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Researches on Thermo-Electric Properties of Seawater and Al_2O_3 Nanofluids

机译:海水热电性能研究及Al_2O_3纳米流体

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The article utilizes thermo-electric performance experiments to study four fixed volume kinds of electrolytes (Tap Water, Mineral Water, Sea Water, and Al_2O_3 Nanofluids) under different operating temperatures, distances and areas of electrodes due to the impact of the output currents. The experimental results showed that the rise in operating temperature will significantly affect the magnitude of the output current because of heat convection inside the fluid. And the output current of the seawater was much larger than those of the nanofluids, tap water and mineral water between 27 °C and 90 °C. Its maximum value was up to 4.2 mA. However, the seawater presented unstable for output current. The Al_2O_3 nanofluids had the most stable among them and its output current was about 1.08 mA. If seawater combined with Al_2O_3 nanoparticles, they will be able to achieve a complementary role in the future development.
机译:本文利用热电性能实验在不同的操作温度,电极的距离,电极的距离和电极区域下研究四种固定体积的电解质(自来水,矿泉水,海水和Al_2O_3纳米流域)。实验结果表明,由于流体内部的热对流,工作温度的上升将显着影响输出电流的大小。海水的输出电流远大于纳米流体,自来水和矿泉水在27℃至90℃之间。其最大值高达4.2 mA。但是,海水对于输出电流表示不稳定。 Al_2O_3纳米流体在它们中最稳定,其输出电流约为1.08 mA。如果海水与Al_2O_3纳米粒子相结合,他们将能够在未来的发展中实现互补作用。

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