标题: 缆线电阻对于TDR量测影响之理论模拟与应用
Effects of Cable Resistance on TDR Measurements — Theoretical Modeling & Applications
作者: 汤士弘
SHR-HONG TANG
林志平
CHIH-PING LIN
土木工程学系
关键字: 时域反射技术;时域反射监测;时域反射量测;缆线电阻;通用时域反射模型;Time Domain Reflectometry;TDR monioring;TDR measurement;Cable Resistance;comprehensive TDR model
公开日期: 2006
摘要: 时域反射法(time domain reflectomery, TDR)属于传输线式感测技术,具有上孔式、多功能及多工化特色,感测方式兼具机械式感测技术可靠耐久的优点及电子式可远端自动化监测的能力,故逐渐被广泛应用于大地工程监测,与诸如土壤科学、环境科学、农业工程等材料性质量测相关领域。上述大部份研究与应用目前多半忽略或不考虑传输线电阻影响,但现地监测实际上经常需要相当长度延长线,因此传输缆线中电阻影响不可忽略,需要进行相关修正,方能准确量测。本研究提出可正确描述传输缆线电阻影响的通用性波传模型,藉此通用模型探讨缆线电阻对于材料性质量测相关影响,并藉由本模型与室内试验,进一步讨论缆线电阻、材料互制、剪力带宽度对于错动变形监测之影响与改善建议。研究结果显示本模型可靠精确,能有效考虑缆线电阻影响,不同应用领域范例皆证明本模型为一相对简易、有效率、且具高解析度的工具,适合于探头设计、参数研究、资料阐释、与反算分析,能显着改善监测应用与材料量测应用分析合理性与结果。
Time domain reflectometry (TDR), which is based on the transmission line sensing technology, consists of an up-hole device that interrogates various mechanical transducers, providing the reliability, durability and capability of remote monitoring. As a result, it is increasingly used in geotechnical instrumentation and measurements of material properties related to soil science, environmental science, agriculture engineering, etc. Existing researches and current practice do not take into account the effect of cable resistance in the transmission line, which frequently becomes important when long lead cables are used in the field. This study developed a comprehensive TDR wave propagation model which can correctly describe and deal with the effect of cable resistance on TDR measurements. The effect of cable resistance on measurements of dielectric properties was investigated based on the comprehensive TDR model. In the application of shear displacement monitoring, effects of cable resistance, cable-grout-soil interaction, and shear band were properly discussed via model simulations and laboratory shear tests. Results show that the comprehensive TDR model is reliable, accurate, efficient, and capable of taking account of the effect of cable resistance. Examples of using the TDR model on various geotechnical applications demonstrate the model as a relatively simple, efficient, and high resolution tool for probe design, parametric studies, and data interpretation. Better data interpretations of TDR measurements are achieved with the assistance of the comprehensive TDR model introduced in this study.
URI: http://140.113.39.130/cdrfb3/record/nctu/#GT008916519
http://hdl.handle.net/11536/77435
显示于类别:Thesis


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