곡관부 하류에 핀휜이 부착된 회전 냉각유로의 최적설계 (Optimization of a Rotating Two-Pass Rectangular Cooling Channel with Staggered Arrays of Pin-Fins)
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- 한국유체기계학회 논문집
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- 제13권5호
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- pp.43-53
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- 2010
This study investigates a design optimization of a rotating two-pass rectangular cooling channel with staggered arrays of pin-fins. The radial basis neural network method is used as an optimization technique with Reynolds-averaged Navier-Stokes analysis of fluid flow and heat transfer with shear stress transport turbulent model. The ratio of the diameter to height of the pin-fins and the ratio of the streamwise spacing between the pin-fins to height of the pin-fin are selected as design variables. The optimization problem has been defined as a minimization of the objective function, which is defined as a linear combination of heat transfer related term and friction loss related term with a weighting factor. Results are presented for streamlines, velocity vector fields, and contours of Nusselt numbers, friction coefficients, and turbulent kinetic energy. These results show how fluid flow in a two-pass square cooling channel evolves a converted secondary flows due to Coriolis force, staggered arrays of pin-fins, and a
The turbulent fluctuations of temperature and two components of velocity have been measured with hot- and cold-wires in the Thermally Stratified Wind Tunnel(TSWT). Using the fin-tube heat exchanger type heaters and the neural network control algorithm, both stable (
This article reviews the papers published in the Korean Journal of Air-Conditioning and Refrigeration Engineering during 2016. It is intended to understand the status of current research in the areas of heating, cooling, ventilation, sanitation, and indoor environments of buildings and plant facilities. Conclusions are as follows. (1) The research works on the thermal and fluid engineering have been reviewed as groups of flow, heat and mass transfer, the reduction of pollutant exhaust gas, cooling and heating, the renewable energy system and the flow around buildings. CFD schemes were used more for all research areas. (2) Research works on heat transfer area have been reviewed in the categories of heat transfer characteristics, pool boiling and condensing heat transfer and industrial heat exchangers. Researches on heat transfer characteristics included the results of the long-term performance variation of the plate-type enthalpy exchange element made of paper, design optimization of an extruded-type cooling structure for reducing the weight of LED street lights, and hot plate welding of thermoplastic elastomer packing. In the area of pool boiling and condensing, the heat transfer characteristics of a finned-tube heat exchanger in a PCM (phase change material) thermal energy storage system, influence of flow boiling heat transfer on fouling phenomenon in nanofluids, and PCM at the simultaneous charging and discharging condition were studied. In the area of industrial heat exchangers, one-dimensional flow network model and porous-media model, and R245fa in a plate-shell heat exchanger were studied. (3) Various studies were published in the categories of refrigeration cycle, alternative refrigeration/energy system, system control. In the refrigeration cycle category, subjects include mobile cold storage heat exchanger, compressor reliability, indirect refrigeration system with
A heat pipe residual heat removal system is proposed to be incorporated into the reactor driven subcritical (RDS) facility, which has been proposed by MIT Nuclear Reactor Laboratory for testing and demonstrating the Fluoride-salt-cooled High-temperature Reactor (FHR). It aims to reduce the risk of the system operation after the shutdown of the facility. One of the main components of the system is an air-cooled heat pipe heat exchanger. The alkali-metal high-temperature heat pipe was designed to meet the operation temperature and residual heat removal requirement of the facility. The heat pipe model developed in the previous work was adopted to simulate the designed heat pipe and assess the heat transport capability. 3D numerical simulation of the subcritical facility active zone was performed by the commercial CFD software STAR CCM + to investigate the operation characteristics of this proposed system. The thermal resistance network of the heat pipe was built and incorporated into the CFD model. The nominal condition, partial loss of air flow accident and partial heat pipe failure accident were simulated and analyzed. The results show that the residual heat removal system can provide sufficient cooling of the subcritical facility with a remarkable safety margin. The heat pipe can work under the recommended operation temperature range and the heat flux is below all thermal limits. The facility peak temperature is also lower than the safety limits.
