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Performance Enhancement using Nano Particles in Modified Passive Solar Still

机译:在改进的被动太阳中使用纳米颗粒的性能提升

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Conventional single basin passive solar still has low productivity. In this context, productivity of passive solar still is increased by using nanoparticles in modified still. Modified still has white painted sidewalls. Nanoparticles enhance thermal characteristics of the fluid by increasing surface area for heat transfer. CuO nanoparticles have been used in modified still to increase productivity and efficiency. Experiments have been performed at water depth of 5 cm and 10 cm with nanoparticles added 0.12% by weight. The performance is compared with the conventional solar still kept at same place (Jabalpur, India, 23° 10' N, 79° 59' E) in same ambient conditions. Modified solar still with added nanoparticles produces 3445 ml/m~2-day and 3058 ml/m~2-day at water depth of 5cm and 10 cm respectively, while conventional solar still yields 2814 ml/m~2-day and 2351 ml/m~2-day for respective water depth. In this experimental work, error analysis and cost analysis has also been carried out.
机译:传统的单个盆地被动太阳能仍然具有低生产率。在这种情况下,通过使用纳米颗粒静止的纳米颗粒仍然增加了被动太阳的生产率。修改仍然有白色彩绘的侧壁。纳米颗粒通过增加表面积来增强流体的热特性进行热传递。 CuO纳米颗粒已被用于修改以提高生产率和效率。实验已经在5厘米的水深和10cm的水深进行,纳米颗粒加入0.12重量%。将性能与传统的太阳能相比相同(Jabalpur,India,23°10'N,79°59'e)相同的环境条件。加入纳米颗粒的改性太阳能分别在5厘米和10cm的水深产生3445ml / m〜2天和3058ml / m〜2天,而常规的太阳能仍然产生2814ml / m〜2天和2351毫升/ m〜2天用于各自的水深。在该实验工作中,还进行了误差分析和成本分析。

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