• Title/Summary/Keyword: 히팅 시스템

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Development of Heating System for Ensuring Accuracy of Output for Open 3D Printer (개방형 FDM 3D 프린터의 출력물 정밀도를 위한 히팅 시스템 개발)

  • Park, Sangho;Lee, Joo Hyeong;Kim, Jung Min
    • Transactions of the Korean Society of Mechanical Engineers A
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    • v.41 no.6
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    • pp.477-482
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    • 2017
  • When using the FDM to create a 3D object, a thermoplastic filament is heated to its melting point and then extruded layer by layer. Although the FDM printing process has many advantages, its accuracy, and surface finish are not satisfactory. In recent years, much research has been devoted to improving the accuracy of the FDM printing process. The temperature difference between the nozzle and the interior of the chamber of a 3D printer is one of the important parameters affecting the printing process. In this study, we propose a methodology to reduce this temperature difference through design improvement. In addition, we elucidate how this design improvement affects product quality. The FDM printing process is conventionally carried out in a closed chamber. However, in this study, an open heating system is used to reduce the temperature. The FDM printing processes were simulated using FEM analysis.

CFD Analysis to Suppress Condensate Water Generated in Gas Sampling System of HANARO (하나로 기체시료채취계통에서 생성된 응축수 억제를 위한 CFD 해석)

  • Cho, SungHwan;Lee, JongHyeon;Kim, DaeYoung
    • Journal of Nuclear Fuel Cycle and Waste Technology(JNFCWT)
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    • v.18 no.2_spc
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    • pp.327-336
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    • 2020
  • The high-flux advanced neutron application reactor (HANARO) is a research reactor with thermal power of 30 MW applied in various research and development using neutrons generated from uranium fission chain reaction. A degasifier tank is installed in the ancillary facility of HANARO. This facility generates gas pollutants produced owing to internal environmental factors. The degasifier tank is designed to maintain the gas contaminants below acceptable levels and is monitored using an analyzer in the gas sampling panel. If condensate water is generated and flows into the analyzer of the gas sampling panel, corrosion occurs inside the analyzer's measurement chamber, which causes failure. Condensate water is generated because of the temperature difference between the degasifier tank and analyzer when the gas flows into the analyzer. A heating system is installed between the degasifier tank and gas sampling panel to suppress condensate water generation and effectively remove the condensate water inside the system. In this study, we investigated the efficiency of the heating system. In addition, the variations in the pipe temperature and the amount of average condensate water were modeled using a wall condensation model based on the changes in the fluid inlet temperature, outside air temperature, and heating cable-setting temperature.

Numerical Study on Thermal Performances of Multi Heat Source Heating System Using Butane for Electric Vehicle (전기자동차용 부탄 연료 복합열원 히팅시스템의 열적 성능에 관한 수치적 연구)

  • Bang, You-Ma;Seo, Jae-Hyeong;Patil, Mahesh Suresh;Cho, Chong-Pyo;Lee, Moo-Yeon
    • Journal of the Korea Academia-Industrial cooperation Society
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    • v.17 no.10
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    • pp.725-731
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    • 2016
  • This study numerically investigates the thermal performance of a 2.0-kW butane-based combustion heating system for an electric vehicle under cold conditions. The system is used for cabin space heating and coolant-based battery thermal management. ANSYS CFX 17 software was used for parametric analysis. The mass flow rates of cold air and coolant were varied, and their effects were compared. The numerical results were validated with theoretical studies, which showed an error of 0.15%. As the outside air mass flow rates were increased to 0.005, 0.01, and 0.015 kg/s, the cabin supply air temperature decreased continuously while the coolant outlet temperature increased. When the coolant mass flow rates were increased to 0.005, 0.01 and 0.015 kg/s, the air temperature increased while the coolant outlet temperatures decreased. The optimal mass flow rates are discussed in a consideration of the requirements for high cabin heating capacity and efficient battery thermal management.

A study on the controller of heating system by heat-pipe (히트파이프 난방 시스템 controller 개발에 관한 연구)

  • Yoon Seok-Am;Yoon Jeong-Phil;Cha In-Su;Yoon Yeong-Chan
    • Proceedings of the KIPE Conference
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    • 2003.11a
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    • pp.218-221
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    • 2003
  • 국내 난방 시스템은 대부분 화석에너지를 열원으로 하는 온수순환방식이다. 화석에너지를 사용하기 때문에 난방 시스템 가동에서 발생되는 공해는 대기-오염의 여러 원인 중 하나이며 가동 효율도 떨어진다. 이러한 단점들을 보완하기 위하여 새롭게 보급되고 있는 난방 시스템 중 히프파이프를 이용한 난방시스템은 전기에너지를 열원으로 사용하는 청정에너지로서 기존 난방시스템 보다 $40\%$의 에너지 절감 효과를 나타내고 있다. 본 논문은 전기에너지를 사용하는 히팅 시스템의 제어를 위하여 개발된 컨트롤러에 관한 것이다.

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Flow Simulation for Structure Validation of Passenger Car Seat Cooling & Heating Module (승용차 시트 쿨링 & 히팅 모듈의 구조 타당성 검증을 위한 유동 전산모사)

  • Gao, Jia-Chen;Park, Seul-Hyun;Ma, Sang-Dong;Kim, Jae-Yeol
    • Journal of the Korean Society of Manufacturing Process Engineers
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    • v.18 no.2
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    • pp.108-113
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    • 2019
  • Due to the special structure of the car seat, the heating and cooling module must be installed in a limited area resulting in difficulty in regards to achieving optimal cooling and heating efficiency. In order to solve these problems, this paper establishes a new structure for heating and cooling modules, verifies the structural feasibility of the thermoelectric module for cooling and heating the seat through fluid simulations, and verifies the proper design of the mechanical components of the thermoelectric module.