Opening of fractures induced by shear dilation or normal deformation can be a significant source of fracture permeability change in fractured rock, which is important for the performance assessment of geological repositories for spent nuclear fuel. As the repository generates heat and later cools the fluid-carrying ability of the rocks becomes a dynamic variable during the lifespan of the repository. Heating causes expansion of the rock close to the repository and, at the same time, contraction close to the surface. During the cooling phase of the repository, the opposite takes place. Heating and cooling together with the, virgin stress can induce shear dilation of fractures and deformation zones and change the flow field around the repository. The objectives of this work are to examine the contribution of thermal stress to the shear slip of fracture in mid- and far-field around a KBS-3 type of repository and to investigate the effect of evolution of stress on the rock mass permeability. In the first part of this study, zones of fracture shear slip were examined by conducting a three-dimensional, thermo-mechanical analysis of a spent fuel repository model in the size of 2 km
도시 열섬현상을 완화하기 위하여 본 연구는 아파트 단지 내 바람의 흐름과 열쾌적성을 고려하여 녹지 연결성을 향상시키기 위한 효과적인 녹지 계획 시나리오를 제안하는 것에 있다. 연구의 사례 대상지는 서울특별시를 대상으로 2020년 6월부터 8월까지 수집된 온도 및 불쾌지수 자료를 비교하여 강동구 고덕동에 위치한 아파트 단지로 선정하였다. 먼저, 연구대상지 현재의 열환경과 바람환경을 분석하였다. 이를 바탕으로 녹지의 패치와 코리도 형태의 요소를 고려하여 시나리오 1(패치), 시나리오 2(코리도), 시나리오 3(패치+ 코리도)의 세 가지 시나리오를 계획하였다. 이후, 각각의 시나리오별 풍속, 풍향, 그리고 열쾌적성을 ENVI-met로 분석하여 도시 열섬현상의 완화효과를 비교하였다. 연구의 결과, 패치 형태의 녹지는 풍속의 증가 및 풍량 개선에 기여하여 예상온열감(PMV)가 31.20% 감소하는 효과를 보였으며(시나리오 1), 열쾌적성 지표(PET)가 68.59%감소하는 것으로 나타났다. 반면 코리도 형태의 녹지로 계획한 경우 바람길의 연결이 용이하여 패치 형태의 녹지 계획에 비하여 풍속이 더욱 높아지는 결과가 나타나 예상온열감(PMV)은 92.47%, 열쾌적성 지표(PET)는 90.14% 감소하였다 (시나리오 2). 녹지 패치와 녹지 코리도를 복합적으로 계획한 경우 가장 큰 풍속의 증가와 연결성을 보여 예상온열감(PMV)에서 95.75%, 열쾌적성 지표(PET)에서 95.35% 감소하는 것으로 나타났다(시나리오 3). 그러나 대상지 내에서 협소한 지역의 경우 패치형 녹지계획이 코리도형의 녹지 계획에 비하여 열쾌적성을 개선하는 데에 더 효과적으로 나타났다. 따라서, 연구의 결과에 근거하여 도시열섬현상을 효과적으로 완화하기 위해서는 패치형태의 녹지와 코리도 형태의 녹지의 계획의 복합적인 형태로 계획될 수 있도록 제안하고자 한다. 본 연구의 결과는 향후 도시형 아파트단지의 도시열섬현상 완화를 위한 녹지계획의 가이드를 제시하여 도시열섬현상에 따른 회복력을 향상시키기 위한 기초자료를 제시할 수 있을 것이다.
The Korean traditional 'Ondol' system has been a target for innovation to meet the requirements of sustainable domestic building and low carbon emission energy utilization. Simulation techniques provide designers and researchers with powerful tools to predict heating load and thermal behaviour of Ondol systems installed in various contexts. However, there are few studies on Ondol models, especially associated with multi-stories buildings of which type covers about 50% of Korean housing stock. In this study, we analyzed the double floor Ondol system on the multi-stories buildings using the ESP-r program. On the basis of the double floor Ondol system, we suggested the new modelling method that is composed of the Vent zone and Ondol zone. Using the this model, sensitivity analysis was carried out to refine the applicability of the model taking account of control conditions, constructions, air change and air flow network method and CFD analysis using the FLUENT. The air layer has enough temperature to use in heating zone. It is suggested that the simplicity of the model will allow building designers and mechanical engineers easily to implement scenario-based assessments of design options as well as control strategies. Later, we will simulate the real buildings and analyze the air distributions using the Fluent according to the various conditions.
