• 제목/요약/키워드: Liquid transfer

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2.3 kW급 전기자동차 배터리팩용 냉각 장치의 열전달 특성에 관한 해석적 연구 (Numerical Analysis of Heat Transfer Characteristics of Cooling System for 2.3 kW EV Battery Pack)

  • 성동민;박용석;성홍석;서정세
    • 한국기계가공학회지
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    • 제21권6호
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    • pp.44-49
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    • 2022
  • The improvement in the battery performance and life using a battery thermal management system directly affects the improvement in the performance, life, and energy efficiency of electric vehicles. Therefore, this study numerically analyzed the heat exchange processes between the coolant inside the cooling plate channel and the heat generated by the battery. The cooling performance was analyzed based on the average temperature, temperature uniformity, and the maximum and minimum temperature differences of the battery. A performance difference existed depending on the coolant inlet temperature but showed the same tendency of cooling performance according to the shape of each plate's channel. Type 1 showed the best results in terms of battery temperature uniformity, which is the most important measure of battery performance; Type 2 showed the best results in terms of the average temperature of the battery; and Type 3 showed the best results in terms of the maximum and minimum temperature differences of the battery compared with that of the other cooling plates.

EHC 기반 Urea-SCR 시스템 히터 표면온도 분포의 1-D 모델링 (1-D Modeling of Heater Surface Temperature Distribution in EHC-based Urea-SCR System)

  • 박선홍;손지현;문석수;오광철;장성욱;박성서
    • 한국분무공학회지
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    • 제27권1호
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    • pp.11-17
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    • 2022
  • In upcoming Post Stage-V and Tier 5 regulations of construction machineries, nitrogen oxide (NOx) emissions are strictly limited in cold start conditions. In response to this, a method of improving NOx conversion efficiency has been applied by installing an electric heating catalyst (EHC) in front of conventional urea-SCR systems so that the evaporation and thermal decomposition of urea-water solution can be promoted in cold start conditions. In this strategy, the evaporation and thermal decomposition of urea-water solution and corresponding NOx conversion efficiency are governed by temperature conditions inside the EHC. Therefore, characterizing the temperature distribution in the EHC under various operating conditions is crucial for the optimized operation and control of the EHC in Urea-SCR systems. In this study, a 1-D modeling analysis was performed to predict the heater surface temperature distribution in EHC under various operating conditions. The reliability of prediction results was verified by comparing them with measurement results obtained using an infrared (IR) camera. Based on 1-D analysis results, the effects of various EHC operation parameters on the heater surface temperature distribution were analyzed and discussed.

Design of Projection Optical System for Target Imaging Simulator with Long Exit Pupil Distance

  • Xueyuan Cao;Lingyun Wang;Guangxi Li;Ru Zheng
    • Current Optics and Photonics
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    • 제7권6호
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    • pp.745-754
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    • 2023
  • In order to test the recognition ability and accuracy of a target imaging simulator under the irradiation of solar stray light in a laboratory environment, it needs to be fixed on a five-axis turntable during a hardware-in-the-loop simulation test, so the optical system of the simulator should have a long exit pupil distance. This article adopts a secondary imaging method to design a projection optical system suitable for thin-film-transistor liquid crystal displays. The exit pupil distance of the entire optical system is 1,000 mm, and the final optimization results in the 400 nm-850 nm band show that the modulation transfer function (MTF) of the optical system is greater than 0.8 at the cutoff frequency of 72 lp/mm, and the distortion of each field of view of the system is less than 0.04%. Combined with the design results of the optical system, TracePro software was used to model the optical system, and the simulation of the target imaging simulator at the magnitude of -1 to +6 Mv was analyzed and verified. The magnitude error is less than 0.2 Mv, and the irradiance uniformity of the exit pupil surface is greater than 90%, which meets the requirements of the target imaging simulator.

