• Title/Summary/Keyword: PCM:Phase Change Material

Search Result 165, Processing Time 0.024 seconds

Measurement Methods of Latent Heat for PCM with Low Melting Temperature in Closed Tube (밀폐튜브 내 저온 PCM의 잠열측정법)

  • 류경용;박창현;백종현;홍회기
    • Korean Journal of Air-Conditioning and Refrigeration Engineering
    • /
    • v.15 no.7
    • /
    • pp.604-610
    • /
    • 2003
  • Cycle test for developed phase change material (PCM) is necessary in order to analyze the variation of latent heat, which decreases with time by deterioration. 7-history method and measurement using heat flux meter are appropriate for the cycle test in a tube filled with PCM because they do not need an extraction of sample in measuring the heat of fusion. In the present study, these methods were applied to a PCM having a melting point below a room temperature, different from the past studies for PCMs melting above a room temperature. As a result of experiment using pure water as specimen, we can obtain reason-able values for heat of fusion by both methods.

PCM Technology Development Trends of Korea and USA by Patent Analysis of Phase Change Material Related to Textile Products (섬유제품 상변화물질 관련 특허통계 분석을 통한 한국과 미국의 기술개발동향 - 특허정보검색 중심으로 -)

  • Yoo, Hwa-Sook;Park, Kwang-Hee;Kim, Moon-Young
    • Fashion & Textile Research Journal
    • /
    • v.9 no.3
    • /
    • pp.295-302
    • /
    • 2007
  • Phase change material-related patents filed at Korea Institute of Patent Information(KIPI) and United States Patent and Trademark Office(USPTO) were analyzed for understanding the PCM's technological level of Korea and providing the information for establishing the research development policy concerned with high technology fibers. Patent data from 1980 to 2005 collected from KIPI and USPTO internet sites were examined using the number of patents and share of assignees in patents. The contents of patent were classified according to IPC(International Patent Classification) and assignees were divided into individual and firm/public body. The results of comparing total number of patents in USA with that in Korea showed USA had as 2.3 times as Korea had. The number of patents of USA had increased steadily since 1980 whereas that of Korea sharply since 2001. The number of patents of Korea from 2001 to 2005 was more than that of USA. USA was specialized in fundamental technology and Korea was specialized in application area with PCM. Assignees who had the most patents were firms and the next were individuals. Assignees who applied for several patents were more in USA than in Korea and patent application numbers per the assignees were higher for USA.

Physical Properties of Microencapsulated Phase Change Material Slurries (미립잠열슬러리의 물성에 관한 실험적 연구)

  • 이효진;홍재창;이재구
    • Korean Journal of Air-Conditioning and Refrigeration Engineering
    • /
    • v.12 no.9
    • /
    • pp.860-869
    • /
    • 2000
  • The thermal conductivity and density of slurries entrained with the particles of Micro-PCM are measured with respect to its temperatures as well as concentrations. For the thermal conductivity of slurries, a device made from P.A. Hilton (Model No. H470) is adopted. There is a well-scaled 0.3 mm gap between shells into which the slurry is injected. The temperatures of the slurry are changed to $5~25^{\circ}C$ , for which it is controled by the supplied voltage and cooling water circulated around the outer shell. The concentrations of Micro-PCM slurries are varied from 5 wt% to 50 wt%. Some general equations such as Maxwell's equation, are evaluated for their applicability with Micro-PCM slurry. As a result, it happens to be some 20% discrepancy between the experiment and the applied equations. The density measurements of Micro-PCM slurry to its temperature and concentration are peformed by hydrometer. For the experiment, tetradecane encapsulated slurry (($t_m≒6^{\circ}C$) and a mixed wax ($t_m≒50^{\circ}C$) are tested. The temperature changes of tetradecane are applied for $0^{\circ}C\;to\;$20^{\circ}C$and a mixed wax for $20^{\circ}C\;to\;$60^{\circ}C$ and its concentrations are changed from 5 wt% to 30 wt%. The results are compared with a general equation and the referenced data. For the conclusion, the experimental result and a general equation are well agreed.

  • PDF

A Production-Installation Simulation Model of Free-Form Concrete Panels

  • Lim, Jeeyoung;Lee, Donghoon;Na, Youngju;Lim, Chaeyeon;Kim, Sunkuk
    • International conference on construction engineering and project management
    • /
    • 2015.10a
    • /
    • pp.401-404
    • /
    • 2015
  • Demand on free-form buildings is gradually increasing, yet owing to the difficulty of production-installation work, several problems occur in the construction phase upon construction of a building, including the increased cost and construction duration, and reduced constructibility. To solve these problems, a techonology to produce FCP using a CNC(Computerized Numeric Control) machine is developed. The technology is that the information of designed free-form buildings to the CNC machine is transferred, and the transferred information is used for RTM(Rod-Type Mold, the mold shaped by back-up rods) and PCM(Phase Change Material) shaping, and the shaped RTM and PCM have the role of molds to produce FCP. Construction duration and project cost are limited in building sites, so the efficiency of processes like production-installation of FCP for application of the technology is significant. Since it is almost impossible to change the production-installation process at the construction phase when they are established, process should be deliberately decided. Therefore, the purpose of the study is to propose a production-installation simulation model of free-form concrete panels, in aspect of PCM. This paper is establishing the process for production-installation of FCP, estimating time required by each construction type and proposing a time simulation model that changes according to various constraints based on the analyses. With the time simulation model, it will be possible to build a cost model and to review the optimal construction duration and project cost.

