• 제목/요약/키워드: thermal balance

검색결과 349건 처리시간 0.027초

휠로더 흡배기구의 유동손실계수를 적용한 열유동해석 (Thermal-Fluid Analysis with Flow Loss Coefficient on the Inlet and Exhaust Duct of Wheel-Loader)

  • 정찬혁;이재석
    • 대한기계학회논문집 C: 기술과 교육
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    • 제5권2호
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    • pp.97-104
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    • 2017
  • 본 논문에서는 휠로더 냉각성능 평가를 위한 열유동해석의 효율성 향상과 비용 저감을 위해서 흡배기구 다공판형상을 Porous media 기법을 이용하여 단순화하고 해석 정도를 확인하였다. 여기서 Porous media에 적용된 다공판형상의 유동손실계수는 시험데이터를 바탕으로 정의하였다. 또한 다공판형상의 유동손실계수를 해석적으로 정의하기 위해 단위형상에 대한 압력손실을 계산하고 시험결과와 비교하였다. 마지막으로 휠로더 흡배기구를 단순화한 해석모델의 냉각해석 결과와 실차 방열시험 결과를 비교하였다. 이 연구를 통해 휠로더 흡배기구 단순화 해석기법의 적용 가능성을 확인하였으며 냉각성능 평가 및 개선 연구를 효과적으로 수행할 수 있는 기반을 마련하였다.

JAEA'S VHTR FOR HYDROGEN AND ELECTRICITY COGENERATION : GTHTR300C

  • Kunitomi, Kazuhiko;Yan, Xing;Nishihara, Tetsuo;Sakaba, Nariaki;Mouri, Tomoaki
    • Nuclear Engineering and Technology
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    • 제39권1호
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    • pp.9-20
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    • 2007
  • Design study on the Gas Turbine High Temperature Reactor 300-Cogeneration (GTHTR300C) aiming at producing both electricity by a gas turbine and hydrogen by a thermochemical water splitting method (IS process method) has been conducted. It is expected to be one of the most attractive systems to provide hydrogen for fuel cell vehicles after 2030. The GTHTR300C employs a block type Very High Temperature Reactor (VHTR) with thermal power of 600MW and outlet coolant temperature of $950^{\circ}C$. The intermediate heat exchanger (IHX) and the gas turbine are arranged in series in the primary circuit. The IHX transfers the heat of 170MW to the secondary system used for hydrogen production. The balance of the reactor thermal power is used for electricity generation. The GTHTR300C is designed based on the existing technologies of the High Temperature Engineering Test Reactor (HTTR) and helium turbine power conversion and on the technologies whose development have been well under way for IS hydrogen production process so as to minimize cost and risk of deployment. This paper describes the original design features focusing on the plant layout and plant cycle of the GTHTR300C together with present development status of the GTHTR300, IHX, etc. Also, the advantage of the GTHTR300C is presented.

A DYNAMIC SIMULATION OF THE SULFURIC ACID DECOMPOSITION PROCESS IN A SULFUR-IODINE NUCLEAR HYDROGEN PRODUCTION PLANT

  • Shin, Young-Joon;Chang, Ji-Woon;Kim, Ji-Hwan;Park, Byung-Heung;Lee, Ki-Young;Lee, Won-Jae;Chang, Jong-Hwa
    • Nuclear Engineering and Technology
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    • 제41권6호
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    • pp.831-840
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    • 2009
  • In order to evaluate the start-up behavior and to identify, through abnormal operation occurrences, the transient behaviors of the Sulfur Iodine(SI) process, which is a nuclear hydrogen process that is coupled to a Very High Temperature Gas Cooled Reactor (VHTR) through an Intermediate Heat Exchanger (IHX), a dynamic simulation of the process is necessary. Perturbation of the flow rate or temperature in the inlet streams may result in various transient states. An understanding of the dynamic behavior due to these factors is able to support the conceptual design of the secondary helium loop system associated with a hydrogen production plant. Based on the mass and energy balance sheets of an electrodialysis-embedded SI process equivalent to a 200 $MW_{th}$ VHTR and a considerable thermal pathway between the SI process and the VHTR system, a dynamic simulation of the SI process was carried out for a sulfuric acid decomposition process (Second Section) that is composed of a sulfuric acid vaporizer, a sulfuric acid decomposer, and a sulfur trioxide decomposer. The dynamic behaviors of these integrated reactors according to several anticipated scenarios are evaluated and the dominant and mild factors are observed. As for the results of the simulation, all the reactors in the sulfuric acid decomposition process approach a steady state at the same time. Temperature control of the inlet helium is strictly required rather than the flow rate control of the inlet helium to keep the steady state condition in the Second Section. On the other hand, it was revealed that the changes of the inlet helium operation conditions make a great impact on the performances of $SO_3$ and $H_2SO_4$ decomposers, but no effect on the performance of the $H_2SO_4$ vaporizer.

