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The Effect of Inter Digital Capacitors Sensor (IDCS) Configuration on Permittivity Measurement of Crude Oil

机译:数字电容传感器(IDCS)配置对原油介电常数测量的影响

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Research has been conducted on the effect of the configuration of Inter-digital sensor capacitors (IDCs) on the measurement of permittivity of crude oil. This research aims to obtain more effective IDCS configuration compared to the old model configuration and dielectric constants of several crude oil samples from PT. Pertamina Cepu. This study has already researched four types of crude oil samples which were obtained from four wells with different depths. Besides, the research refers to the capacitance principle, microstrip sensor, and wave properties. To conduct the research, capacitor sensors were arranged in parallel on thin plates that have a 1 μm thickness, namely IDCs. This sensor is used to determine the characteristics of crude oil in the form of permittivity. The data was measured by IDCs then compared with VNA data (Vector Network Analyzer) as a calibrator. VNA uses the principle of transmission and wave reflection. IDCs have several components, namely the width of the electrode and the number of electrodes. To obtain an accurate dielectric constant sensor, researchers made a variation on the width between two adjacent electrodes and the number of electrodes. Based on the research that has been done, it is found that with the increasing distance between the two adjacent electrodes, it results in a decrease in the capacitance value and the dielectric constant of crude oil. Whereas along with the increase in the number of electrodes, the crude oil capacitance also increases; yet it is not directly proportional compared to the dielectric constant of each crude oil. Hence, the permittivity of crude oil taken from a depth of less than 1500 ft (A) is 4.27, permittivity of crude oil taken from a depth of 1500-2000 ft (B) is 3.38 and permittivity of crude oil taken from a depth of more than 2000 ft (C) is 5.24.
机译:已经进行了关于叉指式传感器电容器(IDC)的配置对原油介电常数测量的影响的研究。与旧模型配置和PT几个原油样品的介电常数相比,本研究旨在获得更有效的IDCS配置。 Pertamina Cepu。这项研究已经研究了四种类型的原油样品,这些样品是从四个深度不同的井中获得的。此外,研究还涉及电容原理,微带传感器和波特性。为了进行研究,将电容器传感器平行排列在厚度为1μm的薄板上,即IDC。该传感器用于以介电常数的形式确定原油的特性。数据由IDC测量,然后与作为校准器的VNA数据(矢量网络分析仪)进行比较。 VNA使用传输和波反射的原理。 IDC具有几个组成部分,即电极的宽度和电极的数量。为了获得准确的介电常数传感器,研究人员对两个相邻电极之间的宽度和电极数量进行了更改。根据已经完成的研究,发现随着两个相邻电极之间距离的增加,其导致原油的电容值和介电常数降低。随着电极数量的增加,原油电容也随之增加。但是,与每种原油的介电常数相比,它并不成正比。因此,从小于1500英尺(A)的深度处获取的原油的介电常数为4.27,从1500-2000英尺(B)的深度处获取的原油的介电常数为3.38,从1500英尺(A)处获取的原油的介电常数为大于2000英尺(C)为5.24。

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