• Title/Summary/Keyword: 차량 냉각계

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이것이 신기술이다 - F/1.0 이중배율 비냉각 열화상카메라 광학계 개발

  • Kim, Hyeon-Gyu
    • The Optical Journal
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    • s.122
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    • pp.41-43
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    • 2009
  • 본 연구에서는 최근에 민수용으로 활용 빈도가 높은 $320{\times}240$ 어레이를 갖는 비냉각 검출기에 적합하도록 F/1.0. 이중배율 광학계를 설계제작하여 열영상을 획득하고 광학성능을 확인하기 위하여 최소분해가능온도차(MRTD; Minimum Resolvable Temperature Difference) 값을 측정하고 사람과 차량의 탐지를 추정하였다.

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Vehicle Fuel Economy Improvement by Studies on the Engine Cooling and Ancilliaries System of the Heavy Duty Engine (차량 연비 향상을 위한 대형 디젤엔진 차량의 엔진 냉각 및 부대장치 연구)

  • Lyu, Myung-Seok
    • Transactions of the Korean Society of Automotive Engineers
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    • v.15 no.3
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    • pp.79-84
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    • 2007
  • Recently it is strongly required to develop the better fuel economy as well as basic power performance based on strict emission legislation. This paper focuses on studies of the engine cooling and ancillaries system among fuel economy factors in the developing stage. Firstly through the analysis of the current specifications, it is assessed whether each components may be designed properly, not overdesigned. Secondly, it is predicted how the fuel economy of each components can be improved. Finally the results are confirmed by vehicle field test equppted with the updatedcomponents. This study found good agreementbetween the prediction and the field test on the vehicle fuel economy improvements of the heavy duty engine vehicle with updated components such as engine cooling and ancilliaries.

기획특집(2) 적외선 광학계 산업 동향 - 적외선 열화상 카메라 응용분야

  • Kim, Jeong-Ho
    • The Optical Journal
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    • s.141
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    • pp.21-23
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    • 2012
  • 신종플루의 전 세계적 유행과 함께 적외선 광학계는 일반인에게 익숙한 기술이 되었다. 스웨덴에서 최초로 개발된 적외선 카메라는 현재 군수용뿐만 아니라 보안, 의료, 차량, 재난구조 등 다양한 분야에 적용되고 있다. 이런 민간분야 시장 성장에는 핵심부품인 적외선 렌즈와 IR Detecter의 가격 인하가 가장 큰 역할을 하고 있다. 특히 차량용 적외선 카메라의 채용은 관련시장을 폭발적으로 성장시킬 가능성을 인정받고 있으며 이런 흐름은 다시 관련 분야의 가격 인하요인으로 강력히 작용하고 있다. 아래표의 적외선 광학계의 수요 산업군 메가 트렌드(<적외선 수요 산업군> 표)는 자동차, 플랜트, 보안, 소방방재, 방위산업 등 다양한 분야의 적외선 광학관련 수요를 포함하고 있어 향후 주요 산업군으로 부각될 것으로 예상된다. 특히 저가양산이 가능해 다양하게 주목받고 있는 성형방식 적외선 광학렌즈 관련 주요 해외 선진업체의 기술수준은 적외선 원천소재를 제외하고는 국내에도 이미 세계수준의 기술을 보유하고 있으며, IR Detector 관련 기술 역시 냉각식 및 비냉각식 분야에서 세계최고 수준의 원천기술을 보유 중이어서 국내 업체의 양산화 기술이 완성되면 관련 세계 시장 선점이 가능하며 향후 5년이 이를 결정짓는 중요한 시점이 될 것이다.

