Biomimetic Avian-Marine Optimization: A Framework for Non-Functional Bio-Inspired Polymer Aerodynamic Decorative Installations

In this paper, we manufacture biomimetic avian-marine device for the first time. The structures are formed by understanding flying fish and planar wing integration. The plastic frustum gives bio inspired wing mechanics of flying fish. The modular readymade air plane provides the biomimetic avian structure. Here, we combine the liquid spray perfume to study solid-liquid placements. The liquid spray perfume are enclosed in plastic bottle. The liquid perfume are together with solid plastic tubes and plastic trees. The structural canvas are detailed with textile, plastic trays, plastic containers and polymers. The entire assembly are mounted on wood table. We do not use fluid networks. The biomimetic architecture are for decorative installations. Here we develop computer aided design (CAD) digital twin to 3D representation model of camera image. The model uses human perception method with the function call trimesh. The method provides the coordinates of the camera image in excel document. In this study, we develop python code to convert coordinates in excel to 3D model. We develop language model text to 3D objects. We develop artificial intelligence codecs that simple convert the language text to 3D objects. Our model are run on computer laptop. The simulation time is 45 s. The model matches the actual object. Our work can find applications in Augmented Reality (AR) exhibitions, generative mixed-media manufacturing, retail display design and bio-inspired material studies.

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Publication Details

Journal
International Journal of Mechanical Engineering and Applications
Published
2026-09-08
DOI
https://doi.org/10.11648/j.ijmea.20261403.12
Primary Topic
Biomimetic flight and propulsion mechanisms
Type
article
Field-Weighted Citation Impact
0.00
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article

Biomimetic Avian-Marine Optimization: A Framework for Non-Functional Bio-Inspired Polymer Aerodynamic Decorative Installations

Vishal Nandigana
International Journal of Mechanical Engineering and Applications
Biomimetic flight and propulsion mechanisms
article

Biomimetic Avian-Marine Optimization: A Framework for Non-Functional Bio-Inspired Polymer Aerodynamic Decorative Installations

Vishal Nandigana
article en

Abstract

In this paper, we manufacture biomimetic avian-marine device for the first time. The structures are formed by understanding flying fish and planar wing integration. The plastic frustum gives bio inspired wing mechanics of flying fish. The modular readymade air plane provides the biomimetic avian structure. Here, we combine the liquid spray perfume to study solid-liquid placements. The liquid spray perfume are enclosed in plastic bottle. The liquid perfume are together with solid plastic tubes and plastic trees. The structural canvas are detailed with textile, plastic trays, plastic containers and polymers. The entire assembly are mounted on wood table. We do not use fluid networks. The biomimetic architecture are for decorative installations. Here we develop computer aided design (CAD) digital twin to 3D representation model of camera image. The model uses human perception method with the function call trimesh. The method provides the coordinates of the camera image in excel document. In this study, we develop python code to convert coordinates in excel to 3D model. We develop language model text to 3D objects. We develop artificial intelligence codecs that simple convert the language text to 3D objects. Our model are run on computer laptop. The simulation time is 45 s. The model matches the actual object. Our work can find applications in Augmented Reality (AR) exhibitions, generative mixed-media manufacturing, retail display design and bio-inspired material studies.

International Journal of Mechanical Engineering and ApplicationsVol. 14(3)
Indian Institute of Technology Madras (IN)
Life below water
Openalex Percentile: Top 7%
Biomimetic flight and propulsion mechanisms
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Biomimetic Avian-Marine Optimization: A Framework for Non-Functional Bio-Inspired Polymer Aerodynamic Decorative Installations — Vishal Nandigana · International Journal of Mechanical Engineering and Applications (2026) | TGRS Research Map | TGRS