High efficiency mid-power system for wireless power transfer and induction heating convergence technology (무선전력전송과 IH 기술융합을 위한 고효율 중전력 시스템)

  • Yoo, Ju-Seung;Lee, Jong-Ju;Song, Doo-Ik;Min, Byung-Duk;Cho, Jung-Gu;Lee, Seong-Hun;Yeom, Jung-Seok;Jang, Won-Ho
    • Proceedings of the KIEE Conference
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    • 2015.07a
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    • pp.9-10
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    • 2015
  • 본 논문에서는 전자기 유도의 동일 원리를 기반으로 하는 무선전력전송(WPT, Wireless Power Transfer)와 인덕션 히팅(IH, Induction Heating) 기술을 융합하기 위한 고효율 중전력(100W~2.4kW) 시스템을 제안한다. 제안하는 시스템은 고효율 PFC 컨버터와 무선전력 전송 및 IH렌지 겸용 고주파 인버터로 구성된다. PFC 컨버터는 단위역률과 동시에 고효율을 달성할 수 있는 Bridgeless PFC로 구성하였으며 인버터는 중전력 및 넓은 출력 범위를 지니는 Full-Bridge 인버터로 구성하였다. 무선전력전송과 IH렌지를 위한 송/수신부 코일 구조를 개발하였으며 최대 전력 전송을 위한 공진회로를 개발하였다. 중전력에서 고효율 및 시스템 안정성을 기반으로 하여 국내외 규제를 만족하는 시제품을 제작하여 상용화 가능성에 대한 확인을 목표로 한다.

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A Design and Implementation for Disaster Warning System Based Radio Communication (무선 재난경보시스템 설계 및 구현)

  • Ahn, Byung-Dug;Lee, Won-Suk;Kim, You-Hyuk;Lee, Seung-Hyung;Kwak, Woo-Seok
    • Proceedings of the Korean Society of Computer Information Conference
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    • 2016.07a
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    • pp.9-12
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    • 2016
  • 본 논문에서는 지진 및 재난상황을 신속하게 대중에게 전파하기 위해 상황실에서의 통제에 따라 정해진 경보방송을 수행하고, 대용량 스피커를 통해 출력할 수 있는 장치를 소개한다. 통신망은 VHF와 위성을 이용하는 이중화로 구성하여 재난발생 시 통신장애에 대한 서비스를 안정화하고, 통신부/제어부/입출력부/앰프부/전원부 등을 유니트로 설계하여 유지보수를 수월하게 할 수 있도록 구성하였다. 야외 환경에서 동작되는 장비는 먼지로부터 보호하고 방수기능이 포함되어 있으므로 밀폐형 함체 내부에 장착된다. 혹한 및 혹서의 날씨에도 장비 운영에 문제가 없도록 장비 내부에 히팅을 하고, 팬을 이용하여 공기 배출을 통해 온도 조절 기능을 수행한다. 배터리를 내장하여 불안정한 상용 전원 공급 조건에서도 안정적으로 운영될 수 있도록 설계하였다.

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A study on the anti-freezing of light weight electric traction system testing road (경량전철 시스템 선로 결빙방지에 관한 연구)

  • Woo, Jae-Ho;Han, Kyu-Il;Kim, Jong-Soo
    • Proceedings of the KSME Conference
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    • 2008.11b
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    • pp.2256-2261
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    • 2008
  • The electric snow melting and deicing system by electric heating cable which is adopted in this study is a part of road facilities to keep surface temperature of the road higher than freezing point of water for melting the snow or ice accumulated on it. The electric heating cables are buried under paved road at a certain depth and a certain pitch and operated automatically and manually. Design theory, amount of heating, and installation standard vary according to economic situation, weather condition, and installation place. A main purpose of this study is figuring out the appropriate range of required heat capacity and installation depth and pitches for solving snowdrifts and freezing problems with minimum electric power consumption. This study was performed under the ambient air temperature($-2^{\circ}C$, $-5^{\circ}C$), the pitches of the electric heating cables (200 mm, 300 mm), heating value ($250\;W/m^2$, $300\;W/m^2$, $350\;W/m^2$).

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Implementation of Optimal Temperature Controller for Thermoelectric Device-based Heating System Using Genetic Algorithm (유전알고리즘을 이용한 열전소지 기반 히팅 시스템의 최적 온도 제어기 구현)

  • Jung-Shik Kong
    • Design & Manufacturing
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    • v.17 no.3
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    • pp.41-47
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    • 2023
  • This paper presents the development of a controller that can control the temperature of an heating system based on a thermoelectric module. Temperature controller using Peltier has various external factors such as external temperature, characteristics of an aluminum plate, installation location of temperature sensors, and combination method between the aluminum plate and heating element. Therefore, it is difficult to apply the simulation and simulation results of heating system using Peltier at control algorithm. In general, almost temperature controller is using PID algorithm that finds control gain value heuristically. In this paper, it is proposed mathematical model that explain correlate between the temperature of the heating system and input voltage. And then, optimal parameter of estimated thermal model of the aluminum plate are searched by using genetic algorithm. In addition, based on this estimated model, the optimal PID control gain are inferred using a genetic algorithm. All of the sequence are simulated and verified with proposed real system.