• 제목/요약/키워드: Simulated Tubes

검색결과 70건 처리시간 0.021초

냉매와 습공기가 교차하는 2중관에서 전열계수 예측을 위한 연구 (The study on the estimation of heat transfer coefficient through the counterflow concentric tube using refrigerant and moisture air)

  • 조권희
    • Journal of Advanced Marine Engineering and Technology
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    • 제23권5호
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    • pp.687-694
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    • 1999
  • This study was conducted to develop new drying process for automatic control and marine engi-neering system. Air-water tests were carried out to investigate dryer performance. The dispersed flow in he dryer test apparatuses was also simulated by using a numerical code which solves the Dittus-Boelter equation for continuous liquid phase and the Reynolds equation of droplet motion for continuous liquid phase and the Reynolds equation of droplet motion for dispersed phase to predict droplet removal efficiency. Proper conditions for dehumidification were optimized by response ambient conditions. When the selected indexes were constrained in the range of 85-98% moisture content above $15^{\circ}$ and more than mass flow rates of moist air 750kg/h. The numerical results were compared with the experimental data pertaining to the removal effi-ciency at chamber stage and overall pressure drop along concentric tubes Good agreement was obtained as for the efficiency while relatively poor agreement was obtained for the relative humidity. The results also showed that the efficiency depended strongly on the relative humidity at the inlet condition which indicated the importance of estimating the heat exchanger length. Effects of some design parameters in both removal efficiency and breakthrough onset condition are discussed.

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냉열잠열축열조의 성능해석 (Performance of the Cold Latent Storage System)

  • 윤호식;노승탁
    • 대한설비공학회지:설비저널
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    • 제17권4호
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    • pp.456-465
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    • 1988
  • The performance of the cold latent heat storage is investigated by experiment and by a simplified analytic approach. The heat storage tank has eight horizontal circular tubes and one path of refrigerant evaporating tube. The phase change material in the heat storage tank is water which is frozen by evaporating refrigerant of refrigeration system and melts by the warm air in the heat storage tank. In the experiment, the performance has been studied by the various conditions including the initial water temperature on solidification and flow rate and temperature of air. The rate of recovered heat has been simulated by a simplified model and the results shows a good agreement. In solidification process, initial water temperature causes time delay corresponding to the sensible heat and it is found that the shape of evaporator is important. In melting process, the recovered heat rate from the heat storage tank is proportional to $Re^{0.8}(T_{bi}-T_f)$ of air where $T_{bi}$ and $T_f$ indicate temperatures of inlet air and phase change, respectively. And the deminishing rate of the recovered heat is higher for the higher heat rate.

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Seismic behavior of Q690 circular HCFTST columns under constant axial loading and reversed cyclic lateral loading

  • Wang, Jiantao;Sun, Qing
    • Steel and Composite Structures
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    • 제32권2호
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    • pp.199-212
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    • 2019
  • This paper presents an investigation on seismic behavior of out-of-code Q690 circular high-strength concrete-filled thin-walled steel tubular (HCFTST) columns made up of high-strength (HS) steel tubes (yield strength $f_y{\geq}690MPa$). Eight Q690 circular HCFTST columns with various diameter-to-thickness (D/t) ratios, concrete cylinder compressive strengths ($f_c$) and axial compression ratios (n) were tested under the constant axial loading and reversed cyclic lateral loading. The obtained lateral load-displacement hysteretic curves, energy dissipation, skeleton curves and ductility, and stiffness degradation were analyzed in detail to reflect the influences of tested parameters. Subsequently, a simplified shear strength model was derived and validated by the test results. Finally, a finite element analysis (FEA) model incorporating a stress triaxiality dependent fracture criterion was established to simulate the seismic behavior. The systematic investigation indicates the following: compared to the D/t ratio and axial compression ratio, improving the concrete compressive strength (e.g., the HS thin-walled steel tube filled with HS concrete) had a slight influence on the ductility but an obvious enhancement of energy dissipation and peak load; the simplified shear strength model based on truss mechanism accurately predicted the shear-resisting capacity; and the established FEA model incorporating steel fracture criterion simulated well the seismic behavior (e.g., hysteretic curve, local buckling and fracture), which can be applied to the seismic analysis and design of Q690 circular HCFTST columns.

