• 제목/요약/키워드: heating temperature distribution

검색결과 547건 처리시간 0.029초

Mobile Smart Device Cover Glass 성형기기의 가열시스템 열해석에 관한 연구 (Study on Thermal Analysis for Heating System of Mobile Smart Device Cover Glass Molding Machine)

  • 신환준;이준경
    • 한국기계가공학회지
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    • 제13권4호
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    • pp.50-55
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    • 2014
  • Currently, flat cover glasses are widely applied to mobile devices. However, for a good design and for convenience of use, curved cover glasses are in demand. Thus, many companies are attempting to produce curved cover glasses using a shaving technique, but the production efficiency is very low. Therefore, a molding technique has been adopted to increase the efficiency of curved glass production systems. For a glass molding system, a uniform temperature distribution of the mold is crucial to produce high-quality curved cover glasses. Before setting the heating conditions of the molding system for a uniform temperature distribution by a thermal analysis, verification is required. Therefore, in this study, temperature measurements were conducted for a prototype molding system and the experimental results were compared with simulation computations. The temperatures of the heating block surface were in good agreement with the computational results for transient and steady conditions.

대형 Touch Screen Panel(TSP) 덮개유리 성형기의 냉각 블록 설계에 관한 연구 (A Study on the Cooling Block Design for a Large Touch Screen Panel (TSP) Cover Glass Molding System)

  • 이준경
    • 한국기계가공학회지
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    • 제19권6호
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    • pp.36-42
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    • 2020
  • Nowadays, the touch screen panel (TSP) cover glass for mobile smart devices is being developed with a curved glass shape due to different design requirements. Because the sizes of mobile smart devices continue to increase, there has also been a great increase in the demand for large-area curved glass greater than 20 inches. In this study, heat and fluid flow analysis using CFD was performed to optimize the heating surface temperature distribution of the large curved glass formation system. Five cooling water flow paths in the cooling block were designed and analyzed for each case. A function that can quantitatively calculate the temperature uniformity of the heating surface was proposed and these values were obtained for the five models. The temperature distributions of the heating surface and the energy consumption of the heating system were also compared and comprehensively analyzed. Based on the analysis results of the five different cooling channel path models, the optimal path design could be presented.

지역난방 열사용시설 자동제어시스템 개선을 통한 회수온도 저감 연구 (The Decrease of Return Temperature by Improvement of the Consumer's Control System in District Heating)

  • 하승규;김연홍;이훈
    • 대한설비공학회:학술대회논문집
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    • 대한설비공학회 2006년도 하계학술발표대회 논문집
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    • pp.245-251
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    • 2006
  • The main idea of this study is to turn attention on the question of good cooling ability of customer substations in large district heating networks. The main reason for that is based on our experience that the optimization of district heating very often is directed toward production, whereas questions of optimal distribution are neglected if only the necessary load can be supplied and the customer's request for comfort is met. Our view is that low return temperature(operational temperature differences, ${\Delta}T$) in district heating systems is an Important feature for efficient net operation and gives both economic and operational benefits to the district heating supplier Furthermore, it is as well a prerequisite for meeting the customers demand for reliable supply of the heat load. However, in many practical cases we have seen that district heating return temperatures are higher than necessary. Hence, the aim of the study is to propose and verify a method for detection of the most critical consumers of the net and to identify the reasons for resulting high return temperature. From the results, temperature control system is presented as one of the most important reason of high return temperature in DH networks.

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토마토 재배 온실의 환경조절에 따른 온습도 균일도 분석 (Analysis on the Uniformity of Temperature and Humidity According to Environment Control in Tomato Greenhouses)

