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Assessment and prediction for service life of water resources and hydropower engineering
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  • 作者:Huaizhi Su (1) (2)
    Jiang Hu (3)
    Men Yang (2)
    Zhiping Wen (4)

    1. State Key Laboratory of Hydrology-Water Resources and Hydraulic Engineering
    ; Hohai University ; Nanjing ; 210098 ; China
    2. College of Water Conservancy and Hydropower Engineering
    ; Hohai University ; Nanjing ; 210098 ; China
    3. National Engineering Research Center of Water Resources Efficient Utilization and Engineering Safety
    ; Nanjing ; 210098 ; China
    4. Department of Computer Engineering
    ; Nanjing Institute of Technology ; Nanjing ; 211167 ; China
  • 关键词:Water resources and hydropower engineering ; Service life ; Assessment criteria ; Prediction methodology
  • 刊名:Natural Hazards
  • 出版年:2015
  • 出版时间:February 2015
  • 年:2015
  • 卷:75
  • 期:3
  • 页码:3005-3019
  • 全文大小:307 KB
  • 参考文献:1. Antonov SS, Sudakov VB, Karavaev AV (1995) Criteria for evaluating the operational capability life of aging concrete dams. Hydrotech Constr 2:5鈥?
    2. Ardito R, Maier G, Massalongo G (2008) Diagnostic analysis of concrete dams based on seasonal hydrostatic loading. Eng Struct 30:3176鈥?185 CrossRef
    3. Baroghel-Bouny V, Nguyen TQ, Dangla P (2009) Assessment and prediction of RC structure service life by means of durability indicators and physical/chemical models. Cem Concr Compos 8:522鈥?34 CrossRef
    4. Barpi F, Imperato L, Valente S (1999) Lifetime of concrete dam models under constant loads. Mater Struct 2:103鈥?11 CrossRef
    5. Biondini F, Frangopol DM (2011) Life-cycle of civil engineering system. Struct Infrastruct Eng 1鈥?:1鈥? CrossRef
    6. Biondini F, Bontempi F, Frangopol DM, Malerba PG (2006) Probabilistic service life assessment and maintenance planning of concrete structures. J Struct Eng 5:810鈥?25 CrossRef
    7. Bolzon G (2010) Collapse mechanisms at the foundation interface of geometrically similar concrete gravity dams. Eng Struct 32:1304鈥?311 CrossRef
    8. Burman A, Maity D, Sreedeep S, Gogoi I (2009) The behavior of aged concrete gravity dam under the effect of isotropic degradation caused by hygro-chemo-mechanical actions. Int J Eng Stud 2:105鈥?22
    9. Cusson D, Lounis Z, Daigle L (2010) Benefits of internal curing on service life and life-cycle cost of high-performance concrete bridge decks鈥攁 case study. Cem Concr Compos 32:339鈥?50 CrossRef
    10. H. John Heinz III Center for Science, Economics and the Environment (2002) Dam removal: science and decision making. www.heinzctr.org
    11. Herrador MF, Mart铆nez-Abella F, Dopico JRR (2008) Experimental evaluation of expansive behavior of an old-aged ASR-affected dam concrete: methodology and application. Mater Struct 1:173鈥?88
    12. Jin XY, Gu XL (2009) Progress in research of concrete structures service life design. Mater China 11:26鈥?5
    13. Jonkman SN, Vrijling JK, Vrouwenvelder ACWM (2008) Methods for the estimation of loss of life due to floods: a literature review and a proposal for a new method. Nat Hazards 3:353鈥?89 CrossRef
    14. Laermann KH (2010) Assessment of structural integrity and durability鈥攁 task of experimental mechanics. Meccanica 45:167鈥?74 CrossRef
    15. Li QF, Cheng ZQ (2003) Prediction of the remaining life of concrete structures. J Zhengzhou Univ (Eng Sci) 1:11鈥?5
    16. Li DQ, Tang WY (2003) Prediction of service lifetime for existing hydraulic steel gate structures. J Yangtze River Sci Res Inst 4:24鈥?8
    17. Li JY, Xu WY (1999) Study on the mechanism of concrete destruction under frost action. J Hydraul Eng 1:41鈥?9
    18. Liu N (2004) Issues related to safety management, abandonment and construction of dams in 21st Century in China. China Water Resour 23:27鈥?0
    19. Liu X, Wu ZR, Yang Y, Hu J, Xu B (2012) Information fusion diagnosis and early-warning method for monitoring the long-term service safety of high dams. J Zhejiang Univ Sci A (Appl Phys Eng) 9:687鈥?99 CrossRef
    20. Maekawa K, Ishida T (2007) Computational life-cycle assessment of structural concrete subjected to coupled severe environment and mechanistic actions. In: Proceedings of the fifth international conference on concrete under severe conditions: environment and loading (CONSEC鈥?7), Tours, France, pp 3鈥?8
    21. Maes MA, Pandey MD, Nathwani JS (2003) Harmonizing structural safety levels with life quality objectives. Can J Civ Eng 3:500鈥?10 CrossRef
    22. Nathwani JS, Lind NC, Pandey MD (2008) The LQI standard of practice: optimizing engineered safety with the life quality index. Struct Infrastruct Eng 5:327鈥?34 CrossRef
    23. Okasha NM, Frangopol DM (2009) Lifetime-oriented multi-objective optimization of structural maintenance considering system reliability, redundancy and life-cycle cost using GA. Struct Saf 6:460鈥?74 CrossRef
    24. Orcesi AD, Frangopol DM (2011) Optimization of bridge maintenance strategies based on structural health monitoring information. Eng Struct 1:26鈥?1