도시 계획적 측면에서 도시의 구조적 변화에 따른 기후영향을 파악하여 그 결과를 도시계획에 반영하는 것은 중요하다. 서울시에서는 도시계획 시나리오 정보를 제공하기 위해 도시계획정보시스템(Urban Plan Information System, UPIS)을 활용 중이다. 지자체의 실제 도시계획에 따른 기후영향을 평가하고 분석하기 위해서는 UPIS에서 제공하는 도시계획시나리오와 도시기후분석모델을 손쉽게 연계할 수 있어야 한다. 본 연구에서는 국립기상과학원의 도시기후분석모델(Climate Analysis Seoul, CAS)과 도시계획 시나리오를 연계하는 기술을 개발하였다. CAS는 건물과 식생의 물리적 배치에 따른 온도, 바람 등의 국지규모 변화와 중규모 기상모델인 MetPhoMod(METeorology and atmospheric PHOtochemistry mesoscale MODel)의 분석결과를 바탕으로 찬공기의 생성, 이동, 정체와 바람흐름, 열적환경 등을 분석하는 기능을 가지고 있다. 정밀한 도시정보를 모델에 적용하기 위해 고해상도의 항공 LiDAR(LIgit Detection And Ranging) 측량을 통해 생성된 래스터자료(1m 해상도)와 KOMPSAT-2(KOrea Multi-Purpose SATellite) 위성영상 자료(4m 해상도)를 이용하여 토지피복 및 수치표고자료로 활용할 입력자료를 생성하였다. 보다 정확한 도시지면 특징을 반영하기 위해 수치표면모델인 DSM(Digital Surface Model)과 수치지형모델인 DTM(Digital Terrain Model)을 전산유체역학모델(Computational Fluid Dynamics, CFD) 입력자료로 사용하여 상세바람분석을 수행하였다. 8방위의 유입류를 고려하여 재정비 전후의 도시구조물 주변의 흐름 및 풍속 분포와 녹지축 형성 전후의 열환경 변화를 분석하였다. 현실적인 기상상태 반영을 위해 CAS의 중규모 기상장을 입력자료로 사용하였으며, 그 결과 재정비에 따른 도시구조물 변화에 의해 바람길에 큰 변화가 확인되었다. 녹지축 형성 이후 전반적으로 재정비지역 주변의 온도가 감소하였다. CAS와 CFD의 연동을 통해 도시지역 재정비와 녹지축 형성 전후의 주변 바람길과 열환경에 대한 실제적인 평가가 가능하며, 도시개발계획과 녹지조성계획 수립에 유용할 것으로 기대된다.
The wall shear stress in the vicinity of end-to end anastomoses under steady flow conditions was measured using a flush-mounted hot-film anemometer(FMHFA) probe. The experimental measurements were in good agreement with numerical results except in flow with low Reynolds numbers. The wall shear stress increased proximal to the anastomosis in flow from the Penrose tubing (simulating an artery) to the PTFE: graft. In flow from the PTFE graft to the Penrose tubing, low wall shear stress was observed distal to the anastomosis. Abnormal distributions of wall shear stress in the vicinity of the anastomosis, resulting from the compliance mismatch between the graft and the host artery, might be an important factor of ANFH formation and the graft failure. The present study suggests a correlation between regions of the low wall shear stress and the development of anastomotic neointimal fibrous hyperplasia(ANPH) in end-to-end anastomoses. 30523 T00401030523 ^x Air pressure decay(APD) rate and ultrafiltration rate(UFR) tests were performed on new and saline rinsed dialyzers as well as those roused in patients several times. C-DAK 4000 (Cordis Dow) and CF IS-11 (Baxter Travenol) reused dialyzers obtained from the dialysis clinic were used in the present study. The new dialyzers exhibited a relatively flat APD, whereas saline rinsed and reused dialyzers showed considerable amount of decay. C-DAH dialyzers had a larger APD(11.70
The wall shear stress in the vicinity of end-to end anastomoses under steady flow conditions was measured using a flush-mounted hot-film anemometer(FMHFA) probe. The experimental measurements were in good agreement with numerical results except in flow with low Reynolds numbers. The wall shear stress increased proximal to the anastomosis in flow from the Penrose tubing (simulating an artery) to the PTFE: graft. In flow from the PTFE graft to the Penrose tubing, low wall shear stress was observed distal to the anastomosis. Abnormal distributions of wall shear stress in the vicinity of the anastomosis, resulting from the compliance mismatch between the graft and the host artery, might be an important factor of ANFH formation and the graft failure. The present study suggests a correlation between regions of the low wall shear stress and the development of anastomotic neointimal fibrous hyperplasia(ANPH) in end-to-end anastomoses. 30523 T00401030523 ^x Air pressure decay(APD) rate and ultrafiltration rate(UFR) tests were performed on new and saline rinsed dialyzers as well as those roused in patients several times. C-DAK 4000 (Cordis Dow) and CF IS-11 (Baxter Travenol) reused dialyzers obtained from the dialysis clinic were used in the present study. The new dialyzers exhibited a relatively flat APD, whereas saline rinsed and reused dialyzers showed considerable amount of decay. C-DAH dialyzers had a larger APD(11.70