• 제목/요약/키워드: analytical properties

검색결과 1,563건 처리시간 0.028초

지반내 자연대류에 대한 수치해석적 논의 (Numerical Discussion on Natural Convection in Soils)

  • 신호성
    • 한국지반공학회논문집
    • /
    • 제33권2호
    • /
    • pp.35-47
    • /
    • 2017
  • 지반의 열적 거동은 대부분 열전도에 국한되어 연구가 진행되었으며, 자연대류 현상에 대한 연구는 매우 미비한 실정이다. 지반의 온도증가는 간극수의 밀도변화에 따른 부력을 유발하여 자연대류를 발생시키게 된다. 유체역학 관점에서 다공질 재료내의 자연대류 해석의 제약조건에 대하여 논의하고, 거시적 관점에서 완전 결합된 열-수리-역학적인 지배방정식을 이용한 대류현상에 대한 수치해석 기법을 제시하였다. 실내 열전도도 측정을 위한 탐침기 실험에 대한 수치실험은 자연대류를 무시하고 평가된 열전도도의 불확실성에 대하여 논의하고, 모델식과의 오류를 최소화하기 위한 적정한 실험조건을 제시하였다. 해저 전력선의 매설은 해저면 0.2m 깊이에서의 온도상승을 $2^{\circ}C$로 제한하고 있으나, 투수성이 큰 지반재료에 대한 수치해석결과는 기준온도를 초과하는 것으로 나타났다. 해저면의 온도와 열-수리-역학적 물성은 전력선의 매설설계에 중요한 설계인자이며 자연대류의 영향을 고려하여야 한다. 특히, 큰 투수성을 갖는 지반내에 열원이 존재하는 경우, 간극수의 밀도변화에 따른 자연대류가 중요한 열전달의 인자가 되므로 이를 고려한 해석을 수행하여야 한다.

KARI 축소 로터 시험장치(GSRTS) 구조해석 (Structural Analysis of KARI General Small-scaled Rotor Test System (GSRTS))

  • 김덕관
    • 항공우주기술
    • /
    • 제7권1호
    • /
    • pp.15-23
    • /
    • 2008
  • 본 논문은 항우연에서 운용 중에 있는 축소 로터 시험장치(General Small-scaled Rotor Test System, GSRTS)에 대한 구조 안전성 확보를 위한 구조해석 수행 결과를 제시하고 있다. 프루드(froude) 축소 및 마하(mach) 축소 시험을 수행하고, 관절형 및 무힌지 로터 등 다양한 로터 시스템 적용을 위해서는 시험장치의 안전성 확보와 운용상의 능력 범위를 확인하기 위해 로터 운용 조건에서 나오는 기준하중을 이용하여 구조 안전계수를 산출하였다. 특히, 구동계통(drive system)은 베어링 및 기어, 축 등으로 구성되어 있어 운용상의 안전성 확보가 우선적으로 요구되는 필수 항목이다. 구조해석은 구동계통의 기본 부품의 형상 및 재료 물성치를 이용하여 해석적 방법으로 구하였다. 본 로터 시험장치는 설계된 안전계수 안에서 운용을 해야 하며, 향후 KUH 축소 품동모델 시험을 적용할 때도 하중계산을 통해서 시험시 운용조건의 범위를 정해야한다.

  • PDF

Transmission of ultrasonic guided wave for damage detection in welded steel plate structures