    25. Ou YS, Ni BL (1999) Fracture mechanics-based preliminary study on analysis of fracture strength and service life for simply supported large reinforced concrete rectangular aqueduct bridges. Adv Sci Technol Water Resour 6:47鈥?0
    26. Qin Y, Gu Q (2010) Causes and necessity of reinforcement to gates with potential risks in China. Water Conserv Hydropower Proj Des 2:25鈥?7
    27. Rackwitz R, Joanni A (2009) Risk acceptance and maintenance optimization of aging civil engineering infrastructures. Struct Saf 3:251鈥?59 CrossRef
    28. Ren YS (2005) Study on estimation of remaining life of members of existing hydraulic steel gates. Eng J Wuhan Univ 6:62鈥?5
    29. Sanchez-Silva M, Klutke GA, Rosowsky DV (2011) Life-cycle performance of structures subject to multiple deterioration mechanisms. Struct Saf 3:206鈥?17 CrossRef
    30. Sarja A (1999) Towards life cycle oriented structural engineering, construction material: theory and application. Ibiidem-Verlag, Stuttgart
    31. Su HZ, Wen ZP, Hu J (2009) Evaluation model for service life of dam based on time-varying risk probability. Sci China Technol Sci 7:1966鈥?973 CrossRef
    32. Su HZ, Hu J, Wen ZP (2013a) Optimization of reinforcement strategies for dangerous dams considering time-average system failure probability and benefit-cost ratio using a life quality index. Nat Hazards 1:799鈥?17 CrossRef
    33. Su HZ, Hu J, Wen ZP (2013b) Service life predicting of dam systems with correlated failure modes. J Perform Constr Facil 3:252鈥?69 CrossRef
    34. Su HZ, Li JY, Cao JP, Wen ZP (2014) Macro-comprehensive evaluation method of high rock slope stability in hydropower projects. Stoch Env Res Risk A 2:213鈥?24 CrossRef
    35. Wang JT, Jin F, Zhang CH (2011) Seismic safety of arch dams with aging effects. Sci China Technol Sci 3:522鈥?30 CrossRef
    36. Wieland M, Brenner RP (2008) Life-span of concrete and embankment dams and economic benefits of dam safety projects. Chin J Geotech Eng 11:1692鈥?698
    37. Wu ZR (2005) Detection of hidden trouble and health diagnosis for important hydraulic concrete structures. Higher Education Press, Beijing
    38. Wu ZR, Gu CS (2005) Theory and method on life diagnosis in important hydraulic engineerings. Chin J Rock Mech Eng 17:3017鈥?022
    39. Wu ZR, Su HZ (2005) Diagnosis and evaluation of dam health. Smart Mater Struct 3:S130鈥揝136 CrossRef
    40. Wu ZR, Peng Y, Li ZC, Li B, Yu H, Zheng SR (2011) Commentary of research situation and innovation frontier in hydro-structure engineering science. Sci China Technol Sci 4:767鈥?80 CrossRef
    41. Wu ZR, Xu B, Gu CS, Li ZC (2012) Comprehensive evaluation methods for dam service status. Sci China Technol Sci 8:2300鈥?312 CrossRef
    42. Wu ZR, Li J, Gu CS, Su HZ (2007) Review on hidden trouble detection and health diagnosis of hydraulic concrete structures. Sci China Technol Sci 50(1):34鈥?0
    43. Yang SI, Frangopol DM, Kawakami Y, Neves LC (2006) The use of lifetime functions in the optimization of interventions on existing bridges considering maintenance and failure costs. Reliab Eng Syst Saf 9:698鈥?05 CrossRef
    44. Zhao SC, Zhao GF (2002) Optimum prediction of remaining service life of existing concrete structures. J Dalian Univ Technol 1:83鈥?8
    45. Zheng SR (2008) Discussion on design operation life of water resources and hydropower projects in China. Water Resour Power 4:1鈥?
    46. Zhong DH, Sun YF, Li MC (2011) Dam break threshold value and risk probability assessment for an earth dam. Nat Hazards 1:129鈥?47 CrossRef
  • 刊物类别:Earth and Environmental Science
  • 刊物主题:Earth sciences
    Hydrogeology
    Geophysics and Geodesy
    Geotechnical Engineering
    Civil Engineering
    Environmental Management
  • 出版者:Springer Netherlands
  • ISSN:1573-0840
文摘
There are a large number of in-service water resources and hydropower engineering in the aging stage. It is an urgent problem how to assess and predict service life of water resources and hydropower engineering. The related theory and method need to be proposed to improve the safety management level and make the reinforcing, removing or downgrading decisions. The current achievements in the research are reviewed. The assessment criteria and system are analyzed. The methodological progress for assessment and prediction of service life is summarized. The future development direction is stated. The key problems and their approaches are related and analyzed. It is shown that the assessment and prediction for service life of water resources and hydropower engineering is a comprehensive research topic. To solve the problems in above field, it is necessary to integrate many theories, methods and techniques in other fields such as water resources and hydropower engineering, geotechnical engineering, construction materials, environmental engineering, cybernetics and computer engineering.

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