다중영상촬영을 위한 PKNU 2호 개발에 관한 연구 (Research about Multi-spectral Photographing System (PKNU No.2) Development)

  • 최철웅;김호용;전성우
    • 대한원격탐사학회지
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    • 제19권4호
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    • pp.291-305
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    • 2003
  • 원격탐사는 각종 상업용 위성과 항공사진을 바탕으로 연구된다. 그러나 이러한 자료는 연구자들이 원하는 시기와 장소에서 촬영하는데 기상조건 및 경제적 이유로 많은 어려움을 겪고 있다. 이러한 문제점을 해결하는 작은 방안의 하나로 본 연구에서는 소형비행기 및 초경량 비행기에 탈 부착이 가능한 소형 다중분광 자동 항공촬영시스템을 개발하였다. 본 항공촬영시스템은 연구실 자체에서 보유한 고해상도 다중분광카메라(가시대역, 적외선대역)와 열 적외선 카메라, 자체 제작한 자동카메라 정밀자세조정장치, 촬영관제 소형컴퓨터, gimbal, GPS수신기, 기상센서 등으로 구성되어 있다. 이에 대한 성능평가 및 분석을 경북 칠포지역에서 2회, 낙동강지역에서 3회, 경안천 지역에서 2회 실시하였다 그 결과, 다양한 항공사진, 기상자료 및 GPS자료를 획득할 수 있었고, 환경감시등에 유용성이 매우 높음을 알 수 있었다.

Dry Season Evaporation From Pine Forest Stand In The Middle Mountains Of Nepal

  • Gnawali, Kapil;Jun, KyungSoo
    • 한국수자원학회:학술대회논문집
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    • 한국수자원학회 2016년도 학술발표회
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    • pp.330-330
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    • 2016
  • The quantification of dry season evaporation in regions, where the magnitude of dry season flows is key to the regional water supply, is essential for good water management. Also, tree transpiration has a significant role in the water balance of a catchment whenever it is tree populated, especially in water limited environments. Such is the case in the Middle Mountains of Nepal where dry season flows play a significant role in downstream water provisioning and their proper functioning is key to the welfare of millions of people. This research seeks to study the transpiration of a pine forest stand in the Jikhu Khola Watershed in the Middle Mountains of Nepal. To the author's knowledge, no single study has been made so far to estimate the dry season evaporation from the planted forest stand in the Middle Mountains of Nepal. The study was carried out in planted pine forest embedded within the Jikhu Khola Catchment. Field campaigns of sap flow measurements were carried out from September, 2010 to February, 2011 in the selected plot of 15*15m dimension, to characterize dry season evaporation. This was done by measuring sap fluxes and sapwood areas over the six trees of different Diameter at Breast Height (DBH) classes. The sap flux was assessed using Granier's thermal dissipation probe (TDP) technique while sapwood area was determined using several incremental core(s) taken with a Pressler borer and immediately dyeing with methyl orange for estimating the actual depth of sapwood area. Transpiration of the plot was estimated by considering the contribution of each tree class. For this purpose, sap flux density, sapwood area and the proportion of total canopy area were determined for each tree class of the selected plot. From these data, hourly and diurnal transpiration rates for the plot were calculated for experimental period. Finally, Cienciala model was parameterized using the data recorded by the ADAS and other terrain data collected in the field. The calibrated model allowed the extrapolation of Sap flux density (v) over a six month period, from September 2010 to February 2011. The model given sap flux density was validated with the measured sap flux density from Grainier method.

