| 研究生: |
陳志賢 Chich-Shen Chen |
|---|---|
| 論文名稱: |
RC構件之三維斷層掃描理論與數值驗證 Theory and Numerical Validation of the 3D Computational Tomography of Reinforced Concrete Components |
| 指導教授: |
王仲宇
Chung-Yue Wang |
| 口試委員: | |
| 學位類別: |
碩士 Master |
| 系所名稱: |
工學院 - 土木工程學系 Department of Civil Engineering |
| 畢業學年度: | 93 |
| 語文別: | 中文 |
| 論文頁數: | 147 |
| 中文關鍵詞: | 非破壞檢測 、斷層掃描 、線性走時內差法 、射線追蹤 、鋼筋混凝土 |
| 外文關鍵詞: | ray tracing, travel time, reinforced concrete, tomography, NDT |
| 相關次數: | 點閱:15 下載:0 |
| 分享至: |
| 查詢本校圖書館目錄 查詢臺灣博碩士論文知識加值系統 勘誤回報 |
本論文回顧了基本的斷層掃瞄理論,選擇較適用於土木結構的級數法作為理論依據來進行模擬分析,來判斷出鋼筋混凝土內部的鋼筋以及孔隙之位置。
震波斷層掃瞄理論由兩個部分組成,分別為正算模式部分與反算模式部分。正算模式決定波的行經路徑,而反算模式部分則根據這些波徑算出物體內部的波速分佈情形。本論文使用正六面體格點方塊模型,並利用線性走時內差(Linear Traveltime Interpolation Method, LTI)法作為計算波行路徑的方法。在反算部份則選擇速度分布之聯立疊代重建(Simultaneous Iterative Reconstruction Technique, SIRT)法作為搭配,結合成完整的斷層掃描理論。
由於實體模型需要大量的網格來組成,以現階段個人電腦的計算速度而言需要太過龐大的計算時間,因此本文採用數值模擬的方式來進行研究。研究成果顯示,三維斷層掃描法可以成功計算出試體內部的波速分佈,以及利用鋼筋混凝土組成物(鋼筋、混凝土與孔隙)之波速皆有其固定範圍的概念,可以大幅縮短計算時間並提高顯像之解析度。
In this paper, the series expansion method of computational tomography (CT) was selected to develop a nondestructive evaluation technique for reinforced concrete components. In general, the tomography analysis contains two different procedures. The first one is the forward modeling for a given wave propagation structure. The forward modeling uses the ray tracing technique in order to simulate the curved ray path through the medium. A 3D least traveltime construction method is developed for all the nodal points in the wave propagation structure to a given source. The second is the inversion for updating the wave propagation structure constructed previously. The ray tracing technique, linear traveltime interpolation (LTI) method, is selected to combine with simultaneous iterative reconstruction technique (SIRT) to develop a three dimensional computational tomography scheme for reinforced concrete (RC) components.
Numerical simulations verify that the accuracy and performance of this newly proposed 3D CT theory for RC components are acceptable. The convergent rate and image contrast of the CT calculation for RC component can be improved dramatically by taking the advantage that only three levels of wave speed, steel, concrete and void, are in a RC component. Once the calculated wave speed is close to a specific level, its value is enforced to set as the specific wave speed of the type of medium.
[1]. Lo, Tien-when, and Philip, L. I., “Fundamentals of Seismic Tomography, Geophysical Monograph Series”, Society of Exploration Geophysicists, U.S.A, No. 6, pp. 1-44 (1994).
[2]. Rodan, J., “Uber die Bestimmung von funktionen durch ihre integralwerte langs gewisser Mannigfaltigkeiten”, Bu.Succhss. Akad. Leipzig, Math. Phys. K. 69, pp. 262 (1917).
[3]. 楊文采,地球物理反演的理論與方法,地質出版社,北京,第1-14頁,第112-130頁(1997)。
[4]. Bois, P., LaPorte, M., LaVergne, M., and Thomas, G., “Well-to-well Seismic Measurements”, Geophysics, Vol. 37, pp. 471-480 (1972).
