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首页> 外文期刊>Journal of Energy Storage >Performance enhancement of tubular solar still using nano-enhanced energy storage material integrated with v-corrugated aluminum basin, wick, and nanofluid
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Performance enhancement of tubular solar still using nano-enhanced energy storage material integrated with v-corrugated aluminum basin, wick, and nanofluid

机译:管状太阳能仍然采用纳米增强型储能材料与V形瓦楞铝盆,芯和纳米流体集成的纳米增强型储能材料增强

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摘要

Herein, five alternative combinations were applied on and under the still basin to enhance tubular solar still performance. Firstly, using a v-corrugated aluminum basin. Secondly, adding wick material to the v-corrugated aluminum basin. Thirdly, adding carbon black (CB) nanofluid on wick material located on the v-corrugated aluminum basin (heat localization). Fourthly, using phase change materials (pure paraffin wax) under the v-corrugated aluminum basin integrated with wicks and carbon black nanofluid (1.5 wt.%). Finally, the best case consists of the v-corrugated basin combined with wick, 1.5 wt.% CB nanofluid and CB nanoparticles with 3 wt.% were added to paraffin wax under the basin. The results showed that the productivity was enhanced by 21.4, 42.77, 58.48, 73.56, and 88.84% for the cases with the previous order. For the best case (fifth case), the thermal energy and exergy efficiencies were enhanced by 82.16 and 221.8%, respectively, whereas the cost could be saved by 22.47 %, compared to the conventional tubular solar still. Accordingly, the proposed materials and their combinations led to acceptable and feasible enhancement in the tubular solar still performance due to the improved heat transfer characteristics, and hence the increased evaporation rate.
机译:在此,在静止盆地和下部施加五种替代组合以增强管状太阳静止性能。首先,使用V-瓦楞铝盆。其次,将芯材添加到V波纹铝盆地。第三,在位于V形瓦楞铝盆地(热定位)上的芯材上添加炭黑(CB)纳米流体。第四,在V形瓦楞铝盆地下使用相变材料(纯石蜡),与芯片和炭黑纳米流体(1.5重量%)集成。最后,最佳壳体由V形瓦楞纸盆组成,与芯,1.5重量%。%CB纳米流体和3重量%的CB纳米颗粒加入到盆地下的石蜡中。结果表明,在前一份订单的情况下,生产力增强了21.4,42.77,58.48,73.56和88.84%。对于最佳案例(第五种情况),热能和漏洞效率分别增强了82.16和221.8%,而成本可节省22.47%,而传统的管状太阳能仍然相比。因此,由于改善的传热特性,所提出的材料及其组合导致管状太阳静止性能的可接受和可行的增强,因此提高了蒸发速率。

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