  • Liu, Xinpei;Uy, Brian;Mukherjee, Abhijit
    • Steel and Composite Structures
    • /
    • 제33권3호
    • /
    • pp.445-461
    • /
    • 2019
  • The ultrasonic guided wave-based technique has become one of the most promising methods in non-destructive evaluation and structural health monitoring, because of its advantages of large area inspection, evaluating inaccessible areas on the structure and high sensitivity to small damage. To further advance the development of damage detection technologies using ultrasonic guided waves for the inspection of welded components in structures, the transmission characteristics of the ultrasonic guided waves propagating through welded joints with various types of defects or damage in steel plates are studied and presented in this paper. A three-dimensional (3D) finite element (FE) model considering the different material properties of the mild steel, high strength steel and austenitic stainless steel plates and their corresponding welded joints as well as the interaction condition of the steel plate and welded joint, is developed. The FE model is validated against analytical solutions and experimental results reported in the literature and is demonstrated to be capable of providing a reliable prediction on the features of ultrasonic guided wave propagating through steel plates with welded joints and interacting with defects. Mode conversion and scattering analysis of guided waves transmitted through the different types of weld defects in steel plates are performed by using the validated FE model. Parametric studies are undertaken to elucidate the effects of several basic parameters for various types of weld defects on the transmission performance of guided waves. The findings of this research can provide a better understanding of the transmission behaviour of ultrasonic guided waves propagating through welded joints with defects. The method could be used for improving the performance of guided wave damage detection methods.

6-Sigma 측정법에 의한 립스틱의 광택 및 광택지속성 영향인자의 분석 (An Analysis of the Gloss & Gloss-lasting Capability Factors of Lipstick by the Six-Sigma Measurement Tools)

  • 김경남;김윤정;이화영;김은정;천지민;강학희;이옥섭
    • 대한화장품학회지
    • /
    • 제31권4호
    • /
    • pp.285-287
    • /
    • 2005
  • 주관적인 관능평가와 밀접한 관계가 있었던 표준화된 측정법을 이용하여 립스틱에서의 광택 및 광택지속성의 영향인자를 도출하였고 이를 분석하였다. 일부인자들을 분석하면서 립스틱의 광택에 영향을 주는 인자로서 스틱경도, 휘발성 실리콘 오일의 양, 왁스의 종류 등이 유효한 인자로 도출할 수 있었다. 그리고 립스틱의 광택지속성에서는 주요인자로 휘발성 실리콘 오일의 양, 스틱경도, 폴리머의 함량 등을 도출할 수 있었다. 이러한 결과는 립스틱의 일반적인 특성에 대해서 6-Sigma라는 새로운 분석기법을 이용하여 분석하는데 성공하였으며, 본 연구를 통하여 광택을 향상시키는 제품을 설계하는데 초석이 될 것이다.

소프트웨어 모듈 심각도 측정을 위한 메트릭 집합 (A Metrics Set for Measuring Software Module Severity)

  • 홍의석
    • 한국컴퓨터정보학회논문지
    • /
    • 제20권1호
    • /
    • pp.197-206
    • /
    • 2015
  • 모든 소프트웨어 결함들이 시스템에 같은 정도의 영향을 미치는 것이 아니므로 결함이 미치는 충격의 정도를 나타내는 결함 심각도는 소프트웨어 품질 관련 작업들에 중요한 역할을 하고 있다. 결함 심각도 관련 기존 연구들은 심각도 레벨은 정의하였지만 품질 작업의 기본 단위인 모듈의 심각도에 관한 언급은 거의 없었다. 본 논문에서는 심각도 레벨이 증가함에 따라 심각도 값이 급격히 증가하는 심각도 성질을 이용하여 결함 심각도 메트릭을 지수 함수 형태로 정의한 후, 모듈 내부의 결함 수와 결함 심각도 메트릭에 기반한 새로운 모듈 심각도 메트릭 집합을 정의하였다. 제안 메트릭들의 적용가능성을 보이기 위해 Weyuker 기준들을 이용한 분석적 검증과 NASA 공개 데이터 집합을 이용한 실험적 검증을 수행하였으며, 제안 메트릭들 중 ms는 모듈의 심각도 정량화에, msd는 심각도에 기반한 시스템간의 비교에 매우 유용하게 사용될 수 있다는 것을 보였다.