[5]. Dines, K. A.., and Lytle, R. J., “Computerized Geophysical Tomography”, Proceedings of the IEEE, Vol. 67, No.7, pp. 1065-1073 (1979).
[6]. Gordon, R., “A tutorial on ART”, IEEE Transactions on Nuclear Science”, Vol. NS-21, pp. 78-93 (1974).
[7]. Bishop, T.N., Bube, K. P., Cutler, R. T., Langan, R. T., Love, P. L., Resnick, J. R., Shuey, R. T., Spindler, D. A., and Wyld, H. W., “Tomographic Determination of Velocity and Depth in Laterally Varying Media”, Geophysics, Vol. 50, pp. 903-923 (1985).
[8]. Moser, T.J., “Shortest Path Calculation of Seismic Rays”, Geophysic, Vol. 56, pp. 59-67 (1991).
[9]. Cardarelli, E., and Cerreto, A., “Ray Tracing in Elliptical Anisotropic Media Using The Linear Traveltime Interpolation (LTI) Method Applied to Traveltime Seismic Tomography”, Geophysical Prospecting, Vol. 50, pp.55-72 (2002).
[10]. Bates, R. H .T., and McDonnel, M. J., “Image Restoration and Reconstruction”, Oxford Univ. Press., U.K. (1989).
[11]. Matsuoka, T., Asakawa, E., and Kawanaka, T., “Forward Modeling for Ray Tomography”, Proceedings of SEGJ, pp. 148-156 (1990).
[12]. Asawaka, E., and Kawanaka, T., “Seismic Ray Tracing Using Linear Traveltime Interpolation”, Geophysical Prospecting, Vol. 41, pp. 99-111 (1993).
[13]. Zhao, P., “An Efficient Computer Program for Wavefront Calculation by the Finite-Difference Method”, Computers & Geosciences ,Vol. 22 , pp. 239-251 (1996).
[14]. Witte, O., Roth, M., and Müller, G., “Ray Tracing in Random Media”, Geophysical Journal International, Vol. 124, pp. 159-169 (1996).
[15]. Sethian, J. A. and Popovici, A. M., “3-D Traveltime Computation Using The Fast Marching Method”, Geophysics, Vol. 64, pp. 516-523 (1999).
[16]. Cardarelli, E., and Nardis, D. E., “Seismic Refraction, Isotropic Anisotropic Seismic Tomography on An Ancient Monument (Antonino and Faustina Temple AD 141)”, Geophysical Prospecting, Vol. 49, pp.228-240 (2001).
[17]. Heiskanen, K.A., Rhim, H. C., and Monteiro, P. J., “Computer Simulations of Limted Angle Tomography of Reinforced Concrete”, cement and Concrete Reasearch, Vol. 21, Iss.4, pp. 625-634 (1991).
[18]. Bishop, I., and Styles, P., “Seismic Tomographic Imaging of A Buried Concrete Target”, Geophysical Prospecting, Vol. 38, pp. 169-188 (1990).
[19]. Clayton, C.R.I., Hope, V. S., and Howe, S. J., “Comment on Seismic Tomographic Imaging of A Buried Concrete Target”, Geophysical Prospecting, Vol. 39, pp. 711-718 (1991).
[20]. Atkinson, R. H., Schuller, M. P., and Frank, D. A., “Acoustic Tomographic Studies of Reinforced Concrete”, Proceedings of 6th International Conference on Structural Faults and Repair-1995, pp. 39-42 (1995).
[21]. 黃界超,『斷層掃描法在土木結構之應用評估』,碩士論文,國 立中央大學土木工程研究所,桃園(1997)。
[22]. 紀聖威,『線性走時內差法於土木構件斷層掃描之應用』,碩士論文,國立中央大學土木工程研究所,桃園(1998)。
[23]. 高千平,『層析成像應用於透地雷達測勘之研究』,碩士論文,國立中央大學應用地質研究所,桃園(2001)。
[24]. 黃家凌,『三維計算斷層掃描之射線追蹤正算模式』,碩士論文,國立中央大學土木工程研究所,桃園(2000)。
[25]. 張益瑄,『三維線性走時內插法於土木構件斷層掃描之應用』, 碩士論文,國立中央大學土木工程研究所,桃園(2001)。
[26]. 楊政穎 ,『鋼筋混凝土構件斷層掃描之顯像處理』,碩士論文,國立中央大學土木工程研究所,桃園(2003)。
[27]. Stewart, R. R., “Exploration Seismic Tomography: Fundamentals, Course Notes Series”, Society of Exploration Geophysicists, Oklahoma, U.S.A., , Vol.3, pp. 1-1~pp.2-53 (1993).
