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利用程序三维建模和光线追踪的光生物反应器设计。

Photobioreactor design utilizing procedural three-dimensional modelling and ray tracing.

作者信息

Riihiaho Kimmo A, Lind Leevi, Calderini Marco L, Halonen Vilho, Pölönen Ilkka, Salmi Pauliina

机构信息

Faculty of Information Technology, University of Jyväskylä, Jyvaskyla, Finland.

出版信息

J R Soc Interface. 2025 Jan;22(222):20240451. doi: 10.1098/rsif.2024.0451. Epub 2025 Jan 29.

Abstract

The design of photobioreactors for microalgae cultivation aims to achieve an architecture that allows the most efficient photosynthetic growth. The availability of light at wavelengths that are important for photosynthesis is therefore particularly crucial for reactor design. While testing different reactor types in practice is expensive, simulations could effectively limit the range of material and reactor design options. In this study, procedural three-dimensional modelling together with ray tracing was used to create virtual models of a conventional glass photobioreactor lit from the outside and a steel photobioreactor with embedded light sources. The measured transmittance and reflectance of culture were used as a basis for light interaction simulation, and spectral images of the same species were used to validate the simulation results. This type of simulation could have the potential for comparing different reactor architectures, geometries and light attenuation to facilitate the transition to large-scale cultivation. Our results show that the proposed simulator is usable in photobioreactor geometry design as well as in the estimation of available illumination on wavelengths where microalgae have strong absorption peaks, but the handling of light scattering still needs improvement. To the authors' best knowledge, this is the first attempt, not focused on a specific use case, to build a general photobioreactor design tool capable of estimating hyperspectral light attenuation in microalgae suspension. All software code and used datasets are made available for the reader as open source.

摘要

用于微藻培养的光生物反应器的设计旨在实现一种能让微藻实现最有效光合生长的架构。因此,对于光合作用至关重要的波长的光的可用性对反应器设计尤为关键。虽然在实践中测试不同类型的反应器成本高昂,但模拟可以有效地限制材料和反应器设计选项的范围。在本研究中,使用程序三维建模结合光线追踪来创建一个从外部照明的传统玻璃光生物反应器和一个带有嵌入式光源的钢质光生物反应器的虚拟模型。将测得的培养物的透过率和反射率用作光相互作用模拟的基础,并使用同一物种的光谱图像来验证模拟结果。这种类型的模拟有可能用于比较不同的反应器架构、几何形状和光衰减,以促进向大规模培养的过渡。我们的结果表明,所提出的模拟器可用于光生物反应器几何设计以及估计微藻具有强烈吸收峰的波长上的可用光照,但光散射的处理仍需改进。据作者所知,这是首次尝试构建一种通用的光生物反应器设计工具,该工具能够估计微藻悬浮液中的高光谱光衰减,且不专注于特定用例。所有软件代码和使用的数据集都作为开源提供给读者。

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