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Enhancing Electrical Contact with a Commercial Polymer for Electrical Resistivity Tomography on Archaeological Sites: A Case Study

机译:在考古遗址中加强与商业聚合物的电气接触在考古地点进行电阻率断层扫描:一个案例研究

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摘要

This communication reports an improvement of the quality of the electrical data obtained from the application of electrical resistivity tomography method on archaeological studies. The electrical contact between ground and electrode enhances significantly by using carbomer-based gel during the electrical resistivity tomography measurements. Not only does the gel promote the conservation of the building surface under investigation, but it also virtually eliminates the necessity of conventional spike electrodes, which in many archaeological studies are inadequate or not permitted. Results evidenced an enhancement in the quality of the electrical data obtained in the order of thousands of units compared with those without using the carbomer-based gel. The potential and capabilities of this affordable gel make it appropriate to be applied to other geoelectrical studies beyond archaeological investigations. Moreover, it might solve corrosion issues on conventional spike electrodes, and electrical multicore cables usually provoked for added saltwater attempting to improve the electrical contact.
机译:该通信报告了从应用电阻率断层扫描方法对考古学研究的应用中获得的电气数据的质量的提高。通过在电阻率断层扫描测量期间使用基于Carbomer的凝胶,地和电极之间的电接触提高了显着的增强。凝胶不仅促进了正在调查的建筑物表面的守恒,而且它几乎几乎消除了传统尖峰电极的必要性,这在许多考古学研究中是不充分的或不允许的。结果在不使用基于Carbomer的凝胶的情况下比较了数千个单位量的电气数据的质量的提高。这种实惠凝胶的潜在和能力使得适合应用于超出考古调查的其他地质电研究。此外,它可能解决传统尖峰电极上的腐蚀问题,并且通常引起电气多芯电缆,用于添加盐水试图改善电接触。

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