[28]. Multimedia Pandora Inc., “Road Rader Investigation by Non-Destruction Methods”, Geophysique GPR International Inc., (2001).
[29]. Fratta, D., and Lestelle, M., “Testing a Concrete Specimen by Ultrasonic Pulse Velocity Measurement”, Louisiana State University, (2002).
[30]. 斐廣智,徐鴻發,林東威, “透地雷達檢測斷層影像處理技術之工程應用及實例”, The 12th TWNDT conference 2004, 第603-610頁(2004)。
[31]. Phillips, W. S., and Fehler, M. C., “Traveltime Tomography: A Comparison of Popular Method”, Geophysic, Vol. 56, pp.1639-1649 (1991).
[32]. Satio, H., “Traveltimes And Raypaths of First Arrival Seismic Waves: Computation Method Based on Huygens’s Principle”, 59th Ann. Internat. Mtg., Soc. Expl. Geophys., Expanded Abstracts, pp.244-247 (1989).
[33]. Morse, T. J., “Efficient Seismic Ray Tracing Using Graph Theory”, 59th Ann. Internat. Mtg., Soc. Expl. Geophys., Expanded Abstracts, pp.1106-1108 (1989).
[34]. Matsuoka, T., and Ezaka, T., “Ray Tracing Using Reciprocity”, Geophysic, Vol. 57, pp. 326-333 (1992).
[35]. Julian, B. R., and Gubblins, D., “Three-dimensional Seismic Ray Tracing”, J. Geophys. , Vol. 43, pp. 95-113 (1977).
[36] Pereyra, V., Lee, W. H. K., and Keller H. B., “Solving Two-point Seismic-ray Tracing Problems in Heterogeneous Medium”, B.S.S.A. ,70, 79-99 (1980).
[37]. Tanabe, K., “Projection Method for Solving A Singular System”, Numer. Math., Vol. 17, pp. 203-214 (1971).
[38] Valle, S., Zanzi, L., and Rocca, F., “Radar Tomography for NDT: Comparsion of Techniques”, Journal of Applied Geophysics, Vol. 41, pp. 259-269 (1999).
[39]. Chiu, S. K. L., Kanasewich, E. R., and Phadke, S., “Three-dimensional Determination of Structure And Velocity By Seismic Tomography”, Geophysic, Vol. 51, pp. 1559-1571 (1986).
[40]. 陸明萬,彈性力學基礎,清華大學出版社,北京,第564-592頁(1990)
[41]. Thurber, C. H. and Kissling, E., Advances in Three-Time Calculations for 3-D Structures, “Advances in Seismic Event Location”, Kluwer Academic Publishers, pp.71-99 (2000)
[42]. Davis, A. G., Ansari, F., Gaynor, R. D., Lozen, K. M., Rowe, T. J., Caratin, H., Heidbrink, F. D., Malhotra, V. M., Simons, B. P., Carino, N. J., Hertlein, B. H., Olson, L. D., Sullivan, Choi, K., Hindo, K. R., Pessiki, S. P., Suprenant, B. A., Clemena, G. G., Huyke, R., Popovics, S., Teodoru, G., Cumming, N. A., Jenkins, R. S., Poston, R. W., Vogt, W. L., Dilly, R. L., Leeman, M. E., Read, P. H., Zoob, A. B., Dixon, D. E., Leshchinsky, A., Roddis, W. M. K., Dragunsky, B., Lew, H. S., Sansalone, M. J., “Nondestructive Test Methods for Evaluation of Concrete in Structures”, ACI, ACI 228.2R-98.