• Title/Summary/Keyword: 단열재 설계

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A Study on the Application of Thermal Insulation Composite Frame for Welding in Enclosed Space (밀폐 공간에서 용접작업을 위한 단열 복합재 프레임의 설계 적용 연구)

  • Lee, Jae-Youl;Jeong, Kwang-Woo;Hong, Sung-Ho;Shin, Kwang-Bok
    • Composites Research
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    • v.31 no.5
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    • pp.227-237
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    • 2018
  • In this paper, the design application for the lightweight and insulation of the manipulator of the mobile welding robot for the closed/narrow space is presented. A variety of robotic platforms have been developed for weld-worker using a welding robot outside a workpiece for welding work in a complex and narrow space such as a ship or an offshore plant. Normally, The development process of robots consists of machine development, electronic device development, control algorithm development and integration verification considering application environment and requirements. In order to develop the robustness of the welding robot, the lightweight design of the robot manipulator considering the environmental conditions was performed in the basic design of the robot platform. Also, The results of the robot selection and validation, analysis and testing for the insulation performance and cooling performance and the results of the research are shown.

A Study of Optimum Insulation Conditions of a HTS Power Cable Cryostat (고온초전도 전력케이블 저온용기의 최적단열설계에 관한 연구)

  • Koh, Deuk-Yong;Lee, Kwan-Soo
    • Korean Journal of Air-Conditioning and Refrigeration Engineering
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    • v.19 no.4
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    • pp.333-338
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    • 2007
  • The object of this study is to find the optimal insulation design conditions of a HTS power cable cryostat. The optimum condition of a cable cryostat is obtained by varying types of MLIs, cable core weights, spacer diameters, winding pitches and MLI layer numbers. As the weight of cable core is increased, conduction heat transfer from surroundings to cable cryostat is increased. But as the spacer pitch is increased from 120 mm to 200 mm, the heat leak of cable cryostat remains almost constant. The optimal number of MLI layers is suggested. Double ply MLI is more effective than triple ply MLI and the insulation effect is best when the number of MLI layers is 36.

Development of a Thermoelectric Dehumidifier (열전식 제습기 개발)

  • 주해호;이재원;이화조;권도중
    • Proceedings of the Korean Society of Precision Engineering Conference
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    • 1996.04a
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    • pp.753-757
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    • 1996
  • 연전식 제습기는 제습판과 발열판, 열전식 열펌프, 팬과 모타, 직류 전원공급 장치로구성되어 있으며, 열전식 열펌프에 직류전원을 공급하면 고온면과 저온면이 발생하는 데 저온면의 온도룰 로점온도 이하로 냉각하여 공기중에 있는 수분을 제거하는 원리를 이용한 것이다. 초기 단계로 개발된 열전식 열펌프를 이용한 열전식 제습기(TED-92)는 기계식 제습기에 비하 여 제습효율이 너무 낮기 때문에, 본 연구에서는 여러 문제점을 개선하는 방법으로 열전식 열펌 프의 선정, 핀 설계, 제습기의 설계 등을 중점적으로 개선하여열전식 제습기 (TED-95)를 개발하 였다. 여러가지 방법으로 실험한 결과, 열전식 열펌프 CP1.4-127-045L 2개를 사용하여 발열판의 크기를 300 mm로 하여 단열재를 사용하지 않고 입력 전류를 4A를 입력하였을 때 단위전력당 제 습량이 가장 많았다. 열전식 제습기와 기계식 제습기를 비교실험 해본 결과, 열전식 제습기가 기 계식 제습기에 비해 약 21%의 제습효율을 나타 내었다. 그러므로 초기의 열전식 제습기 (TED-92) 보다 약 2배의 제습효율을 높였다.

