中国物理B ›› 2016, Vol. 25 ›› Issue (10): 100204-100204.doi: 10.1088/1674-1056/25/10/100204
Ri-Ma Bao(宝日玛), Hong-Lei Zhan(詹洪磊), Xin-Yang Miao(苗昕扬), Kun Zhao(赵昆), Cheng-Jing Feng(冯程静), Chen Dong(董晨), Yi-Zhang Li(李羿璋), Li-Zhi Xiao(肖立志)
Ri-Ma Bao(宝日玛)1,2, Hong-Lei Zhan(詹洪磊)1,2, Xin-Yang Miao(苗昕扬)2, Kun Zhao(赵昆)1,2,3, Cheng-Jing Feng(冯程静)2, Chen Dong(董晨)2, Yi-Zhang Li(李羿璋)2, Li-Zhi Xiao(肖立志)1
摘要: Detecting holes in oil-gas reservoirs is vital to the evaluation of reservoir potential. The main objective of this study is to demonstrate the feasibility of identifying general micro-hole shapes, including triangular, circular, and square shapes, in oil-gas reservoirs by adopting terahertz time-domain spectroscopy (THz-TDS). We evaluate the THz absorption responses of punched silicon (Si) wafers having micro-holes with sizes of 20 μm-500 μm. Principal component analysis (PCA) is used to establish a model between THz absorbance and hole shapes. The positions of samples in three-dimensional spaces for three principal components are used to determine the differences among diverse hole shapes and the homogeneity of similar shapes. In addition, a new Si wafer with the unknown hole shapes, including triangular, circular, and square, can be qualitatively identified by combining THz-TDS and PCA. Therefore, the combination of THz-TDS with mathematical statistical methods can serve as an effective approach to the rapid identification of micro-hole shapes in oil-gas reservoirs.
中图分类号: (General statistical methods)