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Integrated fire dynamics and thermomechanical modeling framework for steel-concrete composite structures

  • Choi, Joonho;Kim, Heesun;Haj-ali, Rami
    • Steel and Composite Structures
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    • 제10권2호
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    • pp.129-149
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    • 2010
  • The objective of this study is to formulate a general 3D material-structural analysis framework for the thermomechanical behavior of steel-concrete structures in a fire environment. The proposed analysis framework consists of three sequential modeling parts: fire dynamics simulation, heat transfer analysis, and a thermomechanical stress analysis of the structure. The first modeling part consists of applying the NIST (National Institute of Standards and Technology) Fire Dynamics Simulator (FDS) where coupled CFD (Computational Fluid Dynamics) with thermodynamics are combined to realistically model the fire progression within the steel-concrete structure. The goal is to generate the spatial-temporal (ST) solution variables (temperature, heat flux) on the surfaces of the structure. The FDS-ST solutions are generated in a discrete form. Continuous FDS-ST approximations are then developed to represent the temperature or heat-flux at any given time or point within the structure. An extensive numerical study is carried out to examine the best ST approximation functions that strike a balance between accuracy and simplicity. The second modeling part consists of a finite-element (FE) transient heat analysis of the structure using the continuous FDS-ST surface variables as prescribed thermal boundary conditions. The third modeling part is a thermomechanical FE structural analysis using both nonlinear material and geometry. The temperature history from the second modeling part is used at all nodal points. The ABAQUS (2003) FE code is used with external user subroutines for the second and third simulation parts in order to describe the specific heat temperature nonlinear dependency that drastically affects the transient thermal solution especially for concrete materials. User subroutines are also developed to apply the continuous FDS-ST surface nodal boundary conditions in the transient heat FE analysis. The proposed modeling framework is applied to predict the temperature and deflection of the well-documented third Cardington fire test.

반사경 배치 및 흡수기 형상에 따른 접시형 태양열 집열기의 열손실 해석 (Analysis of Heat Loss with Mirror Array and Receiver Shapes on the Dish Solar Collector)

  • 서주현;마대성;김용;강용혁;서태범
    • 설비공학논문집
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    • 제20권1호
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    • pp.35-41
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    • 2008
  • The radiative heat loss from a receiver of a dish solar collector is numerically investigated. The dish solar collector considered in this paper consists of a receiver and multi-faceted mirrors. In order to investigate the performance comparison of dish solar collectors, six different mirror arrays and four different receivers are considered. A parabolic- shaped perfect mirror of which diameter is 1.40 m is considered as the reference for the mirror arrays. The other mirror arrays which consist of twelve identical parabolic-shaped mirror facets of which diameter are 0.405 m are suggested for comparison. Their reflecting areas, which are 1.545 $m^{2}$, are the same. Four different receiver shapes are a conical, a dome, a cylindrical, and a unicorn type. The radiative properties of the mirror surfaces and the receiver surfaces may vary the thermal performance of the dish solar collector so that various surface properties are considered. In order to calculate the radiative heat loss in the receiver, two kinds of methods are used. The Net Radiation Method that is based on the radiation heat balance on the surface is used to calculate the radiation heat transfer rate from the inside surface of the receiver to the environment. The Monte-Carlo Method that is the statistical approach is adopted to predict the radiation heat transfer rate from the reflector to the receiver. The collector efficiency is defined as the results of the optical efficiency and the receiver efficiency. Based on the calculation, the unicorn type has the best performance in receiver shapes and the STAR has the best performance in mirror arrays except the perfect mirror.

3차원 적층 제조 공정(DED) 기반 Al-6061+Al-12Si 합금 조합 실험 (Combinatorial Experiment for Al-6061 and Al-12Si alloy Based on Directed Energy Deposition (DED) Process)

  • 전서연;박수원;송용욱;박지원;박현영;이보람;최현주
    • 한국분말재료학회지
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    • 제30권6호
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    • pp.463-469
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    • 2023
  • Aluminum alloys, known for their high strength-to-weight ratios and impressive electrical and thermal conductivities, are extensively used in numerous engineering sectors, such as aerospace, automotive, and construction. Recently, significant efforts have been made to develop novel aluminum alloys specifically tailored for additive manufacturing. These new alloys aim to provide an optimal balance between mechanical properties and thermal/electrical conductivities. In this study, nine combinatorial samples with various alloy compositions were fabricated using direct energy deposition (DED) additive manufacturing by adjusting the feeding speeds of Al6061 alloy and Al-12Si alloy powders. The effects of the alloying elements on the microstructure, electrical conductivity, and hardness were investigated. Generally, as the Si and Cu contents decreased, electrical conductivity increased and hardness decreased, exhibiting trade-off characteristics. However, electrical conductivity and hardness showed an optimal combination when the Si content was adjusted to below 4.5 wt%, which can sufficiently suppress the grain boundary segregation of the α-Si precipitates, and the Cu content was controlled to induce the formation of Al2Cu precipitates.

