• 제목/요약/키워드: MM5 model simulation

검색결과 230건 처리시간 0.024초

Simulation study of magnetorheological testing cell design by incorporating all basic operating modes

  • Mughni, Mohd J.;Mazlan, Saiful A.;Zamzuri, Hairi;Yazid, Izyan I.M.;Rahman, Mohd A.A.
    • Smart Structures and Systems
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    • 제14권5호
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    • pp.901-916
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    • 2014
  • Magnetorheological (MR) fluid is one of the field-responsive fluids that is of interest to many researchers due to its high yield stress value, which depends on the magnetic field strength. Similar to electrorheological (ER) fluid, the combination of working modes is one of the techniques to increase the performance of the fluids with limited focus on MR fluids. In this paper, a novel MR testing cell incorporated with valve, shear and squeeze operational modes is designed and constructed in order to investigate the behaviour of MR fluid in combined mode. The magnetic field distribution in the design concept was analyzed using finite element method in order to verify the effective areas of each mode have the acceptable range of flux density. The annular gap of valve and shear were fixed at 1 mm, while the squeeze gap between the parallel circular surfaces was varied up to 20 mm. Three different coil configurations, which were made up from 23 SWG copper wires were set up in the MR cell. The simulation results indicated that the magnetic field distributed in the squeeze gap was the highest among the other gaps with all coils were subjected to a constant applied current of 1 A. Moreover, the magnetic flux densities in all gaps were in a good range of magnitude based on the simulations that validated the proposed design concept. Hence, the 3D model of the MR testing cell was designed using Solidworks for manufacturing processes.

Monte Carlo 계산에 의한 액체섬광계수기의 베타선 스펙트럼 Simulation (Simulation of Beta Ray Spectra in Liquid Scintillation Counting System by means of Monte Carlo Method)

  • 이철영;전재식
    • Journal of Radiation Protection and Research
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    • 제18권2호
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    • pp.17-25
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    • 1993
  • 액체섬광 계수기에 대한 $^3H,\;^{14}C,\;^{36}Cl$의 베타선 스펙트럼의 시뮬레이션을 Monte Carlo 법으로 수행하였다. 베타선의 손실에너지는 'continuous slowing down approximation(CSDA)' 모형으로부터 구하였다. 순 베타방출 핵종이 균일하게 용해되어 있는 섬광용액은 $1.25cm{\times}3.5cm$의 원통형 geome try로 가정하였다. $^{14}C,\;^{36}Cl$에 대한 계산결과는 계수효율의 경우 실험 값과 2%의 범위 내에서 잘 일치하였으나 $^3H$에 대해서는 상당한 편차를 나타내었다. 이는 저 에너지 베타선에 대한 섬광용액 자체의 quenching 효과에 기인하는 것으로 판단된다.

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자연순환형 태양열 온수기 축열조의 압력식 설계 개조 (Design Modification of a Thermal Storage Tank of Natural-Circulation Solar Water Heater for a Pressurized System)

  • 부준홍;정의국
    • 한국태양에너지학회 논문집
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    • 제27권3호
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    • pp.45-54
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    • 2007
  • For a conventional natural-circulation type solar water heater, the pressure head is limited by the height between the storage tank and hot water tap. Therefore, it is difficult to provide sufficient hot water flow rate for general usage. This study deals with a design modification of the storage tank to utilize the tap-water pressure to increase hot-water supply Based on fluid dynamic and heat transfer theories, a series of modeling and simulation is conducted to achieve practical design requirements. An experimental setup is built and tested and the results are compared with theoretical simulation model. The storage tank capacity is 240 l and the outer diameter of piping was 15 mm. Number of tube turns tested are 5, 10, and 15. Starting with initial storage tank temperature of $80^{\circ}C$, the temperature variation of the supply hot water is investigated against time, while maintaining minimum flow rate of 10 1/min. Typical results show that the hot water supply of minimum $30^{\circ}C$ can be maintained for 34 min with tap-water supply pressure of 2.5 atm, The relative errors between modeling and experiments coincide well within 10% in most cases.

The influence of various core designs on stress distribution in the veneered zirconia crown: a finite element analysis study