Analytical study of bending and free vibration responses of functionally graded beams resting on elastic foundation

  • Chaabane, Lynda Amel;Bourada, Fouad;Sekkal, Mohamed;Zerouati, Sara;Zaoui, Fatima Zohra;Tounsi, Abdeldjebbar;Derras, Abdelhak;Bousahla, Abdelmoumen Anis;Tounsi, Abdelouahed
    • Structural Engineering and Mechanics
    • /
    • 제71권2호
    • /
    • pp.185-196
    • /
    • 2019
  • In this investigation, study of the static and dynamic behaviors of functionally graded beams (FGB) is presented using a hyperbolic shear deformation theory (HySDT). The simply supported FG-beam is resting on the elastic foundation (Winkler-Pasternak types). The properties of the FG-beam vary according to exponential (E-FGB) and power-law (P-FGB) distributions. The governing equations are determined via Hamilton's principle and solved by using Navier's method. To show the accuracy of this model (HySDT), the current results are compared with those available in the literature. Also, various numerical results are discussed to show the influence of the variation of the volume fraction of the materials, the power index, the slenderness ratio and the effect of Winkler spring constant on the fundamental frequency, center deflection, normal and shear stress of FG-beam.

Analysis of critical fluid velocity and heat transfer in temperature-dependent nanocomposite pipes conveying nanofluid subjected to heat generation, conduction, convection and magnetic field

  • Fakhar, Mohammad Hosein;Fakhar, Ahmad;Tabatabaei, Hamidreza
    • Steel and Composite Structures
    • /
    • 제30권3호
    • /
    • pp.281-292
    • /
    • 2019
  • In this paper, analysis of critical fluid velocity and heat transfer in the nanocomposite pipes conveying nanofluid is presented. The pipe is reinforced by carbon nanotubes (CNTs) and the fluid is mixed by $AL_2O_3$ nanoparticles. The material properties of the nanocomposite pipe and nanofluid are considered temperature-dependent and the structure is subjected to magnetic field. The forces of fluid viscosity and turbulent pressure are obtained using momentum equations of fluid. Based on energy balance, the convection of inner and outer fluids, conduction of pipe and heat generation are considered. For mathematical modeling of the nanocomposite pipes, the first order shear deformation theory (FSDT) and energy method are used. Utilizing the Lagrange method, the coupled pipe-nanofluid motion equations are derived. Applying a semi-analytical method, the motion equations are solved for obtaining the critical fluid velocity and critical Reynolds and Nusselt numbers. The effects of CNTs volume percent, $AL_2O_3$ nanoparticles volume percent, length to radius ratio of the pipe and shell surface roughness were shown on the critical fluid velocity, critical Reynolds and Nusselt numbers. The results are validated with other published work which shows the accuracy of obtained results of this work. Numerical results indicate that for heat generation of $Q=10MW/m^3$, adding 6% $AL_2O_3$ nanoparticles to the fluid increases 20% the critical fluid velocity and 15% the Nusselt number which can be useful for heat exchangers.

Application of nonlocal elasticity theory on the wave propagation of flexoelectric functionally graded (FG) timoshenko nano-beams considering surface effects and residual surface stress

  • Arani, Ali Ghorbanpour;Pourjamshidian, Mahmoud;Arefi, Mohammad;Arani, M.R. Ghorbanpour
    • Smart Structures and Systems
    • /
    • 제23권2호
    • /
    • pp.141-153
    • /
    • 2019
  • This research deals with wave propagation of the functionally graded (FG) nano-beams based on the nonlocal elasticity theory considering surface and flexoelectric effects. The FG nano-beam is resting in Winkler-Pasternak foundation. It is assumed that the material properties of the nano-beam changes continuously along the thickness direction according to simple power-law form. In order to include coupling of strain gradients and electrical polarizations in governing equations of motion, the nonlocal non-classical nano-beam model containg flexoelectric effect is used. Also, the effects of surface elasticity, dielectricity and piezoelectricity as well as bulk flexoelectricity are all taken into consideration. The governing equations of motion are derived using Hamilton principle based on first shear deformation beam theory (FSDBT) and also considering residual surface stresses. The analytical method is used to calculate phase velocity of wave propagation in FG nano-beam as well as cut-off frequency. After verification with validated reference, comprehensive numerical results are presented to investigate the influence of important parameters such as flexoelectric coefficients of the surface, bulk and residual surface stresses, Winkler and shear coefficients of foundation, power gradient index of FG material, and geometric dimensions on the wave propagation characteristics of FG nano-beam. The numerical results indicate that considering surface effects/flexoelectric property caused phase velocity increases/decreases in low wave number range, respectively. The influences of aforementioned parameters on the occurrence cut-off frequency point are very small.