  • PDF

A Study on the Heat Dissipation of LED Streetlight Using PCM (PCM을 이용한 LED 가로등의 방열에 관한 연구)

  • Jung, Eui-Chan;Chang, Sung-Ho;Kang, Seoug-Wan;Kim, Min-Ho;Nho, Kwon-Hak;Lee, Young-Wook;Choi, Yu-Bok
    • Journal of Korean Society of Industrial and Systems Engineering
    • /
    • v.33 no.4
    • /
    • pp.79-84
    • /
    • 2010
  • In recent years, conventional streetlight is replaced by LED streetlight to reduce power consumption dramatically and to maximize lighting effects. However the characteristic of power LED itself driven by high current to increase the illumination, we need to develop effective heat release device. This study suggests new concept of heat dissipation device using PCM (Phase Change Material) and shows an experiment results to investigate thermal effects of PCM.

Measurement Methods of Latent Heat for PCM with Low Melting Temperature in Closed Tube

  • Hong Hiki;Kang Chaedong;Peck Jong Hyeon
    • International Journal of Air-Conditioning and Refrigeration
    • /
    • v.12 no.4
    • /
    • pp.206-213
    • /
    • 2004
  • Cycle test for developed phase change material (PCM) is necessary in order to assess the variation of latent heat, which decreases with time by deterioration. T-history method and measurement using heat-flux meter are appropriate for the cycle test in a tube filled with PCM because they do not need an extraction of sample in measuring heat of fusion. In the present study, these methods were applied to a PCM having a melting point below a room temperature, different to the past studies for PCMs melting above a room temperature. As a result of experiment using pure water as specimen, we can obtained rea-sonable values for heat of fusion.

A study on heat transfer during solidification of phase change material on a finned vertical cooling tube (휜붙이 수직냉각관 주위의 상변화물질에서 응고열전달에 관한 연구)

  • 정석주;송하진
    • Journal of the Korean Society of Safety
    • /
    • v.11 no.2
    • /
    • pp.33-41
    • /
    • 1996
  • Experiments were performed to study solidification of phase change material on a finned vertical tube when either conduction In the solid or natural convection in a liquid controls the heat transfer. The liquid was housed in a cylindrical containment vessel whose surface was maintained at a uniform, time-invariment temperature during a data run, and the solidification occurred at a finned and unfinned vertical tube positioned along the axis of the vassel. The phase change material(PCM) employed in this experiment is 99 percent pure n-Octacosan paraffin($C -{28}H_{58}/$). For conduction-controlled and convection-controlled solidification, the enhancement of the solidified mass rate due to finning is great when the solidified layer is thin and decreases as the layer grows thicker. It is studied that the latent energy($E_{\lambda}$) is the largest contributor to the total extracted energy($E_{\lambda} + E_{sl}+E_{s2}$) and the total extracted energy rate at a finned vertical tube is greater than that at a unfinned vertical tube.

  • PDF

Enhancement of bent transfer in the liquid bath by ultrasound (액상용기에서 초음파에 의한 열전달촉진)

  • Kang Won-Jong;Oh Yool-Kwon
    • Proceedings of the KSME Conference
    • /
    • 2002.08a
    • /
    • pp.655-658
    • /
    • 2002
  • The present paper investigated the effect of ultrasonic vibrations on the melting process of a phase-change material (PCM). Furthermore, the present study considered constant heat-flux boundary conditions unlike many of the previous researches, which had adopted constant wall-temperature conditions. Therefore in the study, modified dimensionless numbers such as Stefan and Rayleigh were adopted to represent heat transfer results. The experimental results revealed that ultrasonic vibrations accompanied the effects like agitation, acoustic streaming, cavitation, and oscillating fluid motion, accelerating the melting process as much as 2.5 times, compared with the result of natural melting (i. e., the case without ultrasonic vibration). Such effects are believed to be a prime mechanism in the overall melting process when ultrasonic vibrations were applied. Subsequently, energy could be saved by applying the ultrasonic vibrations to the natural melting In addition, various time-wise dimensionless numbers provided a conclusive evidence of the important role of the ultrasonic vibrations on the melting phenomena of the PCM.

  • PDF

A study on characteristics of crystallization according to changes of top structure with phase change memory cell of $Ge_2Sb_2Te_5$ ($Ge_2Sb_2Te_5$ 상변화 소자의 상부구조 변화에 따른 결정화 특성 연구)

  • Lee, Jae-Min;Shin, Kyung;Choi, Hyuck;Chung, Hong-Bay
    • Proceedings of the Korean Institute of Electrical and Electronic Material Engineers Conference
    • /
    • 2005.11a
    • /
    • pp.80-81
    • /
    • 2005
  • Chalcogenide phase change memory has high performance to be next generation memory, because it is a nonvolatile memory processing high programming speed, low programming voltage, high sensing margin, low consumption and long cycle duration. We have developed a sample of PRAM with thermal protected layer. We have investigated the phase transition behaviors in function of process factor including thermal protect layer. As a result, we have observed that set voltage and duration of protect layer are more improved than no protect layer.

  • PDF

PCM mixed the amount of Thermal Conductivity of Cement mortar Experimental Study on the effect. (PCM 혼입량이 시멘트 모르타르의 열전도율에 미치는 영향에 관한 실험적 연구)

  • Jeong, You-Gun;Kim, Bo-Hyun;Lee, Han-Seung
    • Proceedings of the Korean Institute of Building Construction Conference
    • /
    • 2011.11a
    • /
    • pp.245-246
    • /
    • 2011
  • In recent research in this emerging and latent heat storage material features an innovative temperature - controlled Phase Change Materials to evaluate the superior thermal performance would like to calculate the thermal conductivity. Specified in KS F 4040 test specimen dimensions were equivalent in specifications, test methods according to KS L 9016 was an experiment in progress. As a result, the thermal conductivity of plain cement mortar mixed with more PCM came out with low thermal conductivity of mortar, thermal performance was excellent.

  • PDF