Applications of Mathematical Software Packages in Structural Engineering Education and Practice
The use of mathematical software packages provides a number of benefits to an engineering user. In general, the packages provide a platform that supports iterative design and parametric analysis through a flexible, transparent interface combined with extensive computing power. This enables an engine...
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Published in: | Journal of computing in civil engineering Vol. 14; no. 4; pp. 273 - 278 |
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Main Authors: | , |
Format: | Journal Article |
Language: | English |
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Reston, VA
American Society of Civil Engineers
01-10-2000
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Abstract | The use of mathematical software packages provides a number of benefits to an engineering user. In general, the packages provide a platform that supports iterative design and parametric analysis through a flexible, transparent interface combined with extensive computing power. This enables an engineering user to develop design equations that are based on fundamental mechanics theories, rather than relying on the "black-box" approach of most commercial design packages. As an example, a closed-form solution for obtaining effective length factors for the design of stepped columns is presented. In the example a series of formula is used to demonstrate the transparency of Mathcad, including the ability of using real engineering units in the calculations, formulas as they may appear in textbooks or in codes, and ability to hide and password protect some areas. This facilitates easier automation of the design and design checking processes. Most commercial structural design packages can be classified as black-box packages. The analyst inputs data at one end only to receive results at the other without fully appreciating the process the input data have gone through. This phenomenon has the tendency of reducing the engineer to a technician, blindly implementing the ideas of the software designer. The Mathcad package discussed in this paper and similar mathematical packages returns the engineer to being in control of the design process. |
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AbstractList | The use of mathematical software packages provides a number of benefits to an engineering user. In general, the packages provide a platform that supports iterative design and parametric analysis through a flexible, transparent interface combined with extensive computing power. This enables an engineering user to develop design equations that are based on fundamental mechanics theories, rather than relying on the ``black-box'' approach of most commercial design packages. As an example, a closed-form solution for obtaining effective length factors for the design of stepped columns is presented. In the example a series of formulas is used to demonstrate the transparency of Mathcad, including the ability of using real engineering units in the calculations, formulas as they may appear in textbooks or in codes, and ability to hide and password protect some areas. This facilitates easier automation of the design and design checking processes. Most commercial structural design packages can be classified as black-box packages. The analyst inputs data at one end only to receive results at the other without fully appreciating the process the input data have gone through. This phenomenon has the tendency of reducing the engineer to a technician, blindly implementing the ideas of the software designer. The Mathcad package discussed in this paper and similar mathematical packages return the engineer to being in control of the design process. The use of mathematical software packages provides a number of benefits to an engineering user. In general, the packages provide a platform that supports iterative design and parametric analysis through a flexible, transparent interface combined with extensive computing power. This enables an engineering user to develop design equations that are based on fundamental mechanics theories, rather than relying on the "black-box" approach of most commercial design packages. As an example, a closed-form solution for obtaining effective length factors for the design of stepped columns is presented. In the example a series of formula is used to demonstrate the transparency of Mathcad, including the ability of using real engineering units in the calculations, formulas as they may appear in textbooks or in codes, and ability to hide and password protect some areas. This facilitates easier automation of the design and design checking processes. Most commercial structural design packages can be classified as black-box packages. The analyst inputs data at one end only to receive results at the other without fully appreciating the process the input data have gone through. This phenomenon has the tendency of reducing the engineer to a technician, blindly implementing the ideas of the software designer. The Mathcad package discussed in this paper and similar mathematical packages returns the engineer to being in control of the design process. |
Author | Spainhour, Lisa K Mtenga, Primus V |
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References | Gifford, J. B. 1987; 1 e_1_2_1_6_2 e_1_2_1_7_2 e_1_2_1_4_2 e_1_2_1_5_2 e_1_2_1_2_2 e_1_2_1_11_2 e_1_2_1_3_2 e_1_2_1_12_2 e_1_2_1_1_2 e_1_2_1_10_2 e_1_2_1_15_2 e_1_2_1_16_2 e_1_2_1_13_2 e_1_2_1_14_2 e_1_2_1_8_2 e_1_2_1_9_2 |
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SubjectTerms | Applied sciences Buildings. Public works Exact sciences and technology Miscellaneous Project management. Process of design TECHNICAL NOTE |
Title | Applications of Mathematical Software Packages in Structural Engineering Education and Practice |
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