1H-NMR-Based Metabolic Profiling of Cordyceps militaris to Correlate the Development Process and Anti-Cancer Effect

  • Oh, Junsang;Choi, Eunhyun;Yoon, Deok-Hyo;Park, Tae-Yong;Shrestha, Bhushan;Choi, Hyung-Kyoon;Sung, Gi-Ho
    • Journal of Microbiology and Biotechnology
    • /
    • 제29권8호
    • /
    • pp.1212-1220
    • /
    • 2019
  • The study of metabolomics in natural products using the diverse analytical instruments including GC-MS, LC-MS, and NMR is useful for the exploration of physiological and biological effects and the investigation of drug discovery and health functional foods. Cordyceps militaris has been very attractive to natural medicine as a traditional Chinese medicine, due to its various bioactive properties including anti-cancer and anti-oxidant effects. In this study, we analyzed the metabolite profile in 50% ethanol extracts of C. militaris fruit bodies from three development periods (growth period, matured period, and aging period) using $^1H-NMR$, and identified 44 metabolites, which are classified as 16 amino acids, 10 organic acids, 5 carbohydrates, 3 nucleotide derivatives, and 10 other compounds. Among the three development periods of the C. militaris fruit body, the aging period showed significantly higher levels of metabolites including cordycepin, mannitol (cordycepic acid), and ${\beta}-glucan$. Interestingly, these bioactive metabolites are positively correlated with antitumor growth effect; the extract of the aging period showed significant inhibition of HepG2 hepatic cancer cell proliferation. These results showed that the aging period during the development of C. militaris fruit bodies was more highly enriched with bioactive metabolites that are associated with cancer cell growth inhibition.

Computational optimized finite element modelling of mechanical interaction of concrete with fiber reinforced polymer

  • Arani, Khosro Shahpoori;Zandi, Yousef;Pham, Binh Thai;Mu'azu, M.A.;Katebi, Javad;Mohammadhassani, Mohammad;Khalafi, Seyedamirhesam;Mohamad, Edy Tonnizam;Wakil, Karzan;Khorami, Majid
    • Computers and Concrete
    • /
    • 제23권1호
    • /
    • pp.61-68
    • /
    • 2019
  • This paper presents a computational rational model to predict the ultimate and optimized load capacity of reinforced concrete (RC) beams strengthened by a combination of longitudinal and transverse fiber reinforced polymer (FRP) composite plates/sheets (flexure and shear strengthening system). Several experimental and analytical studies on the confinement effect and failure mechanisms of fiber reinforced polymer (FRP) wrapped columns have been conducted over recent years. Although typical axial members are large-scale square/rectangular reinforced concrete (RC) columns in practice, the majority of such studies have concentrated on the behavior of small-scale circular concrete specimens. A high performance concrete, known as polymer concrete, made up of natural aggregates and an orthophthalic polyester binder, reinforced with non-metallic bars (glass reinforced polymer) has been studied. The material is described at micro and macro level, presenting the key physical and mechanical properties using different experimental techniques. Furthermore, a full description of non-metallic bars is presented to evaluate its structural expectancies, embedded in the polymer concrete matrix. In this paper, the mechanism of mechanical interaction of smooth and lugged FRP rods with concrete is presented. A general modeling and application of various elements are demonstrated. The contact parameters are defined and the procedures of calculation and evaluation of contact parameters are introduced. The method of calibration of the calculated parameters is presented. Finally, the numerical results are obtained for different bond parameters which show a good agreement with experimental results reported in literature.