Development and validation of the lead-bismuth cooled reactor system code based on a fully implicit homogeneous flow model

  • Ge Li;Wang Jingxin;Fan Kun;Zhang Jie;Shan Jianqiang
    • Nuclear Engineering and Technology
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    • 제56권4호
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    • pp.1213-1224
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    • 2024
  • The liquid lead-bismuth cooled fast reactor has been in a single-phase, low-pressure, and high-temperature state for a long time during operation. Considering the requirement of calculation efficiency for long-term transient accident calculation, based on a homogeneous hydrodynamic model, one-dimensional heat conduction model, coolant flow and heat transfer model, neutron kinetics model, coolant and material properties model, this study used the fully implicit difference scheme algorithm of the convection-diffusion term to solve the basic conservation equation, to develop the transient analysis program NUSOL-LMR 2.0 for the lead-bismuth fast reactor system. The steady-state and typical design basis accidents (including reactivity introduction, loss of flow caused by main pump idling, excessive cooling, and plant power outage accidents) for the ABR have been analyzed. The results are compared with the international system analysis software ATHENA. The results indicate that the developed program can stably, accurately, and efficiently predict the transient accident response and safety characteristics of the lead-bismuth fast reactor system.

Characteristics of debris resulting from simulated molten fuel coolant interactions in SFRS

  • E. Hemanth Rao;Prabhat Kumar Shukla;D. Ponraju;B. Venkatraman
    • Nuclear Engineering and Technology
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    • 제56권1호
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    • pp.283-291
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    • 2024
  • Sodium cooled Fast Reactors (SFR) are built with several engineered safety features and hence a severe accident such as a core melt accident is hypothetical with a probability of <10-6/ry. However, in case of such accidents, the mixture of the molten fuel and structural materials interacts with sodium. This phenomenon is known as Molten Fuel Coolant Interaction (MFCI) and results in fragmentation of the melt due to various instabilities. The fragmented particles settle as a debris bed on the core catcher at the bottom of the reactor vessel, and continue to generate decay heat. Characteristics of the debris particles play a vital role in heat transfer from the bed and need thorough investigation. The size, shape, and physical state of the debris depend on the associated fragmentation mechanism, superheating of the melt, and sodium temperature. Experiments have been conducted by releasing simulated corium, a molten mixture of alumina and iron generated by the aluminothermy process at ~2400 ℃ into liquid sodium, to study the fragmentation phenomena. After the experiment, the fragmented debris was retrieved and the particle size distribution was determined by sieve analysis. The debris was subjected to microscopic investigation for obtaining morphological characteristics. Based on the characteristics of debris, an attempt has been made to assess of fragmentation mechanism of simulated corium in sodium.

Stability of the growth process at pulling large alkali halide single crystals

  • V.I. Goriletsky;S.K. Bondarenko;M.M. Smirnov;V.I. Sumin;K.V. Shakhova;V.S. Suzdal;V.A. Kuznetzov
    • 한국결정성장학회지
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    • 제13권1호
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    • pp.5-14
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    • 2003
  • Principles of a novel pulse growing method are described. The method realized in the crystal growing on a seed from melts under raw melt feeding provided a more reliable control of the crystallization process when producing large alkali halide crystals. The slow natural convection of the melt in the crucible at a constant melt level is intensified by rotating the crucible, while the crystal rotation favors a more symmetrical distribution of thermal stresses over the crystal cross-section. Optimum rotation parameters for the crucible and crystal have been determined. The spatial position oi the solid/liquid phase interface relatively to the melt surface, heaters and the crucible elements are considered. Basing on that consideration, a novel criterion is stated, that is, the immersion extent of the crystallization front (CF) convex toward the melt. When the crystal grows at a <> CF immersion, the raised CF may tear off from the melt partially or completely due to its weight. This results in avoid formation in the crystal. Experimental data on the radial crystal growth speed are discussed. This speed defines the formation of a gas phase layer at the crystal surface. The layer thickness il a function of time a temperature at specific values of pressure in the furnace and the free melt surface dimensions in the gap between the crystal and crucible wall. Analytical expressions have been derived for the impurity component mass transfer at the steady-state growth stage describing two independent processes, the impurity mass transfer along the <> path and its transit along the <> one. The heater (and thus the melt) temperature variation is inherent in any control system. It has been shown that when random temperature changes occur causing its lowering at a rate exceeding $0.5^{\circ}C/min$, a kind of the CF decoration by foreign impurities or by gas bubbles takes place. Short-term temperature changes at one heater or both result in local (i.e., at the front) redistribution of the preset axial growth speed.

