• Title/Summary/Keyword: 실내설정온도

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Design of thermal system using 3-way valve and PTC to which a solar module (태양광 모듈이 부착된 PTC 집열기 및 3웨이 밸브를 이용한 온열 시스템 설계)

  • Song, Je-Ho;Lee, In-Sang;Lee, You-Yub
    • Journal of the Korea Academia-Industrial cooperation Society
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    • v.18 no.1
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    • pp.454-459
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    • 2017
  • In this study, a thermal system was designed using a 3-way valve and PTC attached to a solar module. This design could help solve the problem of rising fossil fuel costs caused by limited reserves and environmental problems resulting from fossil fuel use. The thermal system is a hot-air and heating control system composed of a temperature sensor part, mode setting part (for hot air and heating modes), supply part, and thermal system control part. The temperature sensor part has piping and an indoor temperature display, and the temperature setting part has multiple monitoring functions. The mode setting part switches between hot air and heating modes and can be used to set the temperature. The thermal system control part performs functions such as PTC control and temperature setting, PTC day and night and time selection, hot air and heating control, and three-way valve selection. The results verify that the system operates with stable response speeds of $680{\mu}s$ in the temperature sensor part, $700{\mu}s$ in the mode setting part, and $610{\mu}s$ in the thermal system control part.

Individual Heating system Automation based on IOT. (loT를 활용한 개별 난방시스템 설계 제안)

  • Lee, Sang-Hyun
    • Proceedings of the Korea Information Processing Society Conference
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    • 2015.04a
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    • pp.182-185
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    • 2015
  • IT 기술분야에서 IOT(Internet of Things) 는 현재 주목받는 기술 중 하나로서 여려 IT 분야에서 연구활동이 이루어지고 있는 추세이며 이로 인해 IT 기기 뿐만 아니라 일반 기기들과도 연결이 되어 빠른 시일 내에 사물인터넷 시대가 여릴 것으로 예측되고 있다. 본 논문에서는 이런 추세에 맞추어 스마트 홈네트워크 시스템에서는 가정내의 난방시스템에 대한 모니터링 및 자동온도측정 센서를 활용하여 적정온도 혹은 사용자의 활동 여부 등을 파악하여 설정된 온도보다 낮거나 높을 시에 자동으로 실내온도를 변경하고 나아가 원하는 가정내의 일부 부분만을 난방 할 수 있도록 자동화하는 방법에 대한 시스템 설계를 제안하고자 한다.

Development of Digital Solder Station Based on PID Controller (PID 제어기를 이용한 전기인두기의 온도 제어 시스템 개발)

  • Oh, Kab-Suk
    • Journal of the Korea Academia-Industrial cooperation Society
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    • v.11 no.3
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    • pp.866-872
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    • 2010
  • In this paper, we developed a digital soldering station based on PID controller, which supply stable power by controlling the current of heater of soldering iron. The proposed system designed PID controller to converge quickly to the set up temperature by user, and regain the lost of heat by external factors quickly. PID controller, designed by Ziegler-Nichols' tuning method, decides triac's trigger timing using setting temperature and present temperature to control the phase of AC 24V power that supply to the heater. Also, we give the function that shows present temperature and setting temperature of iron, and working time by graphic LCD. And during the rest time, we decided the power saving and extension of iron tip by dropping to the optimal temperature. Two experiments had implemented in $25^{\circ}C$ laboratory to confirm the performance of proposed method. The first experiment took 12sec, 13sec, 16sec, 18sec, reaching to $200^{\circ}C$, $300^{\circ}C$, $400^{\circ}C$, $480^{\circ}C$ respectively which result showed shorten of rising time than previous method. In the loading experiment of $300^{\circ}C$, $400^{\circ}C$, $480^{\circ}C$ steady state showed temperature drop of $3.8^{\circ}C$, $4.1^{\circ}C$, $4.5^{\circ}C$ which result showed the low temperature deviation than previous method.

