首页> 外文会议>ASME International Mechanical Engineering Congress and Exposition >DESIGN OF AN INNOVATIVE SOLAR UPDRAFT AERATION SYSTEM FOR FISH PONDS IN THE DEVELOPING WORLD USING THERMOFLUIDIC COMPUTATIONAL MODELLING
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DESIGN OF AN INNOVATIVE SOLAR UPDRAFT AERATION SYSTEM FOR FISH PONDS IN THE DEVELOPING WORLD USING THERMOFLUIDIC COMPUTATIONAL MODELLING

机译:热流体计算模型开发世界鱼塘的创新太阳天空上升曝气系统设计

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This paper introduces an innovative design concept for a low-cost solar-thermal aeration system for fish ponds which is amenable to implementation in resource-constrained settings. In its most basic form, the system consists of a metallic solar thermal collector and a heat transfer column (referred to as conduction element in this paper), which induces convective circulation by dissipating heat to the cooler, deeper layers of the pond. As a result of the circulation, oxygen generated by phytoplankton at the top of the pond is distributed throughout the water column, preventing oxygen losses to the atmosphere due to surface supersaturation and increasing the overall dissolved oxygen (DO) content in the pond. This paper presents a design study to evaluate different system configurations. Thermofluidic numerical models were implemented to systematically analyze and compare the mass flow rate through the draft tube induced by convection. Furthermore, parametric studies were performed to evaluate the effect of the insulation patch length and the aluminum plate thickness on the overall performance of the device (i.e. the induced mass flow rate through the draft tube). It was found that the two-fin configuration with split conduction elements was superior to the central rod design in terms of performance. In addition, it was found that depending on the insulation patch length, the induced mass flow rates can be increased up to 5 times. The results from the computational models indicate that the device can induce the convective circulation in order to improve the DO content at deep levels of the ponds and has potential to improve aquaculture productivity in resource-constrained settings. The results from this study will be used to configure systems for future field evaluations that will be performed in fish ponds in Bangladesh.
机译:本文介绍了一种用于鱼池的低成本太阳能热曝气系统的创新设计理念,可用于在资源受限设置中实现。在其最基本的形式中,该系统由金属太阳能热集电器和传热柱(本文中称为导通元件)组成,这通过将热量散热到凉爽的池塘的更深层次的池中来引起对流循环。由于循环,池塘顶部浮游植物产生的氧气分布在整个水柱上,由于表面过饱和而预防氧气损失,并将整体溶解的氧(DO)含量增加在池塘中。本文介绍了评估不同系统配置的设计研究。实施了热流体数值模型以系统地分析并将质量流量通过对流引起的管道进行比较。此外,进行参数化研究以评估绝缘贴片长度和铝板厚度对装置的整体性能的影响(即通过牵伸管的诱导质量流速)。结果发现,在性能方面,具有分割导通元件的双鳍配置优于中心杆设计。另外,发现取决于绝缘贴片长度,诱导质量流量可以增加高达5次。计算模型的结果表明该装置可以诱导对流循环,以便在池塘的深度水平处改善DO含量,并且有可能在资源受限的环境中提高水产养殖生产率。本研究的结果将用于配置将在孟加拉国鱼塘中进行的未来现场评估。

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