  • 남상운;김영식
    • 생물환경조절학회지
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    • 제18권3호
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    • pp.215-224
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    • 2009
  • 공기유동 제어기술의 개발을 위한 기초자료를 제공 할 목적으로 토마토 재배 온실의 냉난방과 환기 및 공기유동 관련 실태를 조사하고, 온실유형과 난방방식별 온습도 분포를 실측하여 균일도를 분석하였다. 충남 부여 세도지역의 토마토 재배 온실 136농가를 대상으로 조사한 결과 대부분을 차지하는 단동 플라스틱 온실의 천창 설치 비율이 낮고 환기팬과 유동팬 설치비율도 매우 낮을 뿐만 아니라 설치제원도 편차가 매우 큰 것으로 나타났다. 아치형 단동 플라스틱온실의 천창 환기 구조의 개발보급과 연동곡부의 천창도 지붕상부로 이동시킬 필요가 있으며, 개별 천창구조 및 환기팬과 유동팬에 대한 설치 가이드라인의 제정이 요구된다. 냉방설비를 설치한 농가는 하나도 없었으며 난방방식의 대부분을 차지하는 온풍난방에서 덕트의 설치제원 역시 편차가 큰 것으로 나타났고, 온풍덕트의 배기풍속 및 배기온도 또한 거리에 따른 편차가 매우 큰 것으로 관측되었다. 수출경쟁력 화보를 위한 고품질의 생산물을 연중 안정적으로 생산하기 위해서는 온실냉방기술의 보급이 절실하며 난방방식이나 덕트설치 방식의 개선이 필요한 것으로 판단된다. 온실내 온습도 분포가 균일한지 여부를 판단하는 지표로 사용되고 있는 최대 편차와 실제 균등한 정도를 나타낼 수 있는 균일도와의 관계를 분석해 본 결과 높은 상관관계를 보였으나 주간에는 직선식으로 야간에는 2차 곡선식으로 다르게 표현되었다. 온습도 분포의 균일한 정도를 판정할 수 있는 객관적인 기준이 마련된다면 최대편차 대신 균일도를 지표로 사용하는 것이 더 합리적일 것으로 판단된다. 온실유형과 난방방식에 따라 온 습도분포의 균일도가 상당히 다른 것을 확인할 수 있었으며 야간에는 온수난방의 경우 이랑배관으로, 온풍난방의 경우 온풍덕트의 적절한 배치를 통하여, 주간에는 환기와 공기유동을 통하여 균일도를 개선할 수 있을 것으로 판단되었다.

강판 마감형 조립식 벽패널 복사냉난방시스템의 냉난방 방열 특성 평가 (Evaluation of Heating and Cooling Thermal Output Characteristics of Prefabricated Steel Wall Panel System for Radiant Heating and Cooling)

  • 임재한;구보경;김성임;송승영
    • 한국태양에너지학회 논문집
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    • 제33권2호
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    • pp.70-77
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    • 2013
  • Recently the radiant panel heating and cooling system has been regarded as an alternative of low temperature heating and high temperature cooling by applying the renewable energy sources to the heating and cooling of buildings. Especially this system can be used as HVAC system alternatives in super high-rise buildings for energy saving and thermal comfort. Also it can be possible to reduce the plenum space because the minimum ventilation air will be supplied into the space. This study focused on the evaluation the basic characteristics of thermal output in prefabricated steel wall panel system for radiant heating and cooling. In order to evaluate the thermal output according to both various supply water temperatures and supply water flow rates, three-dimensional dynamic heat transfer analysis was performed. As results, for the heating mode, thermal output increased by 26% with the supply temperature increasing by $5^{\circ}C$. The surface temperature of panels range within $1{\sim}3^{\circ}C$. For the cooling mode, thermal output decreased by 18.2% with the supply temperature increasing by $2^{\circ}C$. The surface temperature of panels range within $0.5{\sim}1^{\circ}C$ and it was shown the even temperature distribution.

컨테이너하우스의 바닥과 벽면에 엑셀파이프 매설에 의한 벽면, 바닥, 공기, 온수의 온도분포 특성 (Characteristics of Temperature Distribution of Wall, Floor, Air and Hot Water by Burying the Excel Pipe on the Floor and Wall of a Container House)

  • 조동현
    • 한국기계가공학회지
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    • 제21권2호
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    • pp.94-100
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    • 2022
  • A study was conducted to significantly increase the heat transfer area by simultaneously burying the excel pipe in the floor and wall of a container house, thereby greatly reducing the initial heating time. In addition, a small hot water boiler suitable for the heating load of a small container house with a maximum area of 6 m2 was studied. A wall-mounted hot water boiler was developed as a result of the study. When a hot water boiler is installed outdoors for heating, heat radiation energy is lost in winter from the hot water boiler and hot water pipe due to the low temperature. We propose an approach through which the energy loss was greatly reduced and the temperature of hot water increased in proportion to the operating time. Moreover, as the mass flow rate of the hot water flowing inside the excel pipe increased, the temperature of the hot water decreased. The temperature of the wall and floor surfaces of the container house increased in proportion to the increase in the mass flow rate of hot water flowing inside the excel tube. Natural convection heat transfer was realized from the wall and floor surfaces of the container house, and the heat transfer area was increased by a factor of 3 with respect to heat transfer area limited to the floor by the existing hot water panel. As a result, the initial temperature increase rate was much higher because of the larger heat transfer area.

