• Title/Summary/Keyword: numerical calibration

검색결과 245건 처리시간 0.035초

Field measurement and numerical simulation of excavation damaged zone in a 2000 m-deep cavern

  • Zhang, Yuting;Ding, Xiuli;Huang, Shuling;Qin, Yang;Li, Peng;Li, Yujie
    • Geomechanics and Engineering
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    • 제16권4호
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    • pp.399-413
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    • 2018
  • This paper addresses the issue of field measurement of excavation damage zone (EDZ) and its numerical simulation method considering both excavation unloading and blasting load effects. Firstly, a 2000 m-deep rock cavern in China is focused. A detailed analysis is conducted on the field measurement data regarding the mechanical response of rock masses subjected to excavation and blasting operation. The extent of EDZ is revealed 3.6 m-4.0 m, accounting for 28.6% of the cavern span, so it is significantly larger than rock caverns at conventional overburden depth. The rock mass mechanical response subjected to excavation and blasting is time-independent. Afterwards, based on findings of the field measurement data, a numerical evaluation method for EDZ determination considering both excavation unloading and blasting load effects is presented. The basic idea and general procedures are illustrated. It features a calibration operation of damage constant, which is defined in an elasto-plastic damage constitutive model, and a regression process of blasting load using field blasting vibration monitoring data. The numerical simulation results are basically consistent with the field measurement results. Further, some issues regarding the blasting loads, applicability of proposed numerical method, and some other factors are discussed. In conclusion, the field measurement data collected from the 2000 m-deep rock cavern and the corresponding findings will broaden the understanding of tunnel behavior subjected to excavation and blasting at great depth. Meanwhile, the presented numerical simulation method for EDZ determination considering both excavation unloading and blasting load effects can be used to evaluate rock caverns with similar characteristics.

조립재료에 대한 MD 구성모델 캘리브레이션 연구 (A Study of MD Constitutive Model Calibration for Coarse-grained Soils)

  • 최창호;신동훈
    • 한국지반신소재학회논문집
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    • 제12권1호
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    • pp.63-72
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    • 2013
  • 필댐의 안정성은 댐 축조시 주재료로 활용되는 조립재료인 암석존(rock zone)의 공학적 거동에 의존하므로 조립재료인 rockfill 재료의 전단강도 뿐만 아니라 하중-변형 특성(stress-strain characteristics)을 보다 정확히 이해하여야 한다. 또한, 댐 제체의 거동을 예측하고 수치해석적으로 분석하기 위해서는 조립재료의 거동을 모사하기에 적합한 구성모델을 활용하기 위한 물성값 분석 및 모델 파라미터의 캘리브레이션 연구가 필요하다. 본 논문에서는 부항댐 제체 재료에 대한 대형삼축압축 실험결과를 분석하고 이를 기반으로 조립재료에 대한 구성모델 파라미터들을 분석하였다. 부항댐 제체 재료를 고밀도와 저밀도로 구분하여 시료를 제작하고 다양한 구속압으로 수행된 실험결과와 캘리브레이션 된 구성모델 시물레이션 결과를 상호 비교한 결과 MD 모델이 조립재료의 응력-변형률 거동을 효과적으로 모사할 수 있음을 파악하였다.

에어챔버가 설치된 가압펌프 계통에서의 수격현상 (Water Hammer in the Pump Pipeline System with an Air Chamber)

  • 김상균;이계복
    • 에너지공학
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    • 제16권4호
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    • pp.187-193
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    • 2007
  • 갑작스런 펌프 정지로 야기되는 수격현상은 과압이나 부압을 일으킬 수 있다. 과압을 줄이거나 부압을 방지하는 것은 계통설비의 피로를 피하고 작동효율을 향상시키기 위해 필요하다. 에어챔버가 설치된 펌프 관로 계에서 수격현상에 대한 현장시험을 수행하였다 또한 특성 곡선법을 사용하여 과도현상에 대한 수치해석을 수행하였다. 계통에 대한 헌장시험과 수치해석 결과를 비교하여 수치해석코드에 사용되는 주요 입력변수인 폴리트로픽 지수, 유량계수, 압력파의 속도에 대한 보정값 검증과 민감도 분석을 수행하였다. 수격현상을 최소화할 수 있는 에어챔버의 크기와 관련 변수의 영향이 현장시험과 수치해석을 통해 연구되었다.

고 에너지 광자선의 표준측정법에 대한 선량 교정 프로그램 개발 (Development of a Dose Calibration Program for Various Dosimetry Protocols in High Energy Photon Beams)