Three-dimensional numerical parametric study of tunneling effects on existing pipelines

  • Shi, Jiangwei;Wang, Jinpu;Ji, Xiaojia;Liu, Huaqiang;Lu, Hu
    • Geomechanics and Engineering
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    • 제30권4호
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    • pp.383-392
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    • 2022
  • Although pipelines are composed of segmental tubes commonly connected by rubber gasket or push-in joints, current studies mainly simplified pipelines as continuous structures. Effects of joints on three-dimensional deformation mechanisms of existing pipelines due to tunnel excavation are not fully understood. By conducting three-dimensional numerical analyses, effects of pipeline burial depth, tunnel burial depth, volume loss, pipeline stiffness and joint stiffness on bending strain and joint rotation of existing pipelines are explored. By increasing pipeline burial depth or decreasing tunnel cover depth, tunneling-induced pipeline deformations are substantially increased. As tunnel volume loss varies from 0.5% to 3%, the maximum bending strains and joint rotation angles of discontinuous pipelines increase by 1.08 and 9.20 times, respectively. By increasing flexural stiffness of pipe segment, a dramatic increase in the maximum joint rotation angles is observed in discontinuous pipelines. Thus, the safety of existing discontinuous pipelines due to tunnel excavation is controlled by joint rotation rather than bending strain. By increasing joint stiffness ratio from 0.0 (i.e., completely flexible joints) to 1.0 (i.e., continuous pipelines), tunneling-induced maximum pipeline settlements decrease by 22.8%-34.7%. If a jointed pipeline is simplified as a continuous structure, tunneling-induced settlement is thus underestimated, but bending strain is grossly overestimated. Thus, joints should be directly simulated in the analysis of tunnel-soil-pipeline interaction.

압축수 방식 사출장치 내부 과도압력파 모의를 위한 간이 식 (Simplified Formula for Simulating Overpressure Waves in Compressed-Water-Type Launching Device)

  • 김국현
    • Tribology and Lubricants
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    • 제38권6호
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    • pp.287-290
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    • 2022
  • Compressed-water-type launching devices convert the force from compressed water into force-launching underwater structures, such as torpedos and autonomous underwater vehicles. In particular, the overpressure wave in the launching tube is a critical design factor for the launching device. This paper presents a simplified formula for simulating overpressure waves in the launching tube of a compressed-water-type launching device. Scaled model experiments were performed to obtain actual measurement data of overpressure waves in a launching tube with varying piston speeds to examine the practical applicability of the simplified formula. The main factor of the simplified formula was estimated using an optimization technique. The time history of the overpressure waves was satisfactorily simulated using the estimated factor values and showed consistency with the measurement data. In addition, the trend of change by the piston speed of the estimated factors was reviewed, and the practical applicability was demonstrated. A systematic study of the factors influencing the overpressure waves in launching tubes will be possible using experimental data for more various conditions and the proposed simplified formula.

Measurement of undesirable neutron spectrum in a 120 MeV linac

  • Yihong Yan ;Xinjian Tan;Xiufeng Weng ;Xiaodong Zhang ;Zhikai Zhang ;Weiqiang Sun ;Guang Hu ;Huasi Hu
    • Nuclear Engineering and Technology
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    • 제55권10호
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    • pp.3591-3598
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    • 2023
  • Photoneutron background spectroscopy observations at linac are essential for directing accelerator shielding and subtracting background signals. Therefore, we constructed a Bonner Sphere Spectrometer (BSS) system based on an array of BF3 gas proportional counter tubes. Initially, the response of the BSS system was simulated using the MCNP5 code. Next, the response of the system was calibrated by using neutrons with energies of 2.86 MeV and 14.84 MeV. Then, the system was employed to measure the spectrum of the 241Am-Be neutron source, and the results were unfolded by using the Gravel and EM algorithms. Using the validated system, the undesirable neutron spectrum of the 120 MeV electron linac was finally measured and acquired. In addition, it is demonstrated that the equivalent undesirable neutron dose at a distance of 3.2 m from the linac is 19.7 mSv/h. The results measured by the above methods could provide guidance for linac-related research.

