You are employed as a mechanical software engineer within an electricity transmission company, specializing in the development of new electricity transmission towers. Your division is responsible for offering computer based modeling and design solutions utilizing Finite Element Method (FEM) principles. Your primary responsibilities encompass tower analysis and the identification of optimal materials to fulfill specified criteria Under the guidance of your immediate supervisor, you have been assigned distinct responsibilities within an ongoing project. In your capacity as a member of the design team, you are tasked with constructing at appropriate model and executing a sequence of simulation iterations to explore and enhance the tower" performance. The outcomes of these simulations will guide the decision-making process of your team's directo in terms of the final design. Reference to Figure 1 provides a visualization of the electricity transmission to we under consideration. 6 ft -9 ft- --+-61-+-619A- F ft- NA 1200 lb E

Elements Of Electromagnetics
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ISBN:9780190698614
Author:Sadiku, Matthew N. O.
Publisher:Sadiku, Matthew N. O.
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You are employed as a mechanical software engineer within an electricity transmission company, specializing in
the development of new electricity transmission towers. Your division is responsible for offering computer-
based modeling and design solutions utilizing Finite Element Method (FEM) principles. Your primary
responsibilities encompass tower analysis and the identification of optimal materials to fulfill specified criteria.
Under the guidance of your immediate supervisor, you have been assigned distinct responsibilities within an
ongoing project. In your capacity as a member of the design team, you are tasked with constructing an
appropriate model and executing a sequence of simulation iterations to explore and enhance the tower's
performance. The outcomes of these simulations will guide the decision-making process of your team's director
in terms of the final design. Reference to Figure 1 provides a visualization of the electricity transmission to wer
under consideration.
G
6 ft
6 ft
12 ft
-9 ft-
---6--6 ---- -9 ft-
F
1200 lb
S-
A
IK
-6 ft--6 ft-
F. Compute the unknown nodal displacements.
G. Compute the axial load in each element.
H. Compute the axial stress in each element.
I. Find the reactions and do the verification.
D
C
B
-S
A. Find the stiffness matrices for the elements.
B. Assemble the global stiffness matrix.
C. Construct the global load matrix.
D. Ensure the size of the global stiffness matrix and the global load matrix.
E. Apply the boundary conditions to reduce the size of the matrecis.
E
Figure 1 Electricity transmission tower
Task #1
Develope a MATLAB code that calculates the following using the Finite Element Method. Refer to Table 1 for
various recommendations regarding materials and cross-sectional areas.
1600 lb
J. Your manager at work has asked you to propose methods to enhance the accuracy of your solution. Suggest a set
of points for this.
Transcribed Image Text:You are employed as a mechanical software engineer within an electricity transmission company, specializing in the development of new electricity transmission towers. Your division is responsible for offering computer- based modeling and design solutions utilizing Finite Element Method (FEM) principles. Your primary responsibilities encompass tower analysis and the identification of optimal materials to fulfill specified criteria. Under the guidance of your immediate supervisor, you have been assigned distinct responsibilities within an ongoing project. In your capacity as a member of the design team, you are tasked with constructing an appropriate model and executing a sequence of simulation iterations to explore and enhance the tower's performance. The outcomes of these simulations will guide the decision-making process of your team's director in terms of the final design. Reference to Figure 1 provides a visualization of the electricity transmission to wer under consideration. G 6 ft 6 ft 12 ft -9 ft- ---6--6 ---- -9 ft- F 1200 lb S- A IK -6 ft--6 ft- F. Compute the unknown nodal displacements. G. Compute the axial load in each element. H. Compute the axial stress in each element. I. Find the reactions and do the verification. D C B -S A. Find the stiffness matrices for the elements. B. Assemble the global stiffness matrix. C. Construct the global load matrix. D. Ensure the size of the global stiffness matrix and the global load matrix. E. Apply the boundary conditions to reduce the size of the matrecis. E Figure 1 Electricity transmission tower Task #1 Develope a MATLAB code that calculates the following using the Finite Element Method. Refer to Table 1 for various recommendations regarding materials and cross-sectional areas. 1600 lb J. Your manager at work has asked you to propose methods to enhance the accuracy of your solution. Suggest a set of points for this.
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