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活动简介

The Asian pacific region is experiencing an unpreceded moment of economic expansion and urbanization. Engineers are expected to assure reliability and safety of infrastructures in an uncertain environment of increasing scale and increasing complexity. The proper design, construction, and maintance of the infrastractures is the key of the sustainable development of the region. Yet, either due to the inherent variability of the nature of due to our limitation in knowledge, the uncertainties in analysis, design, construction, and maintenance of infrastructures cannot be fully eliminated, posing substantial challenge to the reliability and safety of structures. In the past decades, great efforts have been exerted by both researchers and practitioners on how to design, construct, and maintain reliable structures. Relevant theories, methodologies, and tools have been developed to solve a large number problems. Nevertheless, assuring the reliability and safety of the infrasturactures in a realistic environment with increasing needs still seems to be challenging in many occasions. It is thus important to summreized what the profession has achieved, what is missing, and to identify what are to be further purse in the following two decades. This symposium aims to to provide an international forum for engineers, educators, researchers and practitioners to create a better understanding and vision about the current status and future of structural reliability and risk. The Asian-Pacific Symposium on Structural Reliability and its Applications (APSSRA) is held every four years in between ICASP and ICOSSAR. The first APSSRA was held in Tokyo, Japan in November 1995; the second in Taipei, Taiwan in February 1999; the third in Seoul, Korea in August 2004; the fourth in Hong Kong in June 2008, the fifth APSSRA in Singapore in May 2012, and the sixth will be held in 2016 in Shanghai, China with the following theme: Future structural safety and reliability: theories, methods, and tools.

征稿信息

重要日期

2015-11-30
初稿截稿日期

征稿范围

General Sessions

  • GS-1: Bayesian methods
  • GS-2: Bridge engineering
  • GS-3: Codified development and revision
  • GS-4: Earthquake engineering
  • GS-5: Geotechnical engineering
  • GS-6: Health monitoring and assessment
  • GS-7: Hydraulic engineering
  • GS-8: Life cycle analysis
  • GS-9: Offshore and marine structures
  • GS-10: Optimization under uncertainty
  • GS-11: Reliability-based design
  • GS-12: Reliability method
  • GS-13:Risk management and insurance
  • GS-14: Robust design
  • GS-15: Structural engineering
  • GS-16: Simulation methods
  • GS-17: Stochastic finite element method
  • GS-18: Software/ tools for reliability/risk assessment
  • GS-19: Structural health monitoring
  • GS-20: System identification
  • GS-21: System reliability
  • GS-22: Uncertainty characterization
  • GS-23: Underground Engineering Mini-symposia
  • MS-1: Epistemic uncertainties in engineering: modeling, methods and applications
  • MS-2: Spatial variability and random field
  • MS-3: Imprecise probabilities
  • MS-4: Reliability of large systems and structures
  • MS-5: Perception, calculation and communication of risk under high uncertainty
  • MS-6: Probabilistic slope stability analysis using Monte Carlo simulation
  • MS-7: Surrogate models for structural reliability analysis
  • MS-8: Uncertainty modeling & propagation in nonlinear stochastic dynamics: current status & future challenges
  • MS-9: Hazard, reliability and risk in geotechnical practice
  • MS-10: Application of surrogate models in geotechnical reliability analysis and design
  • MS-11: Numerical design for advanced engineering structures
  • MS-12: Risk assessment of complex infrastructure networks
  • MS-13: Reliability and performance-based design of complex structural systems
  • MS-14: Inverse problems in civil Engineering
  • MS-15: Uncertainty quantification and management in structural health monitoring
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重要日期
  • 会议日期

    05月28日

    2016

    05月30日

    2016

  • 11月30日 2015

    初稿截稿日期

  • 05月30日 2016

    注册截止日期

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