Static analysis of 2D-FG nonlocal porous tube using gradient strain theory and based on the first and higher-order beam theory

  • Xiaozhong Zhang;Jianfeng Li;Yan Cui;Mostafa Habibi;H. Elhosiny Ali;Ibrahim Albaijan;Tayebeh Mahmoudi
    • Steel and Composite Structures
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    • 제49권3호
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    • pp.293-306
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    • 2023
  • This article focuses on the study of the buckling behavior of two-dimensional functionally graded (2D-FG) nanosize tubes, including porosity, based on the first shear deformation and higher-order theory of the tube. The nano-scale tube is simulated using the nonlocal gradient strain theory, and the general equations and boundary conditions are derived using Hamilton's principle for the Zhang-Fu's tube model (as a higher-order theory) and Timoshenko beam theory. Finally, the derived equations are solved using a numerical method for both simply-supported and clamped boundary conditions. A parametric study is performed to investigate the effects of different parameters, such as axial and radial FG power indices, porosity parameter, and nonlocal gradient strain parameters, on the buckling behavior of the bi-dimensional functionally graded porous tube. Keywords: Nonlocal strain gradient theory; buckling; Zhang-Fu's tube model; Timoshenko theory; Two-dimensional functionally graded materials; Nanotubes; Higher-order theory.

모사 와전류 탐상신호를 이용한 비대칭 단면을 갖는 축대칭 결함의 형상분류 (Classification of Axis-symmetric Flaws with Non-Symmetric Cross-Sections using Simulated Eddy Current Testing Signals)

  • 송성진;김창환;신영길;이향범;박윤원;임창재
    • 비파괴검사학회지
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    • 제21권5호
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    • pp.510-517
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    • 2001
  • 본 연구는 와전류 형상인식 기법을 증기발생기 세관의 보다 실제적인 결함 평가 문제에 적용하기 위한 목적으로 시도되었다. 이를 위해 증기발생기 세관에 발생하는 실제적인 결함을 보다 사실적으로 모사하는 다섯 가지 형태의 외벽 결함을 선택하고, 이들 결함의 크기 인자와 시험주파수를 변화시켜 가면서, 유한요소 수치해석 프로그램을 이용하여 이론적인 결함신호를 생성하였다. 그리고, 이들 결함신호의 분석을 효율적으로 수행하기 위한 도구로서, '와전류 특징추출 프로그램', '와전류 특징분석 프로그램', 그리고 'PNN 결함분류 프로그램'을 자체적으로 개발하였다. 비대칭 단면을 갖는 결함의 신호는 교점이 원점으로부터 이격되는 현상이 관찰되었는데, 이러한 특성을 반영하는 특징을 추가하여 총 18개의 특징을 시험주파수 별로 정의하였다. 이 특징들을 이용하여 결함을 분류하는 확률신경회로망을 구성하고 결함 분류를 수행한 결과, 결함단면의 대칭성 여부를 결정하는 문제에서는 비교적 높은 정확도를 얻었으나, 결함선단의 첨도를 판단하는 문제에서는 낮은 정확도를 얻었다.