  • Ha, Seung-Ryong;Kim, Sung-Hun;Han, Jung-Suk;Yoo, Seung-Hyun;Jeong, Se-Chul;Lee, Jai-Bong;Yeo, In-Sung
    • The Journal of Advanced Prosthodontics
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    • 제5권2호
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    • pp.187-197
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    • 2013
  • PURPOSE. The purpose of this study was to evaluate various core designs on stress distribution within zirconia crowns. MATERIALS AND METHODS. Three-dimensional finite element models, representing mandibular molars, comprising a prepared tooth, cement layer, zirconia core, and veneer porcelain were designed by computer software. The shoulder (1 mm in width) variations in core were incremental increases of 1 mm, 2 mm and 3 mm in proximal and lingual height, and buccal height respectively. To simulate masticatory force, loads of 280 N were applied from three directions (vertical, at a $45^{\circ}$ angle, and horizontal). To simulate maximum bite force, a load of 700 N was applied vertically to the crowns. Maximum principal stress (MPS) was determined for each model, loading condition, and position. RESULTS. In the maximum bite force simulation test, the MPSs on all crowns observed around the shoulder region and loading points. The compressive stresses were located in the shoulder region of the veneer-zirconia interface and at the occlusal region. In the test simulating masticatory force, the MPS was concentrated around the loading points, and the compressive stresses were located at the 3 mm height lingual shoulder region, when the load was applied horizontally. MPS increased in the shoulder region as the shoulder height increased. CONCLUSION. This study suggested that reinforced shoulder play an essential role in the success of the zirconia restoration, and veneer fracture due to occlusal loading can be prevented by proper core design, such as shoulder.

Thermal Behavior Variations in Coating Thickness Using Pulse Phase Thermography

  • Ranjit, Shrestha;Chung, Yoonjae;Kim, Wontae
    • 비파괴검사학회지
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    • 제36권4호
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    • pp.259-265
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    • 2016
  • This paper presents a study on the use of pulsed phase thermography in the measurement of thermal barrier coating thickness with a numerical simulation. A multilayer heat transfer model was ussed to analyze the surface temperature response acquired from one-sided pulsed thermal imaging. The test sample comprised four layers: the metal substrate, bond coat, thermally grown oxide and the top coat. The finite element software, ANSYS, was used to model and predict the temperature distribution in the test sample under an imposed heat flux on the exterior of the TBC. The phase image was computed with the use of the software MATLAB and Thermofit Pro using a Fourier transform. The relationship between the coating thickness and the corresponding phase angle was then established with the coating thickness being expressed as a function of the phase angle. The method is successfully applied to measure the coating thickness that varied from 0.25 mm to 1.5 mm.

다지점 진동대를 이용한 원자력발전소 배관계통의 내진성능실험 (Seismic Capacity Test of Nuclear Piping System using Multi-platform Shake Table)

  • 정진환;계만수;서영득;최형석;김민규
    • 한국지진공학회논문집
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    • 제17권1호
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    • pp.21-31
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    • 2013
  • In this study, dynamic characteristics and seismic capacity of the nuclear power plant piping system are evaluated by model test results using multi-platform shake table. The model is 21.2 m long and consists of straight pipes, elbows, and reducers. The stainless steel pipe diameters are 60.3 mm (2 in.) and 88.9 mm (3 in.) and the system was assembled in accordance with ASME code criteria. The dynamic characteristics such as natural frequency, damping and acceleration responses of the piping system were estimated using the measured acceleration, displacement and strain data. The natural frequencies of the specimen were not changed significantly before and after the testing and the failure and leakage of the piping system was not observed until the final excitation. The damping ratio was estimated in the range of 3.13 ~ 4.98 % and it is found that the allowable stress(345 MPa) according to ASME criteria is 2.5 times larger than the measured maximum stress (138 MPa) of the piping system even under the maximum excitation level of this test.

APEX 모형을 이용한 유기농경지에서의 질소 부하량 저감을 위한 지표피복 효과 (Surface Cover Effect for Reducing Nitrogen Load in Organic Farming Fields using APEX Model)

  • 소현철;장태일;김동현;설동문;윤광식
    • 한국농공학회논문집
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    • 제60권5호
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    • pp.55-67
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    • 2018
  • The objectives of this study were to monitor organic farming upland compared with conventional upland field and to evaluate nutrient loads reduction of surface cover effect with long-term historical climate data. APEX(Agricultural Policy Environmental eXtender) model was validated with experimental data and used for assessing surface cover scenarios for 30-year simulation periods. The validated values of RMSE(Root Mean Square Error), RMAE(Root Mean Absolute Error), $R^2$ and E(Nash-Sutcliffe efficiency) for runoff were 1.17-1.37 mm/day, 0.28-0.45 mm/day, 0.88-0.90 and 0.82-0.94 in two treatments, respectively. Those for water quality (nitrogen) were 0.05-0.16 kg/ha, 0.52-0.75 kg/ha, 0.67-0.72 and 0.32-0.70 in two treatments, respectively, and therefore the validated model showed good agreement with the observed runoff and nitrogen load for the study period. When decreasing the surface cover rate of organic farming field to 75%, 50%, 25%, and 0% (conventional field), average annual runoff increased by 7%, 15%, 23% and 31%, respectively. Under same condition of decreasing the surface cover rate, average annual nitrogen loads increased by 1.4 times, 1.7 times, 2.0 times, and 2.3 times compared with organic farming field, respectively. This study showed that it is possible to present an appropriate surface cover ratio to maintain conventional production and minimize nonpoint sources pollution for organic farming system, although long-term monitoring is needed to determine its effects on environmental concerns, crop competition, and other uncertainty.

