Biomimetic Approach to Parametric Flower Modeling
Apstrakt
Biodesign means life, living forms, it’s often associated with organic shapes and patterns and it has its wide use in landscape architecture. In the past few decades, there has been a great deal of progress in the study of natural systems as a means of developing contemporary design solutions. The biomimetic approach involves a close connection between biology and technology, which requires special attention because these are two areas that are fundamentally different. Biology is descriptive, broad, and variable, while technology is more numerical, with many guidelines and limitations. By this way, biomimetic as a design tool has so much potential that in the future it has yet to find comprehensive application in projects developed in the landscape architecture profession. A design solution that uses biomimicry can be as highly stylized on different ways, but the aesthetics will always be dictated by the perfect shapes of the nature. This research is inspired by the specific shape and ...unique beauty of the orchid flower. The study involves exploring the biomimetic pattern of a flower in its parametric modeling and its application in landscape design. This paper deals with the research of a species of the genus Phalaenopsis sp., it contains analysis of its natural form using a bionic pattern and parametric modeling of its flower. The result is the development of a conceptual solution for urban furniture designed for representative city areas.
Ključne reči:
Urban furniture / Parametric modeling / BiodesignIzvor:
Advances in Intelligent Systems and Computing, 2021, 1296, 244-251Izdavač:
- Springer Science and Business Media Deutschland GmbH
Institucija/grupa
Šumarski fakultetTY - CONF AU - Jović, Biljana AU - Čučaković, Aleksandar AU - Marković, M. AU - Cvijić, K. PY - 2021 UR - https://omorika.sfb.bg.ac.rs/handle/123456789/1224 AB - Biodesign means life, living forms, it’s often associated with organic shapes and patterns and it has its wide use in landscape architecture. In the past few decades, there has been a great deal of progress in the study of natural systems as a means of developing contemporary design solutions. The biomimetic approach involves a close connection between biology and technology, which requires special attention because these are two areas that are fundamentally different. Biology is descriptive, broad, and variable, while technology is more numerical, with many guidelines and limitations. By this way, biomimetic as a design tool has so much potential that in the future it has yet to find comprehensive application in projects developed in the landscape architecture profession. A design solution that uses biomimicry can be as highly stylized on different ways, but the aesthetics will always be dictated by the perfect shapes of the nature. This research is inspired by the specific shape and unique beauty of the orchid flower. The study involves exploring the biomimetic pattern of a flower in its parametric modeling and its application in landscape design. This paper deals with the research of a species of the genus Phalaenopsis sp., it contains analysis of its natural form using a bionic pattern and parametric modeling of its flower. The result is the development of a conceptual solution for urban furniture designed for representative city areas. PB - Springer Science and Business Media Deutschland GmbH C3 - Advances in Intelligent Systems and Computing T1 - Biomimetic Approach to Parametric Flower Modeling EP - 251 SP - 244 VL - 1296 DO - 10.1007/978-3-030-63403-2_22 UR - conv_1942 ER -
@conference{ author = "Jović, Biljana and Čučaković, Aleksandar and Marković, M. and Cvijić, K.", year = "2021", abstract = "Biodesign means life, living forms, it’s often associated with organic shapes and patterns and it has its wide use in landscape architecture. In the past few decades, there has been a great deal of progress in the study of natural systems as a means of developing contemporary design solutions. The biomimetic approach involves a close connection between biology and technology, which requires special attention because these are two areas that are fundamentally different. Biology is descriptive, broad, and variable, while technology is more numerical, with many guidelines and limitations. By this way, biomimetic as a design tool has so much potential that in the future it has yet to find comprehensive application in projects developed in the landscape architecture profession. A design solution that uses biomimicry can be as highly stylized on different ways, but the aesthetics will always be dictated by the perfect shapes of the nature. This research is inspired by the specific shape and unique beauty of the orchid flower. The study involves exploring the biomimetic pattern of a flower in its parametric modeling and its application in landscape design. This paper deals with the research of a species of the genus Phalaenopsis sp., it contains analysis of its natural form using a bionic pattern and parametric modeling of its flower. The result is the development of a conceptual solution for urban furniture designed for representative city areas.", publisher = "Springer Science and Business Media Deutschland GmbH", journal = "Advances in Intelligent Systems and Computing", title = "Biomimetic Approach to Parametric Flower Modeling", pages = "251-244", volume = "1296", doi = "10.1007/978-3-030-63403-2_22", url = "conv_1942" }
Jović, B., Čučaković, A., Marković, M.,& Cvijić, K.. (2021). Biomimetic Approach to Parametric Flower Modeling. in Advances in Intelligent Systems and Computing Springer Science and Business Media Deutschland GmbH., 1296, 244-251. https://doi.org/10.1007/978-3-030-63403-2_22 conv_1942
Jović B, Čučaković A, Marković M, Cvijić K. Biomimetic Approach to Parametric Flower Modeling. in Advances in Intelligent Systems and Computing. 2021;1296:244-251. doi:10.1007/978-3-030-63403-2_22 conv_1942 .
Jović, Biljana, Čučaković, Aleksandar, Marković, M., Cvijić, K., "Biomimetic Approach to Parametric Flower Modeling" in Advances in Intelligent Systems and Computing, 1296 (2021):244-251, https://doi.org/10.1007/978-3-030-63403-2_22 ., conv_1942 .