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首页> 外文期刊>Applied thermal engineering: Design, processes, equipment, economics >Innovative induction heating technology based on transformer theory: Inner heating of electrolyte solution via alternating magnetic field
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Innovative induction heating technology based on transformer theory: Inner heating of electrolyte solution via alternating magnetic field

机译:基于变压器理论的创新感应加热技术:通过交流磁场的电解质溶液内部加热

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摘要

The study proposes an innovative induction heating technology for inner heating of aqueous electrolyte solution. The thermal effect on the solution because of alternating magnetic field was observed through an experimental transformer device. The heating principle is consistent with the operating basis of a transformer. The theoretical basis of this technology is to determine whether the induced current passing through a coil of the solution would produce a primary current increase. KCl solution of 0.5 mol/L or 2 mol/L was used to investigate the effectiveness of this heating technology. And solution samples acted as the secondary circuit of a transformer. Induced voltage was loaded on the solution coil and the heating tube. Results demonstrated that AC impedance of the solution coil was extremely high. The current density could be improved when the internal diameter of the heating tube was reduced. A primary current increase was measurable as a result of the induced current in the coil of KCl solutions, then causing the thermal effect. It is demonstrated that 0.31 ml of 0.5 mol/L KCl solution could be heated up to 90 degrees C within 28 s using alternating magnetic field, that is an inner heating process. The heating rate was relatively high at higher KCl concentration. The efficiency of the heating was calculated according to the principle of the transformer, which ranged from 4.65% to 21.24%. The thermal efficiency of the method needs to be further improved for rapid temperature rise. The technology will have broad application space in chemical synthesis, and it is also a sister technology of ohmic heating.
机译:该研究提出了一种用于内部电解质溶液内部加热的创新感应加热技术。通过实验变压器装置观察由于交替磁场而对溶液的热效应。加热原理与变压器的操作基础一致。该技术的理论基础是确定通过溶液的线圈的感应电流是否会产生初级电流增加。 KCl溶液0.5mol / L或2 mol / L探讨该加热技术的有效性。并且解决方案样本用作变压器的次级电路。诱导电压在溶液线圈和加热管上装载。结果表明,溶液线圈的AC阻抗非常高。当加热管的内径降低时,可以提高电流密度。由于KCl溶液的线圈中的诱导电流,初级电流增加是可测量的,然后导致热效应。证明,使用交替磁场可以在28秒内加热0.31ml 0.5mol / l Kcl溶液,即内部加热过程。在较高的KCl浓度下加热速率相对较高。根据变压器的原理计算加热的效率,其范围为4.65%至21.24%。该方法的热效率需要进一步提高以快速升高。该技术将在化学合成中具有广泛的应用空间,也是欧姆加热的姐妹技术。

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