국지규모 지형영향을 고려하기 위한 MM5-A2C 결합 모델링 특성 분석 (The Analysis of Regional Scale Topographic Effect Using MM5-A2C Coupling Modeling)

  • 최현정;이순환;김학성
    • 한국지구과학회지
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    • 제36권3호
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    • pp.210-221
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    • 2015
  • 지형적인 형태와 지표면의 물리적인 특성은 기상장 뿐 만 아니라 대기질 수치 모델링에서도 가장 중요한 입력변수가 된다. 대부분 복잡지형에서 일어나는 국지적인 기상의 일변동들이 지형적인 불균일성에 의해 지배되기도 한다. 이러한 지형적인 특징들은 열적으로 유도된 대기흐름에 영향을 일으키며 직접적으로는 풍계의 변화를 가져오거나 지표면 가열 온도 자체에서의 중요한 변화를 가져와 간접적으로 영향을 주기도 한다. 복잡지형에서 이러한 변화양상들은 지형적인 특징 즉, 지형적 경사와 성질에 의한 태양복사 에너지의 불균등한 분배에 기인한다. 그러므로 기상장 묘사가 어려운 복잡지형에서는 관측값에 더 가까운 정확한 바람장을 예측하기 위해 상세한 지형 정보와 지표면 자료가 중요하게 된다. 본 연구에서는 상세한 지표면과 지형자료를 지표 경계자료로 활용한 MM5-A2C 모델을 이용하여 복잡한 지형적 조건을 가진 산지지역에서의 바람장 수치모의를 하고자 한다. MM5-A2C에 의해 유도된 기상장은 국지규모의 산지주변에서의 지형강제력에 의한 기상장 해석을 정밀하게 예측하여 모델 내의 지형적 조건이 미치는 영향에 대해 직접적인 영향을 주고 있음을 알 수 있었다.

Simulation Studies for Noninvasive Optical Measurements of Blood-Scattering Changes in a Skin Model with a Large Blood Vessel

  • Zephaniah, Phillips V;Paik, Seung-ho;Nam, Jungyong;Chang, Ki Young;Jung, Young-Jin;Choi, Youngwoon;Lee, Joonhyung;Kim, Beop Min
    • Current Optics and Photonics
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    • 제3권1호
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    • pp.46-53
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    • 2019
  • Monte Carlo simulations were performed for a three-dimensional tissue model with and without an embedded large vessel, to understand how varying vessel geometry affects surface light distribution. Vessel radius was varied from 1 to 5 mm, and vessel depth from 2 to 10 mm. A larger difference in surface fluence rate was observed when the vessel's radius increased. For vessel depth, the largest difference was seen at a depth of approximately 4 mm, corresponding to human wrist region. When the vessel was placed at depths greater than 8 mm, very little difference was observed. We also tested the feasibility of using two source-detector pairs, comprising two detectors distinctly spaced from a common source, to noninvasively measure blood-scattering changes in a large vessel. High sensitivity to blood-scattering changes was achieved by placing the near detector closer to the source and moving the far detector away from the source. However, at longer distances, increasing noise levels limited the sensitivity of the two-detector approach. Our results indicate that the approach using two source-detector pairs may have potential for quantitative measurement of scattering changes in the blood while targeting large vessels near the human wrist region.

수치해석을 통한 KSTAR 주장치 열차폐 패널 열.유동 특성해석 (Thermal Flow Analysis and Design of KSTAR Thermal Shield Panel by Numerical Method)

  • 김동락;김광선;노영미;조승연;김승현
    • 한국초전도ㆍ저온공학회논문지
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    • 제4권2호
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    • pp.73-77
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    • 2002
  • In order to derive the detailed design of Thermal Shield Cryopanel. which plays a role to make the Tokamak Nuclear Fusion Equipment work at both static and efficient conditions the commercially available software package FLUENT Version 5.3, was utilized. This study investigated the effects of thermal sources and distributions on the temperatures of Lid. Body. Base. and EH-Port Cryopanel by the numerical technique whose grid generations cover the solid and 9as region of the panel. The physical model of the Thermal Shield Cryopanel is that the 10mm diameter of the pipe with 1mm thickness is soldered on the Stainless steel Panel with 4mm thickness. The heat fluxes to the panel are assumed to be by thermal radiation in the vacuum space and by conduction through the supporters. The inlet conditions of Helium gas are 20 atmospheric Pressures and 60K temperature. The panel shapes with cooling Pipes and the operational conditions to keep appropriate temperature distribution of Thermal Shield Cryopanel Have been found and suggested.