• 제목/요약/키워드: PCM(Phase Change Materials)

검색결과 98건 처리시간 0.026초

건축물 열환경 특성제어를 위한 상변화 축열재 (Heat Storage Material by Using Phase Change Materials to Control Buildings Thermal Environment Characteristics)

  • 윤희관;한성국;심명진;안대현;이웅목;박종순;김재용
    • 공업화학
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    • 제21권5호
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    • pp.522-526
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    • 2010
  • 축열이용기술은 열저장효과를 이용하여 냉난방 부하가 적을 때 남는 열을 저장하였다가 부하가 증가할 때 이용하는 방법으로써, 열저장 물질의 온도이용 특성에 따라 현열축열과 잠열축열로 구분한다. 잠열축열은 특정 온도 범위에서 상변화 할 때 높은 잠열을 갖는 물질을 이용하여 열을 저장하는 방법으로 동일한 열저장을 위해 소요되는 공간 크기가 현열 축열에 비하여 작아지게 되고 일정한 온도범위에서 열의 흡수 및 방출이 가능한 특성이 있다. 본 연구는 건축물의 냉난방시 소요되는 에너지를 절약하기 위하여 상온 상변화물질을 축열재로 사용하여, 건축자재로 범용적으로 사용되고 있는 시멘트, 석고 등에 적용하고자 하였다. 제조된 물질이 에너지절약성능은 물론 건축자재로서 필요한 물성을 갖추기 위하여 최적배합 방법 및 비율을 도출하고자 하였다. 그에 따라 중량비로 3% 들어간 축열모르타르의 냉각지연효과는 약 19%로 나타났다.

Thermal Storage and Thermodynamic Characteristics of Phase Change Materials Slurries

  • Kwon, Ki-Hyun;Jeong, Jin-Woong;Kim, Jong-Hoon;Kim, Yong-Joo;Choi, Chang-Hyun
    • Food Science and Biotechnology
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    • 제18권6호
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    • pp.1392-1397
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    • 2009
  • This study was aimed at developing a low cost cold storage system for agricultural products. Three kinds of slurries: $K_1$, $K_2$, and $K_3$ slurries were developed using phase change materials (PCMs) such as tetradecane, octadecane, and sodium polyacrylate to maintain the desired temperature ranges. The slurries were manufactured by in-situ polymerization. Tetradecane and octadecane were capsulated in a core with melamine at the surface. The thermodynamic characteristics of the slurries were measured and analyzed. The latent heats of the $K_1$, $K_2$, and $K_3$ slurries at the melting points were 206.41, 186.88, and 147.91 kJ/kg, respectively. A transportable cold storage container was built to investigate the performance of the slurries as thermal storage media. The temperatures at the insides of the container could be maintained in the ranges of 0-5, 5-10, and $10-15^{\circ}C$ for more than 23, 27, and 60 hr with the $K_1$, $K_2$, and $K_3$ slurries, respectively.

음향 흐름에 의한 고-액 상변화 열 전달의 촉진 (Acoustic Enhancement of Solid-Liquid Phase Change Heat Transfer)

  • 박설현;오율권
    • 에너지공학
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    • 제11권3호
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    • pp.262-268
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    • 2002
  • The present paper investigated the effect of ultrasonic vibrations on the melting process of phase-change materials (PCM). Furthermore, the present study considered constant heat-flux boundary condition, whereas many of the previous researches had adopted constant wall-temperature condition. The results of the present study revealed that ultrasonic vibrations accompanied the effects like acoustic streaming, cavitation, and thermally-oscillating flow. Such effects are a prime mechanism in the overall melting process when ultrasonic vibrations are applied. They speed up the melting process as much as 2.5 times, compared with the result of natural melting. Also, energy can be saved by applying ultrasonic vibrations to the natural melting. In addition, temperature and Nusselt numbers over time provided a conclusive evidence of the important role of ultrasonic vibrations on the melting phenomena.

졸겔 법을 통한 라우르산 기반의 상변화 물질의 합성 (Synthesis of Lauric Acid Based Phase Change Materials Via Sol-gel Route)

  • 샤픽빈이신크;이한승
    • 한국건축시공학회:학술대회논문집
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    • 한국건축시공학회 2020년도 가을 학술논문 발표대회
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    • pp.42-43
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    • 2020
  • Lauric acid (LA) which is also known as dodecanoic acid has been selected as the phase change material (PCM) owing to eco-friendly in nature. A systematic study has been conducted for encapsulation of LA (core) with silicon dioxide (SiO2) as shell material. Different core-shell ratio was chosen to microencapsulate the LA with 10 ml of tetraethyl orthosilicate (TEOS) as the precursor solution for the formation of SiO2. The synthesis of microencapsulated LA was carried out at 2.5 pH of precursor solution. The synthesized microencapsulated LA are characterized by Fourier transform infrared spectroscope (FT-IR) and X-Ray Diffraction (XRD) which confirmed the presence of SiO2 shell on the surface of LA.

