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Temperature-dependent dielectric properties of chestnut and chestnut weevil from 10 to 4500 MHz.

机译:板栗和板栗象鼻虫在10至4500 MHz范围内随温度变化的介电特性。

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The dielectric properties of chestnut and chestnut weevil at five temperatures between 20 degrees C and 60 degrees C over the frequency range from 10 to 4500 MHz were measured with an open-ended coaxial-line probe and network analyser. The dielectric constants ( epsilon ') of both materials decreased with increasing frequency. The dielectric loss factor ( epsilon ") of chestnut decreased with increasing frequency below about 3000 MHz, and slightly increased above 3000 MHz. The epsilon " of chestnut weevil decreased with increasing frequency to a minimum value at about 1000 MHz. Below the turn point, the value of epsilon " increased with increasing temperature, and decreased with temperature above that point. The epsilon ' and epsilon " of chestnut and epsilon ' of chestnut weevil increased with increasing temperature. The penetration depth decreased with the increase of either frequency or temperature. Dielectric heating below 100 MHz might provide practical applications in controlling chestnut weevil due to potential differential heating and sufficient penetration depth. The study offers useful information on dielectric properties of chestnut and chestnut weevil in developing thermal treatments for postharvest disinfestation based on electromagnetic energy.Digital Object Identifier http://dx.doi.org/10.1016/j.biosystemseng.2011.09.007
机译:用开放式同轴探针和网络分析仪测量了板栗和板栗象鼻虫在10到4500 MHz频率范围内在20摄氏度和60摄氏度之间的五个温度下的介电性能。两种材料的介电常数(ε)随频率增加而降低。板栗的介电损耗因子(ε)随频率在约3000 MHz以下的增加而降低,而在3000 MHz以上则略有增加。板栗象鼻虫的ε随频率增加而降低,在1000 MHz左右达到最小值。在转折点以下,ε的值“随温度升高而增加,而随温度高于该点而降低。”栗子的ε和ε和栗象鼻虫的ε随温度升高而增加。穿透深度随频率或温度的升高而降低。由于电位差加热和足够的穿透深度,低于100 MHz的介电加热可能在控制板栗象鼻虫方面提供实际应用。该研究为开发栗子和栗象鼻虫的介电特性提供了有用的信息,该热处理用于开发基于电磁能的采后消毒方法。数字对象标识符http://dx.doi.org/10.1016/j.biosystemseng.2011.09.007

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