• 제목/요약/키워드: Coupling Metric

검색결과 23건 처리시간 0.019초

Finite element models of reinforced ECC beams subjected to various cyclic deformation

  • Frank, Timothy E.;Lepech, Michael D.;Billington, Sarah L.
    • Computers and Concrete
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    • 제22권3호
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    • pp.305-317
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    • 2018
  • Steel reinforced Engineered Cementitious Composite (ECC) components have been proposed for seismic structural applications, for example in coupling beams, infill panels, joints, columns, and flexural members. The development of strain in the steel reinforcement of cementitious components has been shown to vary based on both the steel reinforcement ratio and the applied deformation history. Strain in the steel reinforcement of reinforced ECC components is an important structural response metric because ultimate failure is often by fracture of the steel reinforcement. A recently proposed bond-slip model has been successfully calibrated to cyclically tested reinforced ECC beams wherein the deformation history contained monotonically increasing cycles. This paper reports simulations of two-dimensional finite element models of reinforced ECC beams to determine the appropriateness and significance of altering a phenomenological bond-slip model based on the applied deformation history. The numerical simulations with various values of post-peak bond-slip softening stiffness are compared to experimental results. Varying the post-peak bond-slip softening stiffness had little effect on the cracking patterns and hysteretic response of the reinforced ECC flexural models tested, which consisted of two different steel reinforcement ratios subjected to two different deformation histories. Varying the post-peak bond-slip softening stiffness did, however, affect the magnitude of strain and the length of reinforcing bar that strain-hardened. Overall, a numerical model with a constant bond-slip model represented well various responses in reinforced ECC beams with multiple steel reinforcement ratios subjected to different deformation histories.

Prismatic-core advanced high temperature reactor and thermal energy storage coupled system - A preliminary design

  • Alameri, Saeed A.;King, Jeffrey C.;Alkaabi, Ahmed K.;Addad, Yacine
    • Nuclear Engineering and Technology
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    • 제52권2호
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    • pp.248-257
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    • 2020
  • This study presents an initial design for a novel system consisting in a coupled nuclear reactor and a phase change material-based thermal energy storage (TES) component, which acts as a buffer and regulator of heat transfer between the primary and secondary loops. The goal of this concept is to enhance the capacity factor of nuclear power plants (NPPs) in the case of high integration of renewable energy sources into the electric grid. Hence, this system could support in elevating the economics of NPPs in current competitive markets, especially with subsidized solar and wind energy sources, and relatively low oil and gas prices. Furthermore, utilizing a prismatic-core advanced high temperature reactor (PAHTR) cooled by a molten salt with a high melting point, have the potential in increasing the system efficiency due to its high operating temperature, and providing the baseline requirements for coupling other process heat applications. The present research studies the neutronics and thermal hydraulics (TH) of the PAHTR as well as TH calculations for the TES which consists of 300 blocks with a total heat storage capacity of 150 MWd. SERPENT Monte Carlo and MCNP5 codes carried out the neutronics analysis of the PAHTR which is sized to have a 5-year refueling cycle and rated power of 300 MWth. The PAHTR has 10 metric tons of heavy metal with 19.75 wt% enriched UO2 TRISO fuel, a hot clean excess reactivity and shutdown margin of $33.70 and -$115.68; respectively, negative temperature feedback coefficients, and an axial flux peaking factor of 1.68. Star-CCM + code predicted the correct convective heat transfer coefficient variations for both the reactor and the storage. TH analysis results show that the flow in the primary loop (in the reactor and TES) remains in the developing mixed convection regime while it reaches a fully developed flow in the secondary loop.

소프트웨어 품질 향상을 위한 리팩토링 효과 분석 : AIS 중개 서버 프로그램을 대상으로 (Refactoring Effectiveness Analysis for Software Quality Enhancement : using AIS Mediation Server Program)

  • 이서정;이재욱;황훈규;이장세
    • 한국항해항만학회지
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    • 제36권5호
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    • pp.363-370
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    • 2012
  • 최근 국제해사기구에서 추진하고 있는 e-navigation은 선박의 안전운항을 위한 다양한 서비스를 지향하고 있다. 이에 따라, 해양 분야에 다양한 소프트웨어 개발이 기대되고 있으며, 동시에 그 품질의 중요성이 높아지고 있다. 이 논문에서는 소프트웨어의 품질 향상의 실험을 위해, 기존 AIS중개서버 프로그램에 소프트웨어 리팩토링(refactoring) 기법을 적용하였으며, 그 효과를 분석하였다. 리팩토링은 소프트웨어를 소스 코드 수준에서 구조의 복잡성을 줄여서, 이해하기 쉽고 기능 변경이 용이한 상태로 변경하는 기법이다. 이를 통해, 겉으로 보이는 동작의 변화는 없이 내부구조가 변경된다. 리팩토링 적용 효과 분석을 위해서, IEC/ISO 9126 소프트웨어 품질표준의 유지보수성과 관련된 기존 메트릭의 산술적 측정기법을 도입했다.