.
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Key Topics
  • Client Requirements and Project Overview
    • Drawing 1: Detail and Contour Plan
    • Drawing 2: Storage Shed Pad Design
    • Physical Evidence Required
    • Additional Supporting Evidence
  • Step-by-Step Guide to Completing the Assignment
    • Step 1: Review Client Requirements and Obtain Survey Data
    • Step 2: Create a Blank Project File
    • Step 3: Edit Site Data
    • Step 4: Import Boundaries and Create DTM
    • Step 5: Add Descriptive Text and Annotation
    • Step 6: Design Storage Shed Pad
    • Step 7: Create Final Drawings and PDF Files
    • Step 8: Review and Validate Drawings
  • Conclusion

Completing CAD assignments can be challenging, especially with complex projects like the Tighes Hill Detail and Pad Design. This blog provides a step-by-step guide to help you prepare two crucial CAD drawings based on survey field information. We will explore the process of using Magnet Office to create both detailed and contour plans, as well as the proposed storage shed pad design. Our aim is to ensure you meet all client requirements effectively.

The first step involves creating a detailed and contour plan for the TAFE Newcastle Campus Oval, requiring a 1:300 plot scale. Next, we will design a large-scale storage shed pad adjacent to the oval, with a plot scale of 1:100. By following this guide, you'll produce high-quality drawings that align with assessment criteria.

For those seeking professional assistance, our AutoCAD Assignment help can guide you through complex projects. Additionally, if you need support with creating precise and detailed plans, our 2D Drawings assignment help service is available to ensure your success. This blog will help you navigate through the intricacies of CAD drawing preparation and achieve your project goals.

Client Requirements and Project Overview

Drawing 1: Detail and Contour Plan

The first drawing is a detail and contour plan over the TAFE Newcastle Campus Oval located on part of Lot 100 in Deposited Plan 1004331, fronting Maitland Road, Tighes Hill. The required plot scale is 1:300, and the final output must be prepared and finalized in Magnet Office.

How-to-Design-and-Complete-Tighes-Hill-Assignment

Drawing 2: Storage Shed Pad Design

The second drawing involves a large-scale design of a proposed storage shed pad located adjacent to the oval. This drawing requires an A1 plot scale of 1:100, and like the first drawing, it must be completed using Magnet Office.

Physical Evidence Required

  1. Magnet Office project file containing the two completed A1 drawings.
  2. PDF files of both A1 drawings.
  3. Signed Assessment document.

Additional Supporting Evidence

  • Survey data: TighesHill_Detail.sdr, Deposited Plan 1004331, SCIMS search, Site Field Notes, Boundaries_TighesHill_v1.csv, A1 Titleblock file.
  • Known coordinates of survey stations.

Step-by-Step Guide to Completing the Assignment

Step 1: Review Client Requirements and Obtain Survey Data

First, ensure you have all the necessary survey data files:

  • TighesHill_Detail.sdr
  • Deposited Plan 1004331
  • SCIMS search
  • Site Field Notes
  • Boundaries_TighesHill_v1.csv
  • A1 Titleblock file
  • A Google or SIX viewer image that extends over the whole site.

Additionally, note the known coordinates of the survey stations:

  • Station A: Easting 9744.641, Northing 7316.453, Reduced Level (AHD) 1.590
  • Station B: Easting 9831.249, Northing 7335.870, Reduced Level (AHD) 1.683
  • Bearing from A to B: 77° 21’ 49”

Step 2: Create a Blank Project File

  1. Open Magnet Office and create a new project file. Save it as "YourName_TighesHill".
  2. Adopt suitable units and angular references for the project.
  3. Import the SDR file using the Raw Data Editor into the project. When prompted, enter the true coordinates and height for Point name: 100 (Station A). Click OK.
  4. Save to Survey.
  5. Use the Survey > Translate & Rotate option to rotate all the site data around point 100. The rotation value will be the true bearing from Station A to Station B.

