High-efficiency continuous-flow microwave heating system based on metal-ring resonant structure

IF 6.3 1区 农林科学 Q1 FOOD SCIENCE & TECHNOLOGY
Man Liu , Danfeng Zhou , Yu Peng , Zhengming Tang , Kama Huang , Tao Hong
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引用次数: 1

Abstract

Continuous-flow microwave heating has been widely applied in liquid food processing, and the heating efficiency relies heavily on the dielectric property of loads with fixed dimensions in a certain cavity. Specifically, rectangular waveguides are widely applied, and straight pipes are usually inserted through the center of rectangular waveguides. However, maintaining high efficiency is always challenging since the dielectric property will vary with temperature. Therefore, a simple and cheap resonant structure is proposed in this paper to maintain high heating efficiency for loads with a large range of relative permittivity in both modeling and experiment. First, the straight pipe surrounded by metal rings in a rectangular waveguide with a short circuit terminal was introduced to concentrate the electric field in the pipe. Then, a multiphysics model was established to calculate the energy efficiency of various load permittivity. The position of the short circuit terminal and the dimensions of the metal ring were further optimized. Finally, energy efficiency experiments of different aqueous ethanol solutions and liquid foods and point temperature rise experiments of continuous-flow water were carried out, and the results showed that the proposed structure can be used to maintain high energy efficiency over large dielectric dynamic ranges compared with the conventional microwave heating system based on rectangular waveguides. Moreover, the effect of different parameters, the pipe permittivity, the pipe wall thickness and the metal ring gap, on the heating efficiency was discussed to show the robustness of the proposed structure.

基于金属环谐振结构的高效连续流微波加热系统
连续流微波加热在液态食品加工中得到了广泛的应用,其加热效率在很大程度上依赖于一定腔内固定尺寸载荷的介电性能。具体来说,矩形波导被广泛应用,直管通常通过矩形波导的中心插入。然而,由于介电性能会随温度变化而变化,因此保持高效率一直是一项挑战。因此,本文提出了一种简单廉价的谐振结构,在建模和实验中都能在相对介电常数范围较大的负载下保持较高的加热效率。首先,在带短路端子的矩形波导中引入被金属环包围的直管来集中管内的电场。然后,建立多物理场模型,计算不同负载介电常数下的能量效率。进一步优化了短路端子的位置和金属环的尺寸。最后,进行了不同乙醇水溶液和液体食品的能效实验以及连续水流的点温升实验,结果表明,与基于矩形波导的传统微波加热系统相比,该结构可以在大介电动态范围内保持较高的能效。此外,还讨论了不同参数(管道介电常数、管壁厚度和金属环间隙)对热效率的影响,以证明所提出结构的鲁棒性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
CiteScore
12.00
自引率
6.10%
发文量
259
审稿时长
25 days
期刊介绍: Innovative Food Science and Emerging Technologies (IFSET) aims to provide the highest quality original contributions and few, mainly upon invitation, reviews on and highly innovative developments in food science and emerging food process technologies. The significance of the results either for the science community or for industrial R&D groups must be specified. Papers submitted must be of highest scientific quality and only those advancing current scientific knowledge and understanding or with technical relevance will be considered.
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