Nelson Stuart O
U.S. Department of Agriculture, Agricultural Research Service, Richard B. Russell Agricultural Research Center, Athens, Georgia, USA.
J Microw Power Electromagn Energy. 2005;40(1):31-47.
Dielectric spectroscopy data from measurements on tissue samples of nine fresh fruits and vegetables were used to study their dielectric behavior over the frequency range from 10 MHz to 1.8 GHz at 5 to 65 degrees C. Dielectric constant and loss-factor data are presented graphically for apple, avocado, banana, cantaloupe, carrot, cucumber, grape, orange, and potato, showing dielectric constants ranging from values of several hundred at 10 MHz to less than 100 at 1.8 GHz and loss factors on the order of one thousand at 10 MHz to less than 20 at 1.8 GHz. The dielectric loss factor increased consistently with increasing temperature at frequencies below 1 GHz. The dielectric constant increased with temperature at lower frequencies, but it decreased with temperature at the higher frequencies. This reversal of the sign of the temperature coefficient occurred at some point in the frequency range between 20 and 120 MHz where the temperature dependence of the dielectric constant was zero. At frequencies below this point, ionic conduction dominates the dielectric behavior, but above that point dipolar relaxation appears to control the behavior. Multiple linear regression provided equations for calculation of the loss factor in the frequency range from 10 to 300 MHz at temperatures from 5 to 65 degrees C. The data provide new information useful in understanding dielectric heating behavior and evaluating dielectric properties of such agricultural products for quality sensing applications.
通过对九种新鲜水果和蔬菜的组织样本进行测量得到的介电谱数据,用于研究它们在5至65摄氏度范围内10 MHz至1.8 GHz频率下的介电行为。以图表形式呈现了苹果、鳄梨、香蕉、哈密瓜、胡萝卜、黄瓜、葡萄、橙子和土豆的介电常数和损耗因子数据,显示介电常数在10 MHz时为几百,在1.8 GHz时小于100,损耗因子在10 MHz时约为一千,在1.8 GHz时小于20。在低于1 GHz的频率下,介电损耗因子随温度升高而持续增加。介电常数在较低频率下随温度升高而增加,但在较高频率下随温度降低。温度系数符号的这种反转发生在20至120 MHz的频率范围内的某个点,此时介电常数的温度依赖性为零。在该点以下的频率,离子传导主导介电行为,但在该点以上,偶极弛豫似乎控制行为。多元线性回归提供了在5至65摄氏度温度下10至300 MHz频率范围内损耗因子的计算方程。这些数据为理解介电加热行为和评估此类农产品用于质量传感应用的介电特性提供了有用的新信息。