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Designing and Experimental Validation of an Electromagnetic Setup at MHz Frequency Under Different Propagation Media

机译:不同传播媒体下MHz频率电磁设置的设计与实验验证

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For successful underwater electromagnetic (EM) wave operation, knowledge is required of the wave propagation properties of seawater overall distances both short and long. This paper presents a novel application of EM wave propagation through seawater, in the field of nano-EOR by manipulating the nanoparticle characteristics under EM waves. For this purpose, a solenoid-based 167 MHz transmitter is designed, simulated, and fabricated in the laboratory and has been studied in two steps under air, tap water, and salt water as a transmission medium. Firstly, a laboratory-scale model was simulated by using computer simulation technology (CST) to test the designed solenoid under different background media, whereas in second step, these simulation results were validated experimentally using a scale tank with a scale factor of 4360. It is noted that the solenoid has been best to propagate at an optimum applied voltage of 1.5 V in salt water. The comparative results at 1.5 V show that the magnitude of the EM waves was found to deviate up to 8.23 % in salt water, while it deviates by 21.3 and 44.3 % for tap water and air, respectively. This proved its suitability to employ in underwater EOR application.
机译:对于成功的水下电磁(EM)波操作,需要对海水的波传播特性短而长的知识。本文通过操纵EM波下的纳米颗粒特性,通过海水中的纳米水在纳米水域中提出了一种新颖的EM波传播应用。为此目的,在实验室中设计,模拟和制造了一种基于螺线管的167 MHz发射器,并在空气,自来水和盐水下进行了两步研究,作为传输介质。首先,通过使用计算机仿真技术(CST)来模拟实验室规模模型,以在不同的背景介质下测试设计的电磁阀,而在第二步中,这些仿真结果通过规模因子为4360的规模罐进行了实验验证。它应注意,螺线管最佳地在盐水中以最佳施加电压传播1.5V。 1.5 V的比较结果表明,发现EM波的大小偏离盐水中高达8.23%,同时偏离21.3和44.3%,分别自来水和空气。这证明了适用于水下EOR应用的适用性。

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