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Heat and mass transfer simulation and experimental evaluation of solar powered vacuum membrane distillation system

机译:太阳能真空膜蒸馏系统的传热传质模拟与实验评估

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Water and energy scarcity in dry and remote areas is a well understood issue and becoming even more pronounced in the future due to the impact of climate change. Research on solar powered desalination techniques in these places is growing worldwide to produce fresh water using renewable sources of energy. Membrane distillation processes are technically simple and capable of producing high-quality potable water over a long period with minimal maintenance. With regard to the attractive advantages of the vacuum membrane distillation (VMD) process, it is a promising technology that can be implemented by the use of solar energy. The aim of this paper is not only to develop a mathematical model describing heat and mass transfer processes across a VMD process using thermal renewable energy, but also to implement innovative design to improve the overall performance of a solar powered vacuum membrane distillation (SVMD) system. In the present work, a small pilot-scale SVMD unit was designed, assembled and tested. The dependency of the predictive model to natural climatic conditions is assessed and validated against experimental data. Theoretical flux data of the proposed SVMD pilot plant is then graphed via a numerical solution in order to compare with experimental results. The influence of salinity concentration on the permeate flux is explained. Finally, sensitivity analysis of the simulated model showed that the permeate flux is highly sensitive to pressure, solar irradiance and flow rate values.
机译:干旱和偏远地区的水和能源短缺是一个众所周知的问题,并且由于气候变化的影响,在未来变得更加突出。这些地方对太阳能淡化技术的研究正在全球范围内发展,以利用可再生能源生产淡水。膜蒸馏工艺在技术上很简单,并且能够在很长时间内以最少的维护量生产出高质量的饮用水。关于真空膜蒸馏(VMD)工艺的诱人优势,这是可以通过使用太阳能来实现的有前途的技术。本文的目的不仅在于建立描述使用热可再生能源的VMD过程中的传热和传质过程的数学模型,而且还旨在实施创新设计以改善太阳能真空膜蒸馏(SVMD)系统的整体性能。在目前的工作中,设计,组装和测试了一个小型中试规模的SVMD装置。根据实验数据评估并验证了预测模型对自然气候条件的依赖性。然后通过数值解将拟建的SVMD中试装置的理论通量数据绘制成图表,以便与实验结果进行比较。解释了盐度浓度对渗透通量的影响。最后,对模拟模型的敏感性分析表明,渗透通量对压力,太阳辐照度和流速值高度敏感。

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