| 研究生: |
李奇瑋 Chi-Wei Li |
|---|---|
| 論文名稱: |
反覆載重下鋪面之車轍損傷評估 Damage assessment for pavement under repeated loads |
| 指導教授: |
張瑞宏
Jui-Hung Chang |
| 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: | 95 |
| 語文別: | 中文 |
| 論文頁數: | 88 |
| 中文關鍵詞: | 三維有限元素法 、車轍 、疲勞開裂 、反覆載重 、永久變位 |
| 外文關鍵詞: | repeated loading, three-dimensional finite element, permanent deformation, fatigue cracking, rutting |
| 相關次數: | 點閱:14 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 |
台灣道路一般以柔性鋪面為主,由材料試驗可知,回彈模數會受到反覆載重的影響,因此本研究採用三維有限元素法來探討柔性鋪面承受反覆載重作用下,鋪面的車轍與疲勞之損傷評估。研究中考慮覆土應力、不同胎壓、軸重與含水量,利用材料試體試驗所得之回彈模數值,配合 AASHTO 2002 鋪面成效回歸式來評估其受反覆載重後,鋪面損傷程度。
研究結果顯示,在鋪面結構分析的部份,路基土壤含水量增加時,對鋪面結構的影響也相對增加;在軸重、胎壓與含水量同時增加的情況下,對鋪面之影響,會比單一增加下影響來的大。在鋪面損傷分析的部份,鋪面的損傷會隨著反覆載重次數、胎壓、軸重及路基土壤含水量的增加而增加。
Flexible pavement under repeated loads is an important factor in design pavements. According to material experiments, resilient modulus is affected by repeated traffic loads. In this study, a series of three-dimensional finite element analyses is performed to study the damage of pavement caused by rutting and fatigue, with the pavement subjected to repeated loads. The damage of pavement is evaluated by considering various wheel loads, various inflation pressures, moisture content in soil, the body force of pavement, resilient modulus obtained from the material experiments, and AASHTO 2002 Design Guide.
The results indicate that the more moisture the subgrade soil possesses, the larger influence the pavement structure is affected. The effect of pavement is larger when wheel load and inflation pressure increase at the same time. The damage of pavement increases while repeated loading, wheel loads, inflation pressures, and moisture contents in subgrade soils increase.
[1]. Huang, Y. H., Pavement Analysis And Design, Prentice Hall, Englewood Cliffs, N. J., (1993)
[2]. 楊樹榮,「路基土壤之不飽和吸力特性及反覆載重下之力學行為」,國立中央大學土木工程研究所,博士論文,桃園(2005) 。
[3]. Asphalt Institute, Thickness Design - Asphalt Pavement for Highways and Streets, Ninth, Manual Series No.1 (MS-1), The Asphalt Institute (1981).
[4]. Hudson, S. W., and Seeds, S.B., “Evaluation of increased pavement loading and tire pressures ,” Transportation Research Record, Vol. 1207, pp. 197-206 (1988).
[5]. Sebaaly, P. E., and Tabatabaee, N., “Effect of tire parameters on pavement damage and load-equivalency factors ,” Journal of Transportation Engineering, ASCE, Vol. 118, No. 6, pp. 805-819 (1993).
[6]. Shell, Shell Pavement Design Manual- Asphalt pavements and Overlays for Road Traffic, Shell International Petroleum, London (1978).
[7]. Barker, W.R. and Brabston W.N., Development of a Structural Design Procedure for Flexible Airport Pavement, FAA Report No. FAA-RD-74-199, U.S. Army Corps of Engineers Waterways Experiment Station, Federal Aviation Administration (1974).
[8]. Harichandran, R.S., Buch, N. and Baladi, G. T. (2001), “Flexible Pavement design in Michigan - Transition from Empirical to Mechanistic Methods, ” Transportation Research Record, Vol. 1778, pp.100-106.
[9]. http://www.trb.org/mepdg,Transportation Research Board (2002) .
[10].林宗賢,「重車與環境因素對柔性鋪面的影響」,國立中央大學土木工程研究所,碩士論文,桃園(2003)。
[11]. Kim, O. K., Bell, C. A., and Wilson, J. E., “Effect of increased truck tire pressure on asphalt concrete pavement,” Journal of Transportation Engineering, ASCE, Vol. 115, No. 4, pp. 329-350 (1989).
[12].廖溪坤,「材料對石膠泥瀝青混凝土成效特性影響之研究」,碩士論文,國立中央大學土木工程研究所,桃園(1999)。
[13].吳俊杰,「礦物添加物對石膠泥瀝青混凝土疲勞行為之影響」,碩士論文,國立中興大學土木工程研究所,臺中(1999)。
[14].張永生,「柔性鋪面之績效評估與非均佈荷重效應」,國立中央大學土木工程研究所,碩士論文,桃園(2002)。
[15].陳一昌、吳學禮、房性中,「中山高速公路新竹至員林段拓寬工程柔性路面厚度設計研討」,1995年中美斐柔性路面厚度設計研討會專輯(二),台北(1995)
[16].黃琇雯,「路基土壤含水量變化對鋪面永久變形分析之探討」,國立中央大學土木工程研究所,碩士論文,桃園(2003)。
[17].李旻霖,「柔性鋪面承載之非線性分析」,國立中央大學土木工程研究所,碩士論文,桃園(2003)。
[18].李勝雄,「鋪面材料回彈行為於車轍與疲勞破壞之影響評估」,國立中央大學土木工程研究所,碩士論文,桃園(2004)。
[19]. Quintus, H.V., and Killingsworth, B., Analyses relating to pavement material characterizations and their effects on pavement performance, Report No. FHWA-RD-97-085, Federal Highway Administration (1998).
[20].International Union of Railways, Question 71, Stresses in the rails, the ballast and in the formation resulting from traffic loads, In repeated loading of clay and track foundation design. IUR Office for Research and Experiments, Utrecht, Report 12, pp.45 (1970).
[21].Makiuchi, K., and Shackel, B, “Soil characterization using a repeated loading cubical triaxial apparatus,” Proceedings, 8th Australian Road Research Board Conference, Vol. 8 No. 7, pp. 22-29 (1976).
[22].Li, J., and Qubain, B.S., “Resilient modulus variations with water content,” ASTM Special Technical, Vol. 1437, pp. 59-69 (2002).
[23].張廖年禧,「國道高速公路鋪設石膠泥及排水性瀝青混凝土成效之研究」,國立中央大學土木工程研究所,碩士論文,桃園(2004)。
[24]. Moghaddas-Nejad F, and Small JC, “Resilient and permanent granular materials by repeated load triaxil tests,” ASTM Geotechnical Testing Journal, Vol. 26 No. 2, pp. 59-69 (2003).
[25].宋侑玲,「重載交通荷重對路面損壞分析模式之建立」,國立中央大學土木工程研究所,碩士論文,桃園(2003)。
[26].雷楊中,「焚化爐底碴應用於道路工程之研究」,國立中央大學土木工程研究所,碩士論文,桃園(2004)。