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벽-유체의 상호작용을 고려한 유연관 내부 유동의 수치적 연구 (Numerical Analysis of the Flow in a Compliant Tube Considering Fluid-wall Interaction)

  • 심은보
    • 대한의용생체공학회:의공학회지
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    • 제21권4호
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    • pp.391-401
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    • 2000
  • 본 연구에서는 정맥 등과 같은 혈관의 상황을 모사하기 위하여 선형적으로 벽 두께가 변하는 축 대칭 관의 벽면과 유동의 상호작용을 유한요소 방법으로 해석하였다. 사용한 유한요소 상용 소프트웨어(ADINA)의 타당성을 검증하기 위해서 막힘이 있는 혈관에서의 벽과 혈류의 상호작용을 해석하고 이를 기존의 실험결과와 비교하였다. 또한 2차원 신축 벽을 가지는 평판 사이의 유체 유동에 대한 결과를 기존 연구결과와 비교하였다. 축대칭 문제의 경우, 입구의 압력은 일정하게 유지하면서 출구 압력을 감소시켜 나간다. 출구 압력의 감소에 따라, 유량은 증가하며, 관내 유로의 단면적은 감소한다. speed index(평균속도를 파의 속도로 나눈 값)가 1 근방에서 유량은 최대가 되며, 유로 단면적이 최소가 된다. 그리고 출구압력이 좀 더 감소하면 유량은 오히려 줄어든다. 이와 같은 현상을 유동제한(flow limitation) 혹은 초킹(choking)이라 하는데, 폐의 기도(airway) 및 모세혈관, 그리고 이외의 여러 정맥들에서 자주 발생하는 폭포효과의 원인이 된다. 상류벽 두께와 하류 벽두께의 비가 2 일 경우에는 하류쪽에서 목(area throat)이 형성되며 이 비가 3일 경우에는 상류 쪽으로 이동하는데 하류 벽면의 강성(stiffness)이 상류 쪽에 비해 강하게 되어서 상류 쪽에서 먼저 붕괴가 일어나기 때문이다.

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중수로 핵연료채널과 인접관의 간격측정을 위한 원거리장 와전류검사 기술개발 (Remote field Eddy Current Technique Development for Gap Measurement of Neighboring Tubes of Nuclear Fuel Channel in Pressurized Heavy Water Reactor)

  • 정현규;이동훈;이윤상;허형;정용무
    • 비파괴검사학회지
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    • 제24권2호
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    • pp.164-170
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    • 2004
  • 중수로 내부구조물 중 칼란드리아관(CT)와 액체주입노즐관(LIN)은 서로 수평으로 90도 교차되게 배열되어 있으며 원자로 내의 열, 방사선, 하중에 의해 creep 현상이 발생되어 처짐이 일어난다. 칼란드리아관은 액체주입노즐관과 동일 재료이나 운전 온도와 방사선 조사량으로 인해 액체주입노즐관에 비해 상당히 열악한 조건에 노출되어 있으므로 처짐이 심각할 것으로 예상된다. 만약 두 관의 접촉이 발생되면 원전 안전성에 영향을 미칠 것이므로 인접관에 대한 접촉여부 점검은 중수로 안전현안 중 하나이다. 이러한 접촉여부를 확인하기 위하여 핵연료채널 내부로 탐촉자를 삽입하여 인접관과의 교차점에서 간격을 직접측정하기 위한 방법으로 원거리장 와전류검사 (RFECT) 기술을 적용하였다. 핵연료채널 인접관인 액체주입노즐관 신호 취득시 발생 가능한 잡음 신호(두께변화, Lift-off, 수축)에 대해 체적적분법에 의한 모델링으로 조사하였고, 신호와 잡음과의 분리 가능한 조건을 확인하였다. 원거리장 와전류검사 적정 조건은 민감도와 투과력 그리고 잡음신호 등을 동시에 고려하여 주파수 1kHz와 코일간격 200m로서 결정하였다. 원거리장 와전류검사 실험 결과 칼란드리아관과 액체주입노즐관 사이의 간격 변화에 대한 신호 특성을 전압평면을 이용하여 상관관계를 도출하였다.