Step 3: Edit Site Data

  1. Set the display scale to 1:300. Turn on Point number, not Elevation.
  2. Rename the layer "BOUNDARY" to "FENCE".
  3. Make the "Bank" layer current and turn off all other layers. Join TB points 1060, 1061, 1062, 1063, and 1064. Set the color to 3, dashed, and thickness to 0.25.
  4. Delete the line from 1122 to 1123.
  5. Turn on the layers Fence, Footway, and RETW. Join point 1113 to 1107, 1104 to 1103, 1102 to 1101 to 1100 to 1096, and 1092 to 1090. For the retaining wall, join 1122 to 1145 and 1144 to 1123.
  6. Explode the fence line joining points 1104 and 1090 into individual lines. Repeat for other fence strings.
  7. Edit point 1139 in the FPOST layer, changing the layer to Fence and color to 13. Delete the FPOST layer.
  8. Set all lines in the edited layers as breaklines. Confirm any notifications to use these points in the surface.
  9. Rename the BCH layer to BENCH SEATS. Select all bench seats and set breaklines to false.
  10. Rename the CPAD layer to CONCRETE PAD. Join points 1037, 1038, 1039, 1036, 1040, 1041, 1042, and 1037. Set these lines as breaklines and add the text "CONCRETE PAD" with 2.50 high Arial font.

Step 4: Import Boundaries and Create DTM

  1. Import the boundaries of part of Lot 100 in Deposited Plan 1004331 using the file "Boundaries_TighesHill.csv".
  2. Set the BDY layer as current and turn off all other layers. Edit point 1's code to SSM 11304 and adjust its symbol and scale. Join points 2 to 15, ensuring line thickness is set to 0.50 mm.
  3. Create a DTM for the site by making the NS layer current and turning on all layers. Use the SURFACE > Create DTM option, setting major contours to 1.0m and minor contours to 0.20m. Adjust contour settings as needed.

Step 5: Add Descriptive Text and Annotation

  1. Add road names, storm water channels, and other descriptive text using 10mm Arial font.
  2. Include boundary dimensions, bench seat labels, and additional details with 5mm Arial font.
  3. Create a new layer named TEXT for all added text.

Step 6: Design Storage Shed Pad

  1. Open the existing Magnet Office file from the Tighes Hill Detail Survey.
  2. Make the STORAGE SHED layer current and turn off all other layers.
  3. Use DESIGN > CREATE PAD to create a pad with existing pad points.
  4. Design the pad with an RL of 2.00 level and 1 in 10 cut & fill batters. Save the new pad design DTM as PAD.
  5. Merge the PAD DTM with the existing DTM-01 to create PAD_FINAL and make it current.

Step 7: Create Final Drawings and PDF Files

  1. Use the A1_TighesHill_TitleBlock_Student.tbk file to create the A1 drawings.
  2. Edit the title block to include project details. Adjust text size and font as needed.
  3. Complete the final drawings for both the detail and contour plan, and the storage shed pad design. Ensure all required elements and annotations are included.
  4. Save the drawings and project files to the supplied USB or assigned folder.

Step 8: Review and Validate Drawings

  1. Review the preliminary drawings against task specifications and industry-accepted standards.
  2. Validate the drawing integrity to ensure precision, accuracy, and quality.
  3. Make any necessary adjustments to meet task specifications.
  4. Disseminate final drawings to appropriate persons by storing data files according to organizational requirements.
  5. Print both drawings as A1 PDF files and save them to the supplied USB or assigned folder.

Conclusion

By following this step-by-step guide, you can successfully complete the Tighes Hill Detail and Pad Design assignment using Magnet Office. This process involves careful review of client requirements, meticulous editing of site data and precise creation of detailed drawings. With the right approach and attention to detail, you'll be able to produce high-quality CAD drawings that meet all necessary criteria and showcase your skills in handling complex survey data.

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