생물학적(生物學的) 유동층(流動層)을 이용(利用)한 폐수처리(廢水處理)에 있어서의 심층(深層) 폭기장치(曝氣裝置)에 의한 산소전달(酸素傳達) 시스템 (Oxygen Transfer System in Biological Fluidised Bed Using the Deep Shaft as Aeration Device)

  • 김환기;안송엽;정태섭
    • 대한토목학회논문집
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    • 제8권1호
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    • pp.13-24
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    • 1988
  • 생물학적(生物學的) 유동층(流動層)에 있어서 산소전달(酸素傳達) 시스템을 개발하기 위하여 수심(水深) 32 m 인 U자형 심층폭기장치(深層曝氣裝置)에 대한 관내(管內)의 유체(流體)흐름 특성 및 산소전달(酸素傳達) 특성과 생물학적(生物學的) 유동층내(流動層內)에서의 생물막(生物膜) 특성 및 산소이용(酸素利用) 관계를 연구한 결과, 심층폭기장치(深層曝氣裝置) 관내(管內)의 액체순환을 위한 추진력은 하향관(下向管) 공기주입 위치와 하향공기량(下向空氣量)의 영향을 받으며 액체의 흐름은 플러그류(流) 특성임을 확인하였다. 또한, 관내(管內) 순환유속을 0.52 m/s로 유지시킬 때 $K_La$ 값은 상향관(上向管) 25~30 m 구간에서 최대치를 나타내었고, 심층폭기장치(深層曝氣裝置)로부터 생물학적(生物學的) 유동층(流動層)에 이용될 용존산소 공급효율은 56~81%로 계산되었다. 심층폭기장치(深層曝氣裝置)를 이용한 생물학적(生物學的) 유기폐수(有機廢水) 처리에 있어서 용존산소 농도가 9.2 mg/l 이상인 경우, 생물막(生物膜) 내부의 물질확산 및 대사의 제한인자는 유기물(有機物)이었으므로 처리효율의 저하됨이 없이 유기물(有機物) 부하량(負荷量)을 효과적으로 증대시킬 수 있다.

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Phenol 유도체 처리가 Glutamin산 생성균의 발효증가에 미치는 영향에 대하여 (PHENOL DERIVATIVES EFFECTS ON GLUTAMIC ACID FERMENTATION)

  • 노영재;이경희
    • 한국수산과학회지
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    • 제12권2호
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    • pp.95-102
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    • 1979
  • glutamin산 발효용 균 Brevibacterium flavum을 phenol유도체인 guaiacol, o-vanillin의 처리 및 존재하에서 발효를 행한 결과를 요악하면 다음과 같다. 1) glutamin산 축적량은 guaiacol 및 o-vanillin을 처리하였을 때에는 각각 12.5g/l와 14.2g/l이 었으며 비 처리균에서는 7.0g/l이었다. 2) 발효중 세균의 단위량의 호흡계수(r)는 guaiacol 처리균, o-vanillin 처리균의 순서로 각각 2.1, 1.7mol/UOD.hr 이었으며, 비 처리균에서는 1.6mol/UOD.hr였다. 3. 발효중 산소의 용량계수는 guaiacol 처리균이 0.28/hr, o-vanillin 처리균이 0.40/hr였으며 비 처리균에서는 0.20/hr로서 o-vanillin 처리때가 가장 컸다. 4) Brevibacterium flavum의 개스교환배율은 guaiacol 300ppm의 존재시 0.85, o-vanillin 20ppm의 존재시에는 1.0이 되어 비 처리균의 0.75보다 큼으로서 phenol 유도체의 존재에 의해 RQ가 증가하였다. 5) $5%$의 포도당을 기질로 하여 발효를 행하였을 때 glutamin산의 최고농도에 달하는 시간은 guaiacol 처리 및 o-vanillin 처리때는 각각 52시간과 48시간이었으며 비 처리때에는 56시간이었다. 6) glutamin산 최고농도에 달했을 때의 세균농도는 guaiacol 처리균, o-vanillin 처리균, 비 처리균의 순서로 8.91, 9.41 UOD/ml 및 8.82 UOD/ml이었다. 7) $5\%$의 포도당은 기질로 했을 때 축적되는 glutamin산의 포도당에 대한 전이비율을 guaiacol 처리균에서는 $25\%$, o-vanillin 처리균에서는 $28.5\%$, 비 처리균에서는 $14.0\%$의 전이율을 나타내었다. 8) phenol유도체 처리로 발효능이 증가되는 현상이 phenol 유도체가 산소와 전자이동착체를 형성하여 원골한 산소공급을 배양계에 해주는 때문이라 생각된다.