종양의 온열치료를 위한 마이크로잔 조사장치의 제작과 응용 (Fabrication of Microwave Applicator for Hyperthermia and Thermal Distribution in Tissues)

  • 추성실;이종태;김귀언
    • Radiation Oncology Journal
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    • 제2권1호
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    • pp.11-20
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    • 1984
  • The renewed interest in the use of hyperthermia in cancer therapy is bases on radiobiological and clinical evidence indicated that there may be a significant therapeutic advantage with the use of heat alone or combined with radiation or chemotherapy, There are many methods for generating heat for localized tumor as like radiofrequency, microwave, electromagnetic induction and ultrasound. But it is very difficult to be even thermal dose distribution and stable output of power and then the detection of temperature in tumor is difficult to be precise with thermocouples and semiconductor sensors. We designed the microwave heating generator, dipole antenna applicators and autometic temperature controlled thermocouples for localized hyperthermia on skin and in cavities. 1. The microwave generator with 120 W, 2,450MHz magnetron could be heating up to $40^{\circ}C\~50^{\circ}C\;for\;1\~2$ hours in living tissues. 2. The thermal dose distribution in tissue with microwave was described $42^{\circ}C\~44^{\circ}C$ with in 3 cm depth and $2\~6cm$ diameter area. 3. Skin surface heating applicator with spiral 3 times wave length antenna radiated high Power of microwave. 4, Intracavitary heating applicator with dipole antenna with autometic control temperature sensor kept up continuously constant temperature in tissue. 5. For constant thermal distribution, applied two steps power with 10W microwave after $17\~20W$ during first 10 minutes. 6. The cooling rate by blood flew in living tissue was rised as $10\%$ then meats.

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반용융 단조를 위한 소재의 유도 가열 (Induction Heating of a Billet for Semi-Solid Forging)

  • 최재찬;박형진;김병민
    • 한국정밀공학회:학술대회논문집
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    • 한국정밀공학회 1997년도 춘계학술대회 논문집
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    • pp.670-674
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    • 1997
  • Semi-solid forging is a compound forging technology to deventional forging process. Among several steps of semi-solid forging process, the heating step of a billet prior to semi-solid forging step is necessarily required to obtain globular microstructure. For the forming operation to work properly, it is also important to heat the billet uniformly for the uniformity of solid-liquid distribution. To satisfy these requirements, induction heating has been generally used for a long time. This paper presents the method to find heating condition and the temperature distribution inside of a billet with a induction heating apparatus by comparing the computer simulation with experiment for aluminum alloys Al2024 and A356.

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반용융 단조를 위한 소재의 유도 가열 (Induction Heating of a Billet for Semi-Solid Forging)

  • Park, J.C.;Park, H.J.;Kim, B.M.
    • 한국정밀공학회지
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    • 제14권8호
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    • pp.15-20
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    • 1997
  • Semi-solid forging is a compound forging technology to develop conventional forging process. Among several steps of semi-solid forging process, the heating step of a billet prior to semi-solid forging step is necessarily required to obtain globular microstructure. For the forming operation to work properly, it is also important to heat the billet uniformly for the uniformity of solid-liquid distribution. To satisfy these requirements, induction heating has been generally used for a long time. This paper presents the method to find heating condition and the temperature distribution inside a billet with a induction heating apparatus by comparing the computer simulation with experiment for aluminium alloys A12024 and A356.

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$TiB_2$ SHS 및 직접 접촉가열에 의한 동시 가압법 : 온도분포 모델링 및 공급에너지와 치밀화 관계 (Simultaneous Consolidation of Titanium Diboride with Self-Propagating High-Temperature Synthesis, Direct Contact-Heating, and Pressure: Modeling of Temperature Distribution and the Relationship between Applied Energy and Densification)

  • 정진근;조건;이형복
    • 한국세라믹학회지
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    • 제32권7호
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    • pp.817-824
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    • 1995
  • TiB2 was simultaneously synthesized and densified with concurrent self-propagating high-temperature synthesis and direct contact-heating by electrcial power input and pressure. Density of TiB2 synthesized by self-propagating high-temperature synthesis and consolidated simultaneously by direct contact-heating and pressure was maximum 80% of the theoretical density (4.52g/㎤). Temperature profile was analyzed by solving heat balance equation with numerical method (FTCS method). The temperature of the sample was sufficiently raised to that temperature sufficient to be densified. It was ascertained that the density of the SHS synthesized TiB2 is exponentially proportinal to the input thermal energy per mass.

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