  • 신동오;박성용;지영훈;이창건;서태석;권수일;안희경;강진오;홍성언
    • Radiation Oncology Journal
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    • 제20권4호
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    • pp.381-390
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    • 2002
  • 목적 : 고 에너지 광자선에 대한 기준점에서의 물 흡수선량 계산을 절차상 또는 계산상의 오류를 피하기 위해 공기커마(혹은 조사선량) 교정정수에 토대를 두고 있는 IAEA TRS-277과 AAPM TG-21 및 최근 발표된 새로운 개념의 물 흡수선량 교정정수에 토대를 두고 있는 IAEA TRS-398과 AAPM TG-51 표준측정법에 기초한 고 에너지 광자선의 선량 교정 프로그램을 개발하고자 한다. 대상 및 방법 : 현재 국내외에서 널리 사용되고 있는 고 에너지 광자선에 대한 흡수선량 표준측정법은 IAEA TRS-277과 AAPM TG-21로서 공기커마(혹은 조사선량) 교정정수에 토대를 두고 있어 수식 체계가 복잡하고, 사용된 물리량에 대한 불확정도가 커서 선량측정의 정확성을 향상시키는데 한계가 있다. 최근 국제원자력기구와 미국의학물리학회에서는 새로운 개념의 물 흡수선량 교정정수에 토대를 두고 있는 IAEA TRS-398과 AAPM TG-51을 발표하였다. 개발된 네 종류의 선량 교정 프로그램은 이들 표준측정법에서 사용되고 있는 수식체계와 물리적인 매개변수를 엄격하게 적용하였고, 선량계에 대한 정보 및 물리적인 값에 대한 표와 그래프 값은 수치화하여 데이터베이스화하였다. 이들 프로그램은 윈도우 환경에서 사용이 용이하도록 비쥬얼 $C^{++}$ 언어를 사용하여 각각의 표준측정법에서 권고하고 있는 방법 및 절차에 따라 사용자의 편의성을 고려하여 개발하였다. 결과 : 네 종류의 표준측정법에 대하여 개발된 고 에너지 광자선에 대한 선량 교정 프로그램은 사용자가 병원에서 사용하고 있는 표준측정법을 선택하여 선량측정 절차에 따라 선량계, 선질 특성 및 측정 조건에 관한 정보와 측정 결과를 입력하고, 순차적으로 수행하도록 되어 있어 절차상 혹은 선량 계산에 있어서 사용자간의 오차 및 실수를 최소화할 수 있었다 또한 서로 다른 개념의 네 종류의 표준측정법에 대한 기준점에서의 선량값을 상호 비교할 수 있었다. 결론 : 이 프로그램은 이온함에 대한 정보와 물리적인 자료에 대한 표와 그래프 값들을 수식화하여 데이터베이스함으로써 수작업으로 각 프로토콜의 수행 절차상 혹은 사용자간의 발생할 수 있는 개인적인 실수 및 오차를 줄일 수 있었다. 또한 이 프로그램은 사용자 편의성을 고려하였고, 모든 보정계수와 물흡수선량을 정확하게 계산할 수 있기 때문에 각 표준측정법에 대한 주요한 차이점을 비교 분석할 수 있어 사용자가 적당한 표준측정법을 선택하여 수행하므로써 고 에너지 광자선 선량 교정에 이용시 매우 유익할 것으로 사료된다.

A CFD approach to rubble mound breakwater design

  • Dentale, Fabio;Reale, Ferdinando;Di Leo, Angela;Carratelli, Eugenio Pugliese
    • International Journal of Naval Architecture and Ocean Engineering
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    • 제10권5호
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    • pp.644-650
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    • 2018
  • The paper provides some developments of a numerical approach ("Numerical Calculation of Flow Within Armour Units", FWAU) to the design of rubble mound breakwaters. The hydrodynamics of wave induced flow within the interstices of concrete blocks is simulated by making use of advanced, but well tested, CFD techniques to integrate RANS equations. While computationally very heavy, FWAU is gaining ground, due to its obvious advantages over the "porous media", i.e. the possibility of accounting for the highly non stationary effects, the reduced need of ad hoc calibration of filtration parameters and also - in perspective - the evaluation of hydrodynamic forces on single blocks. FWAU however is a complex technique, and in order to turn it into a practical design tool, a number of difficulties have to be overcome. The paper presents recent results about this validation, as well as insight into fluid dynamical aspects.

Determination of plastic concrete behavior at different strain rates to determine Cowper-Symonds constant for numerical modeling

  • Nateghi, Reza;Goshtasbi, Kamran;Nejati, Hamid Reza
    • Computers and Concrete
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    • 제26권3호
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    • pp.227-237
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    • 2020
  • Strain rate investigations are needed to calibrate strain-rate-dependent material models and numerical codes. An appropriate material model, which considers the rate effects, need to be used for proper numerical modeling. The plastic concrete cut-off wall is a special underground structure that acts as a barrier to stop or reduce the groundwater flow. These structures might be subjected to different dynamic loads, especially earthquake. Deformability of a structure subjected to dynamic loads is a principal issue which need to be undertaken during the design phase of these structures. The characterization of plastic concrete behavior under different strain rates is essential for proper designing of cut-off walls subjected to dynamic loads. The Cowper-Symonds model, as one of the most commonly applied material models, complies well with the behavior of a plastic concretes in low to moderate strain rates and will be useful in explicit dynamics simulations. This paper aims to present the results of an experimental study on mechanical responses of one of the most useful types of plastic concrete and Cowper-Symonds constant determination procedures in a wide range of strain rate from 0.0005 to 107 (1/s). For this purpose, SHPB, uniaxial, and triaxial compression tests were done on plastic concrete samples. Based on the results of quasi-static and dynamic tests, the dynamic increase factors (DIF) of this material in different strain rates and stress state conditions were determined for calibration of the Cowper - Symonds material models.