Optimal Measuring Point Selection Method of Indoor Temperature using CFD Analysis (CFD 해석을 이용한 실내 온도 최적 측정 위치 선정 방법)

  • Lee, Min-Goo;Jung, Kyung-Kwon
    • Journal of the Korea Institute of Information and Communication Engineering
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    • v.16 no.7
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    • pp.1559-1566
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    • 2012
  • This paper proposed the method to find out the optimal sensing point of temperature in test-bed with the sensor of temperature, such as real residence. We selected optimal locations by checking temperature change which was simulated by the means of CFD (Computational Fluid Dynamics) and the variation of air flow. We made 3-dimensional model of the testbed using DesignBuilder software, and ran the CFD. We selected the optimum temperature measurement location of 1.5 m height from the floor and low temperature variation. The experiments were conducted 30 temperature and humidity sensors in real place. After that, we confirmed the results of temperature change.

A Study on the Performance of Ondol with a Ventilation System (환기시스템을 갖춘 온돌 성능에 관한 연구)

  • Jeon, Sung-Taek;Cho, Jin-Pyo
    • Journal of the Korea Academia-Industrial cooperation Society
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    • v.15 no.7
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    • pp.4047-4051
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    • 2014
  • Modern apartment houses are constructed to be relatively airtight with a high heat insulation system to increase the energy efficiency. Such a system has a range of deleterious effects due to the insufficient ventilation. In this study, the ondol system, which is used as a heat source typical of winter in Korea, was set as the default system to evaluate the indoor heat environment according to the ventilation method, the factors of energy reduction by the ventilation system was analyzed. The experimental apparatus was used to simulate the ambient conditions for a certain constant temperature and humidity chamber. The experimental results showed that the supply water temperature higher air volume decreases with increasing supply air temperature in the following order: floor supply/exhaust > total heat exchange supply/exhaust > forced supply/exhaust. Through this study, the applicability of various ventilations could be examined.

이코노 공조기를 통한 에너지절약 기술

  • 에너지절약전문기업협회
    • The Magazine for Energy Service Companies
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    • s.33
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    • pp.54-57
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    • 2005
  • 일반적으로 건물이나 산업현장에 설치되는 항온항습기 및 공조 장치 등은 외기의 온도나 습도와 관계없이 관리자가 최초 설정한 값을 수동으로 변경시키지 않는 한 항온항습 또는 냉$\cdot$난방 기간중에 연중 또는 수개월 간 항상 일정한 실내 온$\cdot$습도를 유지하기 위해 많은 에너지를 소모하고 있다. 이러한 문제점에 착안하여 비교시험을 통한 실증시험을 수행한 이코노 공조기는 본문과 같은 여러 가지 기능들을 자동으로 수행하게 함으로써 공조부하 절감을 통하여 궁극적으로 에너지 절감을 이룰 수 있도록 제작된 기기이다.

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An Examination on Cooling Effects According to Water Spray, Top and Side Windows, and Operation of Pan of Single Span Plastic Greenhouses (Part 2) (단동 플라스틱 하우스의 관수, 천.측창 개폐 및 환기팬 조작에 따른 냉각효과 검토 (제2편))

  • 최동호;허종철;임종환;서효덕
    • Proceedings of the Korean Society for Bio-Environment Control Conference
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    • 1999.11a
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    • pp.55-58
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    • 1999
  • 1. 스프링클러에 의해 하우스내를 관수한 경우, 하우스내 온도는 스프링클러 작동과 동시에 급격히 하강한 후 시간이 흐름에 따라 완만한 하향구배를 나타내었다. 2. 천 측창을 개방한 상태에서 스프링클러에 의한 냉각효과를 측정한 결과, 실내기준온도는 외기온 보다 약 2.8$^{\circ}C$ 낮은 온도를 나타내었다. 3. 본 실험결과 스프링클러 관수에 의한 냉각효과는 탁월한 것으로 조사되었으며, 관수시간대를 비교적 실온이 상승하는 주간시간대로 설정한다면, 그 효과를 극대화 할 수 있을 것으로 사료된다. 이 경우, 관수시의 수량 및 관수 지속시간 등에 대해서는 재배작물의 습해 등을 고려하여 이에 대한 면밀한 검토가 이루어져야 할 것으로 판단된다.