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An Experimental Study on the Characteristics of Metal Temperature and Heat Rejection to Coolant of Gasoline Engine (가솔린엔진의 금속면온도 및 냉각수로의 전열 특성에 관한 실험적 연구)

  • 오창석;유택용;신승용;최재권
    • Transactions of the Korean Society of Automotive Engineers
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    • v.9 no.3
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    • pp.35-41
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    • 2001
  • In recent applications, map controlled thermostat has been adapted to optimize engine cooling system and vehicle cooling system. First of all, this strategy is focused on improving fuel consumption rate and reducing emissions, especially unburned hydrocarbon. The object can be obtained through controlling engine metal temperature by varying engine coolant temperature with engine load and speed. To achieve this goal, it is necessary to understand the characteristics of engine metal temperature and heat rejection rate to coolant. From the results of tested engines, it is obvious that fuel consumption rate has more dominant effect on engine metal temperatures than the corresponding engine power does. Also, Re-Nu relation which shows heat rejection rate to coolant in function of air-fuel mixture and engine specifications has been studied. Also, the empirical Re-Nu relation at full loaded engine was developed.

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A Study of the Experiment and the Calculation Method on the Coolant Flow Rate of Engine and Vehicle Cooling System (엔진 및 차량냉각계의 냉각수유량 측정실험 및 계산방법에 관한 연구)

  • 오창석;유택용;이은현;최재권
    • Transactions of the Korean Society of Automotive Engineers
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    • v.7 no.6
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    • pp.1-7
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    • 1999
  • In this study, the prediction method of coolant flow rates has been developed and applied to an engine and vehicle cooling system. The flow rate passing through each component of the system is very important parameter to evaluate the heat transfer process form the combustion gas to the coolant and the heat rejection process form the radiator /heater to the ambient air. However, the present study reveals that the measurement using the flowmeter fails to give practical flow rates due to its additive resistance. In contrast, the present method which uses the parallel and serial relationship of flow resistance proved to be a good tool to predict the real flow rates. It can be also used to design the cooling system in the incipient stage of engine/vehicle development . The procedure was coded to the computer program so as to use it flexibly and, in the future, to expand it into an independent design tool of the whole cooling system including the heat release and rejection.

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Development of BLDC Motor for HEV Engine Cooling and Battery Cooling System (하이브리드 차량의 엔진 및 배터리 냉각팬 구동용 BLDC모터 개발)

  • Lee, Daewoong
    • Transactions of the Korean Society of Automotive Engineers
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    • v.23 no.2
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    • pp.153-160
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    • 2015
  • Hybrid Electric Vehicles(HEVs) have seriously come into prevalence recently as car manufacturers and consumers have become more aware of the environmental and economic problems of conventional vehicles. For the alternative power-train and battery cooling systems in HEVs, an effective thermal management system is required, and many automakers are interested in using Brushless DC(BLDC) motors for cooling fans for the overall traction unit's performance and energy saving capability. This paper presents the development status of BLDC motors as major parts of the power-train, i.e. the engine cooling and battery cooling fans of HEVs. A design that uses BLDC motors for the power-train and each battery cooling fan, is successfully implemented through using electro-magnetic analysis, and prototype BLDC motors are examined. As experimental results, the BLDC motors achieved an efficiency of 85% as engine cooling fans and 72% as a battery thermal management fan motor. The electric cogging noise is significantly reduced by changing the skew of the slot pitch angle and optimizing the magnetic shape.