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Prediction of Wind-induced pressure Difference in Buildings (건물에서의 바람에 기인한 압력차의 예측)

  • Lee, Y.
    • The Magazine of the Society of Air-Conditioning and Refrigerating Engineers of Korea
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    • v.17 no.4
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    • pp.336-341
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    • 1988
  • 바람은 건물 외벽에서의 압력차의 주요인의 하나이다. 바람에 의한 압력차를 정확히 예측할 수 있다는 것은 외벽에 있어서의 풍하중, 건물내로 투입되는 공기양의 설계치 결정, 그리고 건물을 사용하는 거주인의 병리학적 면에서 보다 중요한 것이다. 단열재로 잘 설계된 건물에서는 투입되는 공기에 의한 열부하가 전체 열부하의 30 ~ 50%도 될 수 있으며, 화재시 화염과 연기의 확산에도 중요한 문제이다. 20층 아파트를 사용해서 실물실험을 한 후 측정된 여러가지 값을 예측할 수 있는 방법을 고찰했으며 본 연구에서는 건물에서 바람에 기인되는 압력차를 예측하는 modeling과 Simulation에 있어서의 고찰할 여러가지 재원을 제시했다. 또한 Model을 이용한 실험결과는 Simulation에 있어서 적합한 조건을 충족시키면 풍동을 사용하여 바람에 기인하는 압력차를 예측할 수 있다는 것이 증명되었다.

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Effect of Latent Heat Material Placement on Inside Temperature Uniformity of Insulated Transfer Boxes (단열용기의 잠열재 배치에 따른 내부 온도 균일성에 대한 영향)

  • HyungYong Ji;Dong-Yeol Chung;Seuk Cheun Choi;Joeng-Yeol Kim
    • KOREAN JOURNAL OF PACKAGING SCIENCE & TECHNOLOGY
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    • v.29 no.1
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    • pp.27-33
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    • 2023
  • An optimized design of the transportation insulated box must be considered to control the thermal damage in order to maintain the fresh condition for temperature-sensitive medicine and frozen food safety. The inside temperature of the insulated box is a natural convection enclosure state, thermal stratification naturally occurs as time passes in case of with outside heat load. The latent heat material (LHM) placement inside the box maintains the target temperature of the product for temperature fluctuations during transport, and LHM application is a common and efficient method. In this work, inside temperature stratification in an insulated box depending on the LHM pack position is numerically simulated and experimented. The insulated box is made up of vacuum insulation panel (VIP), and LHM modules are placed over six faces inside the box, with the same weight. The temperature curves for 72 hrs as experiment results clearly show the temperature stratification in the upper, middle, and lower at the LHM melting time region. However, the temperature stratification state is uniformly changed in accordance with the condition of the upper and lower placement weight of the LHM pack. And also, the temperature uniformity by changed placement weight of LHM has an effect on maintaining time for target air temperature inside the box. These results provide information on the optimized design of the insulated box with LHM.

Design of Replacement Method on Anti-freeze Process of L Type Retaining Wells (L형 옹벽의 동상대책에 있어서 치환공법의 설계)

  • Rui, Da-Hu;Kim, Young-Su;Suzuki, Teruyuki
    • Journal of the Korean Geotechnical Society
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    • v.25 no.9
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    • pp.19-27
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    • 2009
  • In order to investigate anti-freeze process of precast concrete L-type retaining walls in cold regions, test walls were installed in the campus of Kitami Institute of Technology (KIT, Hokkaido, Japan). The wall consists of following three sections, i) back filled with frost susceptible clay soil, ii) using thermal insulation material, and back filled with frost susceptible soil, iii) back filled with frost-unsusceptible soil. The freezing front distribution and ground temperature within the backfill were observed and deflections of the walls were measured over three freeze-thaw seasons. Some understanding of the mechanisms of the build-up of frost heave pressure was gained, and the effectiveness of replacement method was observed. A simulation was performed to predict the shape of the freezing front in the backfill behind L-type walls with various cross sections. These findings were employed to propose a method for determining the appropriate zone to be replaced with frost unsusceptible backfill material in cold regions.

