Heat transfer in the tank-inflorescence of Nidularium innocentii (Bromeliaceae): Experimental and finite element analysis based on X-ray microtomography.

Fernanda M Nogueira, Felipe L Palombini, Sofia A Kuhn, Branca F Oliveira, Jorge E A Mariath

Journal: Micron (Oxford, England : 1993) 2020;124():102714

PMID: 31336336

Abstract

In Bromeliaceae, various traits have evolved for the uptake and storage of water; however, their roles in bromeliad inflorescences remain unresolved. This study investigates the role of water in the flowers and inflorescences of Nidularium innocentii, and describes water as a protection mechanism. Individuals were divided into groups with and without water provision in inflorescences. Both groups were maintained with water in soil and leaves under the same environmental conditions. During anthesis, individuals were collected, and inflorescences were measured. Another specimen was prepared and scanned using X-ray microtomography (μCT), generating a high-resolution 3D model that was converted into a discretized geometry. Heat transfer finite element analysis (FEA) of the μCT-based geometry was then performed to simulate external temperature dissipation with the presence and absence of water in 3D. Flower size in the control group was significantly larger, and many injuries were observed in the drought group. FEA data indicated that the water environment led to lower temperature variation when compared to the air environment by significantly alleviating thermal amplitude. Water acted as a temperature stabilizer for the inflorescence, while its absence initiated physiological stress responses.

Copyright © 2019 Elsevier Ltd. All rights reserved.

Address: Laboratory of Plant Anatomy (LAVeg), Institute of Biosciences, Department of Botany, Federal University of Rio Grande do Sul (UFRGS), Av. Bento Gonçalves, 9500, Porto Alegre, RS, Brazil; Graduate Program in Botany, Institute of Biosciences, Department of Botany, Federal University of Rio Grande do Sul (UFRGS), Av. Bento Gonçalves, 9500, Porto Alegre, RS, Brazil. Electronic address: [email protected].; Graduate Program in Design - PGDesign, Federal University of Rio Grande do Sul - UFRGS, Av. Osvaldo Aranha 99/607, 90035-190, Porto Alegre, RS, Brazil. Electronic address: [email protected].; Farroupilha Federal Institute of Education, Science and Technology, (IFFar) - RS 527, Julio de Castilhos, RS, Brazil.; Graduate Program in Design - PGDesign, Federal University of Rio Grande do Sul - UFRGS, Av. Osvaldo Aranha 99/607, 90035-190, Porto Alegre, RS, Brazil; Virtual Design Research Group - ViD, Federal University of Rio Grande do Sul - UFRGS, Av. Osvaldo Aranha 99/408, 90033-190, Porto Alegre, RS, Brazil.; Laboratory of Plant Anatomy (LAVeg), Institute of Biosciences, Department of Botany, Federal University of Rio Grande do Sul (UFRGS), Av. Bento Gonçalves, 9500, Porto Alegre, RS, Brazil.

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