용탕직접압연된 Al-Mg-Mn 합금판재의 기계적 특성

  • Kim, Hyeong-Uk;Kim, Min-Gyun;Im, Cha-Yong;Gang, Seok-Bong
    • Proceedings of the Materials Research Society of Korea Conference
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    • 2009.11a
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    • pp.43.2-43.2
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    • 2009
  • Al-Mg 알루미늄 합금은 강도가 높고 성형성이 우수하여 수송기기 경량화용 소재로서 사용량이 증가하고 있다. 특히고강도 특성을 보이는 Al-Mg-Mn합금은 자동차, 선박및 철도차량등의 형재 및 판재로 그 사용량이 증가하고 있다. 또한 결정립을 미세화 시킨 Al-Mg-Mn합금판재의 경우에는 온간성형으로 복잡한 형상의 판재부품제조에 사용되고 있다. 연속주조공정인 Twin roll strip casting(TRC)은용탕으로부터 직접 판재를 생산할 수 있는 공정으로 주로 순알루미늄계열의 판재 생산에 사용되고 있으나 최근에는 고강도 판재의 저비용 생산을 위하여 고합금계 판재에 적용하는 연구가 수행되고 있다. 합금량이 높은 고강도Al-Mg계 합금의 TRC 주조시 고액공존구간이 커서 더욱 정밀한 공정제어가 필요하다. 또한 기존의 슬라브주조방식보다 높은 냉각속도로 주조가 가능하기 때문에 결정립 및 정출상의 미세화공정으로 응용되기도한다. 본 연구에서는 TRC공정을 기초로 주조시 열간 압연의효과를 동시에 부여하는 용탕직접압연공정을 개발하였으며 상용 고강도 알루미늄 합금인 5083합금 판재를제조하였다. 또한 기존 Al-Mg 합금에 Mn을 첨가하여 용탕직접압연함으로서 정출상의 크기 및 밀도를 제어하여 강도가 우수한 Al-Mg-Mn 합금판재를 제조하는 기술을 개발하였다. 용탕직접압연된 Al-Mg-Mn계 합금의 경우에 주조시 높은 냉각속도로 인하여 결정립이 미세하고 Al6Mn과 같은 미세한 정출상이 다량 형성되었으며, 최종압연 및 열처리에 의하여 높은 강도를 갖는 고강도 알루미늄 합금 판재의 제조가 가능하였다.

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A Study on the Heat Rejection to Coolant in a Gasoline Engine (가솔린 엔진에서의 냉각수로의 전열량에 대한 연구)

  • 류택용;신승용;이은현;최재권
    • Transactions of the Korean Society of Automotive Engineers
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    • v.5 no.6
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    • pp.77-88
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    • 1997
  • The heat rejection to coolant is a dominant factor for building vehicle cooling system such as radiator and cooling fan. Since the vehicle cooling system also has effects on fuel consumption and noise, the study of heat rejection to coolant has been emphasized. However, the study on heat rejection to coolant has been mainly focused on the field that related to the characteristics of combustion and localized heat loss. It is no much of use in design for the entire cooling system because it is focused on such a specific point. In this work, the heat rejection rate to coolant for four different engines are obtained to derive a simple heat transfer empirical formula that can be applied to the engine cooling system design, and it is compared with the other studies. Also, to observe effects of engine operation factors and heat transfer factors on coolant, we measured the metal temperature and the heat rejection rate. The heat rejection to coolant does not depend significantly upon the coolant flowrate, but mainly upon the amount of air fuel mixture and the air fuel ratio as long as the composition of coolant does not change. The reduction of heat rejection to coolant did not effectively improve the fuel consumption, but was mostly converted to raise the exhaust gas temperature and the oil temperature.

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Dynamic Modeling of Cooling System Thermal Management for Automotive PEMFC Application (자동차용 연료전지 냉각계통 열관리 동적 모사)

  • Han, Jae Young;Lee, Kang Hun;Yu, Sang Seok
    • Transactions of the Korean Society of Mechanical Engineers B
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    • v.36 no.12
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    • pp.1185-1192
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    • 2012
  • The typical operating temperature of an automotive fuel cell is lower than that of an internal combustion engine, which necessitates a refined strategy for thermal management. In particular, the performance of the cooling module has to be higher for a fuel cell system because the temperature difference between the fuel cell and the surrounding is lower than in the case of the internal combustion engine. Even though the cooling system of an automotive fuel cell determines the operating temperature and temperature distribution of the fuel cell, it has attracted little research attention. This study presents the mathematical model of a cooling system for an automotive fuel cell system using Matlab/$Simulink^{(R)}$. In particular, a radiator model is developed for design optimization from the development stage to the operating stage for an automotive fuel cell. The cooling system model comprises a fan, pump, and radiator. The pump and fan model have an empirical relation, and the dynamics of the pump and fan are only explained by motor dynamics. The basic design study was conducted, and the geometric setup of the radiator was investigated. When the control logic was applied, the pump senses the coolant inlet temperature and the fan senses the coolant out temperature. Additionally, the cooling module is integrated with the fuel cell system model so that the performance of the cooling module can be investigated under realistic operating conditions.