Analysis on Insulation of Wind Environment and Greenhouse Cover Materials Insulation for Advanced Greenhouse Energy Design in Saemangeum Reclaimed Land (새만금 간척지 첨단온실 에너지 설계를 위한 풍환경 및 온실 피복재의 영향 분석)

  • Hyo-Jae Seo;Il-Hwan Seo;Deuk-ha Noh;Haksung Lee
    • Journal of Bio-Environment Control
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    • v.32 no.1
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    • pp.57-63
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    • 2023
  • The external weather conditions including temperature and wind speed in the Saemangeum reclaimed land is different from that of the inland, affecting the internal environment of the greenhouse. Therefore, it is important to select an appropriate covering material considering the insulation effect according to the type and characteristics of the covering material considering the weather condition in the Saemangeum reclaimed land. A hexahedral insulation chamber was designed to evaluate the insulation efficiency of each glass-clad material in the outside weather condition in reclaimed land. In order to evaluate the insulation effect of each covering material, a radiator was installed and real-time power consumption was monitored. 16-mm PC (polycarbonate), 16-mm PMMA (polymethyl methacrylate), 4-mm greenhouse glass, and 16-mm double-layered glass were used as the covering materials of the chamber. In order to understand the effect of the external wind directions, the windward and downwind insulation properties were evaluated. As a result of comparing the thermal insulation effect of each greenhouse cover material to single-layer glass, the thermal insulation effect of double-layer glass was 16.9% higher, while PMMA and PC were 62.5% and 131.2% higher respectively. On average the wind speed on the windward side was 53.1% higher than that on the lee-wind side, and the temperature difference between the inside and outside of the chamber at the wind ward side was found to be 52.0% larger than that on the lee ward side. During the experiment period, the overall heating operation time for PC was 39.2% lower compared to other insulation materials. Showing highest energy efficiency, and compared to PC, single-layer glass power consumption was 37.4% higher.

Operating Process Design and Verification on the Oxidizer Filling Ground Facility for Liquid Rocket (액체로켓 산화제 지상공급시스템의 운용 프로세스 설계 및 검증)

  • Kim, Ji-Hoon;Park, Soon-Young;Park, Pyun-Goo;Yoo, Byung-Il
    • Proceedings of the Korean Society of Propulsion Engineers Conference
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    • 2011.11a
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    • pp.781-783
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    • 2011
  • The oxidizer filling system, ground facility of the launch complex, should accept difficult requirements from the launcher sufficiently. The launcher do not have unnecessary insulators for mass reduction and manages liquid oxygen mass fastidiously to satisfy the mission requirement. So, the ground facility should be able to accept its requirements, then we should make the operating process being adjusted. In this paper, the operating process design and verification results on the oxidizer filling ground facility for liquid rocket is demonstrated.

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Basic Design of High Pressure LOx Lines for a Liquid Rocket Engine (액체로켓엔진 액체산소 고압 배관부 기본설계)

  • Moon, Il-Yoon;Yoo, Jae-Han;Moon, In-Sang
    • Proceedings of the Korean Society of Propulsion Engineers Conference
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    • 2009.11a
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    • pp.107-110
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    • 2009
  • A basic design for a Technical Development Model (TDM) of liquid oxygen lines from the turbopump exit to the oxidizer valves of the combustion chamber and the gas generator was conducted to develop a turbopump-fed liquid rocket engine. The TDM is composed of straight lines, elbows, bellows, a branch, an orifice, flanges and a heat insulator. Materials were determined by consideration of operation conditions, weight constraint and manufacturing procedures. The size and the location of each component were determined by flow analysis of the required flowrate and the pressure loss. Basic designs of the components were conducted by consideration of the operating temperature and the maximum expectation operating pressure. The safety factors were evaluated by structural analysis of design of each component.

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A Study on the Thermal Design of the Cryogenic LNG Carrier (초저온 LNG선의 열설계에 관한 연구)

  • 김용모;고상철;천병일;김경근
    • Journal of Advanced Marine Engineering and Technology
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    • v.17 no.4
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    • pp.1-10
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    • 1993
  • This paper introduces the outline of hull structure to the sorts of LNG carrier briefly. Especially, explains in detail for the insulation system of Moss Rosenberg Verft spherical tank type LNG carrier. It is not easy task to calculate exactly the temperature distribution of hull because of very complicated structure of hull. Therefore, in this paper by the adequate modeling of the Moss Rosengerg spherical tank type LNG carrier, a program is developed which calculate the temperature distribution of every hull and estimate the heat influx from every hull and output the BOR according to the variation of atmospheric conditions on boyage.

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