3D numerical investigation of segmental tunnels performance crossing a dip-slip fault

  • Zaheri, Milad;Ranjbarnia, Masoud;Dias, Daniel
    • Geomechanics and Engineering
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    • 제23권4호
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    • pp.351-364
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    • 2020
  • This paper numerically investigates the effects of a dip-slip fault (a normal or a reverse fault) movement on a segmental tunnel which transversely crosses either of this kind of faults. After calibration of the numerical model with results from literature of centrifuge physical tests, a parametric study is conducted to evaluate the effects of various parameters such as the granular soil properties, the fault dip angle, the segments thickness, and their connections stiffnesses on the tunnel performance. The results are presented and discussed in terms of the ground surface and tunnel displacements along the longitudinal axis for each case of faulting. The gradient of displacements and deformations of the tunnel cross section are also analyzed. It is shown that when the fault dip angle becomes greater, the tunnel and ground surface displacements are smaller, in the case of reverse faulting. For this type of fault offset, increasing the tunnel buried depth causes tunnel displacements as well as ground surface settlements to enhance which should be considered in the design.

Experimental and numerical investigation of the effect of sample shapes on point load index

  • Haeri, Hadi;Sarfarazi, Vahab;Shemirani, Alireza Bagher;Hosseini, Seyed Shahin
    • Geomechanics and Engineering
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    • 제13권6호
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    • pp.1045-1055
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    • 2017
  • Tensile strength is considered key properties for characterizing rock material in engineering project. It is determined by direct and indirect methods. Point load test is a useful testing method to estimate the tensile strengths of rocks. In this paper, the effects of rock shape on the point load index of gypsum are investigated by PFC2D simulation. For PFC simulating, initially calibration of PFC was performed with respect to the Brazilian experimental data to ensure the conformity of the simulated numerical models response. In second step, nineteen models with different shape were prepared and tested under point load test. According to the obtained results, as the size of the models increases, the point load strength index increases. It is also found that the shape of particles has no major effect on its tensile strength. Our findings show that the dominant failure pattern for numerical models is breaking the model into two pieces. Also a criterion was rendered numerically for determination of tensile strength of gypsum. The proposed criteria were cross checked with the results of experimental point load test.

초음파 결합형 SBR 호기성 소화의 모델과 매개변수의 보정 (Numerical Model for SBR Aerobic Digestion Combined with Ultrasonication and Parameter Calibration)

  • 김성홍;이인호;윤정원;이동우
    • 상하수도학회지
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    • 제27권4호
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    • pp.457-468
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    • 2013
  • Based on the activated sludge model(ASM), a mathematical model which represents the aerobic sludge digestion by sequencing batch reactor(SBR) combined with ultrasonic treatment was composed and performed in this study. Aerobic digestion using sequencing batch reactor(SBR) equipped with ultrasound treatment was also experimented for the purpose of parameter calibration. Most of the presented kinetic parameters in ASM or ASM2 could be used for the aerobic digestion of sludge but the parameters related in hydrolysis and decay rate needed modification. Hydrolysis rate constant of organic matter in aerobic condition was estimated at $0.3day^{-1}$ and the maximum growth rate for autotrophs in aerobic condition was $0.618day^{-1}$. Solubilization reactions of particulate organics and nitrogen by ultrasonication was added in this kinetic model. The solubilization rate is considered to be proportional to the specific energy which is defined by specific ultrasound power and sonication time. The solubilization rate constant by ultrasonication was estimated at $0.202(W/L)^{-1}day^{-1}$ in this study. Autotrophs as well as heterotrophs also decomposed by ultrasonic treatment and the nitrification reaction was limited by the lack of autotrophs accumulation in the digester.

엔진 배기단 적용을 위한 Time Resolved Laser Induced Icandescence (TIRE-LII) 신호의 보정 : 카본 입자 이용 (The Calibration Method of Time Resolved Laser Induced Incandescence Using Carbon Black Particles for the Soot Measurement at Exhaust Tail Pipe in Engine)

  • 오광철;김덕진;이천환;이춘범
    • 대한기계학회논문집B
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    • 제29권12호
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    • pp.1335-1343
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    • 2005
  • The calibration technique of Time Resolved Laser Induced Incandescence was investigated both experimentally and numerically by using standard-sized carbon black particles for the instantaneous soot measurement at exhaust tail pipe in engine. The carbon black particles (19nm, 25nm, 45nm and 58nm) used in this study are similar, though not identical, to soot particle generated from flame not only in morphology but also in micro-structure. The amount of soot loading in flow was controled by a diluted gas (nitrogen) and was measured by the gravimetric method at exhaust pipe in calibrator. The successful calibrations of primary particle size and soot mass fraction were carried out at the range from 19nm to 58nm and from $0.25mg/m^3$ to $37mg/m^3$ respectively. And based on these results the numerical simulation of LII signal was tuned and the effect of an exhaust temperature variation on the decay rate of LII signal was corrected.