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Customized Aerodynamic Simulation Framework for Indoor HVAC Using Open-Source Libraries (공개 라이브러리 기반 실내 공조 맞춤형 전산모사 시스템 개발)

  • Sohn, Ilyoup;Roh, Hyunseok;Kim, Jaesung
    • Transactions of the Korean Society of Mechanical Engineers B
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    • v.41 no.2
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    • pp.135-143
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    • 2017
  • A customized CFD simulator to perform thermo-fluid dynamic simulations of an HVAC for an indoor space is presented. This simulation system has been developed for engineers studying architectural engineering, as the HVAC mechanical systems used in housings and buildings. Hence, all functions and options are so designed to be suitable that they are suitable for non-CFD experts as well as CFD engineers. A Computational mesh is generated by open-source libraries, FEMM (Finite Element Method Magnetics), and OpenFOAM. Once the boundary conditions are set, the fluid dynamic calculations are performed using the OpenFOAM solver. Numerical results are validated by comparing them with the experimental data for a simple indoor air flow case. In this paper, an entirely new calculation process is introduced, and the flow simulation results for a sample office room are also discussed.

Analysis of Greenhouse Thermal Environment by Model Simulation (시뮬레이션 모형에 의한 온실의 열환경 분석)

  • 서원명;윤용철
    • Journal of Bio-Environment Control
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    • v.5 no.2
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    • pp.215-235
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    • 1996
  • The thermal analysis by mathematical model simulation makes it possible to reasonably predict heating and/or cooling requirements of certain greenhouses located under various geographical and climatic environment. It is another advantages of model simulation technique to be able to make it possible to select appropriate heating system, to set up energy utilization strategy, to schedule seasonal crop pattern, as well as to determine new greenhouse ranges. In this study, the control pattern for greenhouse microclimate is categorized as cooling and heating. Dynamic model was adopted to simulate heating requirements and/or energy conservation effectiveness such as energy saving by night-time thermal curtain, estimation of Heating Degree-Hours(HDH), long time prediction of greenhouse thermal behavior, etc. On the other hand, the cooling effects of ventilation, shading, and pad ||||&|||| fan system were partly analyzed by static model. By the experimental work with small size model greenhouse of 1.2m$\times$2.4m, it was found that cooling the greenhouse by spraying cold water directly on greenhouse cover surface or by recirculating cold water through heat exchangers would be effective in greenhouse summer cooling. The mathematical model developed for greenhouse model simulation is highly applicable because it can reflects various climatic factors like temperature, humidity, beam and diffuse solar radiation, wind velocity, etc. This model was closely verified by various weather data obtained through long period greenhouse experiment. Most of the materials relating with greenhouse heating or cooling components were obtained from model greenhouse simulated mathematically by using typical year(1987) data of Jinju Gyeongnam. But some of the materials relating with greenhouse cooling was obtained by performing model experiments which include analyzing cooling effect of water sprayed directly on greenhouse roof surface. The results are summarized as follows : 1. The heating requirements of model greenhouse were highly related with the minimum temperature set for given greenhouse. The setting temperature at night-time is much more influential on heating energy requirement than that at day-time. Therefore It is highly recommended that night- time setting temperature should be carefully determined and controlled. 2. The HDH data obtained by conventional method were estimated on the basis of considerably long term average weather temperature together with the standard base temperature(usually 18.3$^{\circ}C$). This kind of data can merely be used as a relative comparison criteria about heating load, but is not applicable in the calculation of greenhouse heating requirements because of the limited consideration of climatic factors and inappropriate base temperature. By comparing the HDM data with the results of simulation, it is found that the heating system design by HDH data will probably overshoot the actual heating requirement. 