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열저장 물질로써 잠열재의 제조 및 특성 연구 (Study on Manufacturing and Characteristics of Phase Change Materials for Having Latent Heat)

  • 권기현;정진웅;최창현
    • Journal of Biosystems Engineering
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    • 제31권3호
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    • pp.168-174
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    • 2006
  • The purpose of this study is to develop the cold chain system by developing optimal phase change materials (PCM). There are some benefits from developing this system such as keeping freshness of agriculture products, saving energy, etc. The major results are as follows. To decide a latent heat material, the characteristics of water, sodium, polyacrylate, ethanol and N-tetradecane are analysed. Also, an insulating material is made by mixing water, nucleating agent and latent heat material, using cementing method. In addition, the sensitivity analysis for developed latent heat material($K_l,\;K_2,\;K_3$) is conducted. For $K_l,\;K_2,\;K_3$ which cans keep latent heat temperature, ranging from $0\;to\;5^{\circ}C,\;5\;to\;10^{\circ}C,\;10\;to\;15^{\circ}C$. it can keeps latent heat temperature at radiant heat (5, 12, $17^{\circ}C$) and transportation latent heat container both melting temperature and amount of latent heat of Kl are $-1.6{\pm}1.0^{\circ}C$, 326.51 J/g, respectively and freezing temperature and latent heat are $-7.98{\pm}1.5^{\circ}C$ and 174.18 J/g. and $K_2$ are $7.41{\pm}1.5^{\circ}C$, 89.80 J/g, respectively and freezing temperature and latent heat are $-2.14{\pm}1.5^{\circ}C$ and 83.90 J/g. and $K_3$ are $9.54{\pm}1.0^{\circ}C$, 145.42 J/g, respectively and freezing temperature and latent heat are $0.21{\pm}1.0^{\circ}C$ and 152.48 J/g.

저융점을 가진 Core 물질을 이용한 내구성 Microcapsule 제조 기술 (The Study of Encapsulation Technique for Microcapsule Using Core Materials with Low Melting Point)

  • 노근에;강유진;김상헌
    • 한국응용과학기술학회지
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    • 제18권4호
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    • pp.273-284
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    • 2001
  • A series of microcapsule were synthesized by using several PCM(Phase Change Material) as a core material and gelatin/arabic gum, melamine/formaldehyde as a shell material. Coacervation technique and in situ polymerization were adopted in synthesizing microcapsules. In the microencapsulation by coacervation, tetradecane and octadecane were used as core materials. In the microencapsulation by situ polymerization tetradecane, pentadecane, hexadecane, heptadecane, octadecane, and nonadecane were used as core material. The synthesized microcapsule was examined to observe the shape of the microcapsule. The particle size analysis was performed by particle size analyzer. The thermal properties(e.g. melting point, heat of melting, crystallization temperature, heat of crystallization, differences between melting point and crystallization temperature) were obtained by DSC(Differential Scanning Calorimeter). The stirring rate effect was investigated during the microencapsulation. It was found that with increasing the stirring rate much smaller microcapule was produced. However, this did not necessarily lead to formation of spherical microcapsule.

파라핀과 초고분자량 폴리에틸렌으로 구성된 형태안정성 상 전이 물질의 제조 및 특성 (Preparation and Properties of Shape-Stabilized Phase Change Materials from UHMWPE and Paraffin Wax for Latent Heat Storage)

  • 이현석;박재훈;임종하;서혜진;손태원
    • 폴리머
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    • 제39권1호
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    • pp.23-32
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    • 2015
  • 상 전이 물질인 파라핀 왁스를 초고분자량 폴리에틸렌(UHMWPE)과의 absorption method를 통해 파우더를 제조 후 hot press를 사용하여 형태안정성 상 전이 물질(SSPCM) composite를 제조하였다. SSPCM composite의 화학, 미세구조, 형태, 열적, 결정구조, 유변학적 특성을 조사하기 위하여 FTIR, SEM, DSC, XRD, ARES 측정을 하였다. FTIR 분석결과 파라핀 및 UHMWPE의 고유 피크들이 나타나고 있는 것을 확인하였고, SEM 분석결과 파라핀의 농도가 40 wt%까지는 표면이 상당히 팽윤되며 거친 특성을 나타냄을 확인할 수 있었고, DSC 분석결과 SSPCM에서 파라핀 및 UHMWPE의 고유 융점들이 나타났고, XRD 분석에서는 파라핀과 UHMWPE의 $2{\theta}$ 값들이 SSPCM에서도 나타남을 확인할 수 있었고, ARES 분석에서는 파라핀 농도에 따른 G', G", $tan{\delta}$ 값의 변화를 확인할 수 있었다. 종합적인 분석 결과를 통해, 파라핀의 농도가 30 wt%일 때, 형태안정성 측면에서 최적의 농도임을 확인할 수 있었다.