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상변화 물질을 사용한 축열조에서의 열전달 -수직원관내에서의 내향용융실험 및 수치해석- (Heat Transfer in Heat Storage System with P.C.M. -Experimental and Numerical Investigation during Inward Melting in a Vertical Tube-)

  • 임장순;최국광;이채문;김준근;송하진;조남철
    • 태양에너지
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    • 제10권1호
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    • pp.5-13
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    • 1990
  • 온도가 일정한 외벽을 열원으로 하는 수직원통형 축열조 내에 채워진 상변화물질의 내향용융 과정에서 자연대류에 의한 열전달현상을 유한차분법을 이용하여 수치해석하였고, 그 결과를 실험을 통하여 검증하였다. 상변화물질로는 용융점온포가 $42.5%^{\circ}C$ n-docosane paraffin($C_{22}H_{46}$)을 사용하였다. 본 연구 결과에서 상변화물질의 용융속도는 액상영역의 자연대류로 인하여 축열조 상부로 갈수록 빠른 것으로 나타났다. 그리고 상변화물질의 초기온도는 액상영역 속도분포에 큰 영향을 주지 않으며, 상변화물질의 초기온도가 낮을수록 용융속도는 늦어지고 축열조의 형상비($H/r_w$)가 커질수록 자연대류는 활발해지는 것으로 나타났다. 이러한 수치해석의 결과는 실험 결과와 잘 일치하였으나, 수치해석시 상변화물질의 용융에 따르는 체적팽창을 고려하지 않았기 때문에 용융이 진행 됨에 따라 오차가 발생하였다.

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컴퓨터 CPU 냉각용 방열기 튜브 삽입길이에 따른 열유동 해석 (A Numerical Study of the Effects of Heat Transfer and Fluid Flow on Tube Insertion Length in Computer-Cooling Radiators)

  • 최진태;권오경;윤재호;김용찬
    • 대한기계학회논문집B
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    • 제35권2호
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    • pp.145-152
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    • 2011
  • 컴퓨터용 방열기의 헤더부 튜브 삽입길이에 따른 열전달 및 유동특성을 파악하기 위하여 수치해석을 수행하였다. 튜브삽입길이 0, 5, 10mm의 3가지 해석모델을 선정하였으며 해석결과의 타당성 검증을 위해 삽입길이가 5mm 일 때 샘플을 실험결과와 비교하였다. 유량분배의 균일성을 판단하기 위해 각 튜브에서 유량비를 분석하였고, 유량분배 특성을 정량적으로 비교하기 위하여 유량균일도를 정의하였다. 해석결과를 통하여 모든 샘플에서 열전달량과 압력강하는 질량유량이 증가함에 따라 점차 증가하였으며, 튜브삽입길이가 10mm(h/D=0.5)인 샘플 3의 열전달량과 압력강하는 가장 크게 나타났다. 유량균일도(Stotal )를 조사하였을 때 튜브삽입길이가 0mm(h/D=0)인 샘플 1이 0.0052로 가장 균일한 유량분포를 보였다.