여름철 해변지역의 인간 열환경지수 및 열쾌적성 - 제주특별자치도 제주시 구좌읍 월정리 해변 - (Human Thermal Sensation and Comfort of Beach Areas in Summer - Woljeong-ri Beach, Gujwa-eup, Jeju-si, Jeju Special Self-Governing Province -)

  • 박수국;신지환;조상만;현철지;강훈
    • 한국조경학회지
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    • 제44권4호
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    • pp.100-108
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    • 2016
  • 최근에 관광기후지수가 생리등가온도(PET)와 범용열기후지수(UTCI)와 같은 완전한 인간 에너지 균형 모델들을 포함함으로써 발전되어 오고 있다. 이 연구는 해변에서의 조경계획 및 설계를 위해, 2015년 봄과 여름에 대한민국 제주특별자치도 월정리해변에서 인간 열환경지수 및 열쾌적성을 조사하였다. 미기후 측정과 국제표준화기구 10551을 바탕으로 만들어진 설문조사를 동시에 실시하였으며, 성인 869명이 참가하였다. 그 결과, 생리적인 요소만 고려된 '열환경 지각'과 '열환경 선호도'가 선형 회귀 분석에서 생리등가온도와 92.8과 87.6%의 높은 결정계수를 나타내었다. 그러나, 생리적 요소와 심리적 요소 둘 다 고려된 '열환경 평가', '열환경 수용도'와 '열환경 부담도'에서는 60.0, 21.1, 46.4%로 낮은 결정계수를 보였다. 그렇지만, 생리등가온도와의 상관성 분석에서는 모두 0.01 레벨에서 유의성이 있는 것으로 나타났다. 인간 열환경 지수를 나타내는 '열환경 지각'에서 덥지도 춥지도 않는 '중간'의 생리등가온도의 범위는 $25{\sim}27^{\circ}C$로 나타났으나, 미국의 냉온난방협회 표준 55에서 추천한 20% 이하의 불만족성 범위는 없었다. 다만, '열환경 평가'와 '열환경 부담도'에서 $21{\sim}32^{\circ}C$$17{\sim}37^{\circ}C$의 생리등가온도 범위들이 그 추천범위에 속하는 것으로 나타났다. 그러므로, $21{\sim}32^{\circ}C$의 생리등가온도를 해변지역의 조경계획 및 디자인뿐만 아니라 관광 및 레크리에이션 계획을 위한 인간 열쾌적성 범위로 적용될 수 있을 것이다. 해변에서의 열 스트레스 레벨들은 한국의 내륙들보다 $2{\sim}5^{\circ}C$ 높게 나타났으며, 대만과 나이지리아와 같은 열대지역과 유사한 높은 결과들을 보였고, 서 중유럽과 이스라엘의 텔아비브보다 높은 것으로 나타났다.

급속운동을 하는 입자물질의 동적거동 (Dynamic Behaviour of Granular Meterial during the Rapid Motion)

  • 황학
    • 한국지반공학회지:지반
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    • 제10권4호
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    • pp.103-118
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    • 1994
  • 입자물질의 빠른 움직임을 미시적으로 관찰하고 이를 연속체이론에 적용하였다. 두 입자의 상호충돌현상에서 두 종류의 시간 즉 미행시간과 접촉시간을 나누었다. 전자는 시간에 따라 변하는 움직임과 체적의 변화를 나타내며, 후자는 두 입자가 접촉시에 걸린 시간을 뜻하며 이 크기는 입자의 탄성성질을 나타낸다. 이러한 두 종류의 시간을 이용하여 4개의 상태변수 즉 압축응력, 점성, 에너지전달률 그리고 에너지손실률로서 동력학적 구조거동식을 세웠다. 연속체이론의 질량, 운동량 및 에너지방정식을 위의 상태변수로서 표기하고 이를 다시 두 가지의 모델에 적용한 결과 탄성성질로 인한 이완 및 에너지 흡수현상이 나타났다.

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