3. The energy saving effect of night-time thermal curtain as well as estimated heating requirement is found to be sensitively related with weather condition: Thermal curtain adopted for simulation showed high effectiveness in energy saving which amounts to more than 50% of annual heating requirement. 4. The ventilation performances doting warm seasons are mainly influenced by air exchange rate even though there are some variations depending on greenhouse structural difference, weather and cropping conditions. For air exchanges above 1 volume per minute, the reduction rate of temperature rise on both types of considered greenhouse becomes modest with the additional increase of ventilation capacity. Therefore the desirable ventilation capacity is assumed to be 1 air change per minute, which is the recommended ventilation rate in common greenhouse. 5. In glass covered greenhouse with full production, under clear weather of 50% RH, and continuous 1 air change per minute, the temperature drop in 50% shaded greenhouse and pad & fan systemed greenhouse is 2.6$^{\circ}C$ and.6.1$^{\circ}C$ respectively. The temperature in control greenhouse under continuous air change at this time was 36.6$^{\circ}C$ which was 5.3$^{\circ}C$ above ambient temperature. As a result the greenhouse temperature can be maintained 3$^{\circ}C$ below ambient temperature. But when RH is 80%, it was impossible to drop greenhouse temperature below ambient temperature because possible temperature reduction by pad ||||&|||| fan system at this time is not more than 2.4$^{\circ}C$. 6. During 3 months of hot summer season if the greenhouse is assumed to be cooled only when greenhouse temperature rise above 27$^{\circ}C$, the relationship between RH of ambient air and greenhouse temperature drop($\Delta$T) was formulated as follows : $\Delta$T= -0.077RH+7.7 7. Time dependent cooling effects performed by operation of each or combination of ventilation, 50% shading, pad & fan of 80% efficiency, were continuously predicted for one typical summer day long. When the greenhouse was cooled only by 1 air change per minute, greenhouse air temperature was 5$^{\circ}C$ above outdoor temperature. Either method alone can not drop greenhouse air temperature below outdoor temperature even under the fully cropped situations. But when both systems were operated together, greenhouse air temperature can be controlled to about 2.0-2.3$^{\circ}C$ below ambient temperature. 8. When the cool water of 6.5-8.5$^{\circ}C$ was sprayed on greenhouse roof surface with the water flow rate of 1.3 liter/min per unit greenhouse floor area, greenhouse air temperature could be dropped down to 16.5-18.$0^{\circ}C$, whlch is about 1$0^{\circ}C$ below the ambient temperature of 26.5-28.$0^{\circ}C$ at that time. The most important thing in cooling greenhouse air effectively with water spray may be obtaining plenty of cool water source like ground water itself or cold water produced by heat-pump. Future work is focused on not only analyzing the feasibility of heat pump operation but also finding the relationships between greenhouse air temperature(T$_{g}$ ), spraying water temperature(T$_{w}$ ), water flow rate(Q), and ambient temperature(T$_{o}$).

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A Human Sensibility Meter for Indoor Environmental Control Using Multiple Sensors (다중 센서를 이용한 실내 환경 제어용 감성 측정기)

  • Lee, Duk-Dong;Park, Kil-Heum;Choi, Doo-Hyun;Han, Dae-Hyun;Baek, Woon-Yi;Lim, Jeong-Ok;Hwang, Tae-Jin
    • Journal of Sensor Science and Technology
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    • v.7 no.5
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    • pp.327-333
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    • 1998
  • A new human sensibility (kansei) meter that can measure human sensibility at the indoor environment is developed in this paper. Four sensors that can measure temperature, humidity, $CO_2$ and $C_4H_{10}$ concentrations are used. Among these sensors, the first three are used to determine the human sensibility. And the last to protect human from the harmful gas. First of all, human sensibilities are defined for each sensor datum, and then those are linearly combined to make a final human sensibility (kansei). The efficiency and usefulness of the meter are verified using a simulator on Windows 95 and a stand-alone system constructed using a microprocessor.

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