Linear Form Finding Approach for Regular and Irregular Single Layer Prism Tensegrity |
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Authors: | Mohammad Moghaddas Kok Keong Choong Jae-Yeol Kim Joo-Won Kang |
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Affiliation: | 1.School of Civil Engineering,Universiti Sains Malaysia,Nibong Tebal,Malaysia;2.Department of Architectural Engineering,Hyupsung University,Hwasung-shi,Korea;3.School of Architecture,Yeungnam University,Daehak-ro, Gyeongsan-shi,Korea |
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Abstract: | In an irregular prism tensegrity, the number of force equilibrium equations is less than the number of unknown parameters of nodal coordinates and member force ratios. As a result, the form-finding process normally becomes nonlinear with additional conditions or needs to be carried out with the use of iterative procedures. For cases of irregular prism tensegrity which involves large number of members, it was found that previously proposed methods of form-finding are not practical. Moreover, there is a need for a form-finding approach which is able to cater to different requirements on final configuration. In this paper, the length relation condition is introduced to be used in combination with the force equilibrium equation. With the combined use of length relation and equilibrium conditions, a linear form-finding approach for irregular prism tensegrity was successfully formulated and developed. An easy-to-use interactive form-finding tool has been developed which can be used for form-finding of irregular prism tensegrities with large number of elements as well as under diverse specific requirements on their configurations. |
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