공회전 제한장치 차량에서 냉방 성능 유지를 위한 축냉 시스템 적용에 대한 연구 (Feasibility Study of Cold Storage System to Maintaining Cooling Performance for ISG Vehicle)

  • 이대웅
    • 설비공학논문집
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    • 제28권1호
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    • pp.7-14
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    • 2016
  • This study explores the feasibility of a cold storage system to provide thermal comfort for idle stop and go (ISG) vehicles. ISG function is the most valuable and environmental friendly technology in the current automobile industry. However, when an ISG vehicle stops, meaning when the engine standstill, the air-conditioning system does not work, because the compressor also stops. Therefore, passenger thermal comfort is not maintained, as cold air is not provided in the cabin. Consequently, many automakers have studied electric air-conditioning systems based on electrically-driven compressors or cold storage systems using phase-change materials. The experiments herein were conducted for the feasibility testing of different types of cold storage heat-exchangers, cold storage mediums, and thermo-expansion valves with current air-conditioners. The auxiliary cold storage system, filled with phase-change materials, was located behind the evaporator and almost stacked on top of it. In the experimental results, the air discharge temperature rate of increase was better than the conventional air-conditioning system when the compressor stopped and thermal comfort was maintained with $1.9{\sim}4.3^{\circ}C$ decreases within 60 seconds. The #1 cold storage heat-exchanger (CSH), #2 thermo-expansion valve (TXV) and #2 phase change material (PCM) were chosen because of the best temperature rise delay. It was concluded that a cold storage system is an effective solution for ISG vehicles to maintain thermal comfort during short engine stops.

비휘발성 상변화메모리소자에 응용을 위한 칼코게나이드 $Ge_1Se_1Te_2$ 박막의 특성 (The Characteristics of Chalcogenide $Ge_1Se_1Te_2$ Thin Film for Nonvolatile Phase Change Memory Device)

  • 이재민;정홍배
    • 대한전기학회논문지:전기물성ㆍ응용부문C
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    • 제55권6호
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    • pp.297-301
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    • 2006
  • In the present work, we investigate the characteristics of new composition material, chalcogenide $Ge_1Se_1Te_2$ material in order to overcome the problems of conventional PRAM devices. The Tc of $Ge_1Se_1Te_2$ bulk was measured $231.503^{\circ}C$ with DSC analysis. For static DC test mode, at low voltage, two different resistances are observed. depending on the crystalline state of the phase-change resistor. In the first sweep, the as-deposited amorphous $Ge_1Se_1Te_2$ showed very high resistance. However when it reached the threshold voltage(about 11.8 V), the electrical resistance of device was drastically reduced through the formation of an electrically conducting path. The phase transition between the low conductive amorphous state and the high conductive crystal]me state was caused by the set and reset pulses respectively which fed through electrical signal. Set pulse has 4.3 V. 200 ns. then sample resistance is $80\sim100{\Omega}$. Reset pulse has 8.6 V 80 ns, then the sample resistance is $50{\sim}100K{\Omega}$. For such high resistance ratio of $R_{reset}/R_{set}$, we can expect high sensing margin reading the recorded data. We have confirmed that phase change properties of $Ge_1Se_1Te_2$ materials are closely related with the structure through the experiment of self-heating layers.

바닥난방시스템 적용을 위한 MPCM 성능평가 (Performance evaluation of MPCM to apply for radiant floor heating system)

  • 정수광;전지수;김수민
    • 한국태양에너지학회:학술대회논문집
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    • 한국태양에너지학회 2012년도 춘계학술발표대회 논문집
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    • pp.475-479
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    • 2012
  • Thermal energy storage (TES) systems using Microencapsulated phase change material (MPCM) have been recognized as one of the most advanced energy technologies in enhancing the energy efficiency and sustainability of buildings. We examined a way to incorporate MPCMs with building materials through application for wood-based flooring. Wood-based flooring is commonly used for floor finish materials of residential buildings in Korea. However, wood-based flooring has not performed the characteristic of heat storage. This study is aimed at manufacturing high thermal efficiency wood flooring by increasing its heat storage using MPCM. As a result, this study confirmed that MPCM is dispersed well in adhesive through the scanning electron microscopy analysis. From the differential scanning calorimetry analysis, it can be confirmed that this composite has the characteristic of a thermal energy storage material. Also, we analyzed how this composition was formed by physical combination through the Fourier transform infrared analysis. Also, we confirmed the bonding strength of the material by using the universal testing machine.

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