• 제목/요약/키워드: 예상 온열감

검색결과 44건 처리시간 0.019초

하계 인공환경실험에서의 온열쾌적특성 (Characteristics of thermal comfort for artificial environment experiment in summer)

  • 박종일;김경훈;홍희기;민병일;김창주
    • 설비공학논문집
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    • 제10권3호
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    • pp.368-377
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    • 1998
  • The purpose of this study was to examine theory about indoor thermal comfort-environment as well as to determine thermal sensation and physiological responses for men in summer indoor environment, under various air temperature and relative humidity, with male university students. Subjective Evaluation, Heart Rate(Electrocardiogram), Electroencephalogram(EEG) were examined. We found that comfort of people was achieved at SE $T^{*}$ 24.7$^{\circ}C$, -0.82<PMV<0.93, subject's clothing(0.41c1o)and the difference of skin temperature was found at the calf area as air temperature changes. At low SE $T^{*}$, heart rate was decreased and at high SE $T^{*}$, heart rate was increased but there was no change EEG(keeping $\alpha$-wave).wave).

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여름철 사무실내 한국인의 온열감 평가 (Evaluation of Korean Thermal Sensation in Office Buildings During the Summer Season)

  • 배귀남;이철희;이춘식
    • 설비공학논문집
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    • 제7권2호
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    • pp.341-352
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    • 1995
  • In this study, thermal parameters were measured and 213 occupants were also questioned in three office buildings located in Seoul during the summer season. Predicted mean vote-predicted percentage of dissatisfied(PMV-PPD) and standard new effective temperature(SET*) were used for evaluating Korean thermal sensation. The distribution of thermal sensation vote(TSV) and percentage of dissatisfied(PD) is very similar to that of PMV and PPD. By regression analysis, the following regression equation was obtained; TSV=0.339SET*-8.583. In this case, neutral temperature and comfort range are $25.3^{\circ}C$, $23.8{\sim}26.8^{\circ}C$ respectively. Present experimental results obtained from the field study is less sensitive to the temperature change than those obtained from the climate chamber study in Korea. But, thermal sensations are similar to each other near the neutral point. The neutral temperature and comfort range obtained by this experiment are higher than those of ANSI/ASHRAE Standard 55-1974 about $1.4{\sim}1.8^{\circ}C$.

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여름철 사무실내 온열환경 특성 및 쾌적성 평가 (Characteristics of Thermal Environments and Evaluation of Thermal Comfort in Office Building in Summer)

  • 이철희;배귀남;최항철;이춘식
    • 설비공학논문집
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    • 제6권3호
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    • pp.206-217
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    • 1994
  • In this study, indoor thermal parameters were measured to investigate the characteristics of thermal environments and 212 occupants were questioned to evaluate Korean thermal comfort in office building in summer. Thermal and comfort sensations were estimated using PMV(Predicted Mean Vote) and ET* (New Effective Temperature) which are most widely used nowadays. Comparing this experimental result with international standards and that of other research, Korean thermal responses were discussed. It was found that TSV(Thermal Sensation Vote) is more sensitive than PMV to the variation of temperature and that the measured percentage of dissatisfied is higher than PPD(Predicted Percentage of Dissatisfied) in real office building environments. By regression analysis, the following regression equation has been obtained: TSV=0.461ET*-11.808 and neutral temperature is $25.6^{\circ}C$ in this case. Thermal comfort range based on 80% satisfaction is also $24.0{\sim}26.8^{\circ}C$, which is about $1^{\circ}C$ higher than that of ANSI/ASHRAE Standard.

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PMV 지표에 의한 개별 공조시스템(PACS)의 쾌적성 평가에 관한 연구 (Evaluation of Thermal Comfort in Task Area with Personal Air-Conditioning System(PACS) b PMV Index)

  • 최익순;정광섭;박영칠;한화택;이정재
    • 설비공학논문집
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    • 제13권7호
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    • pp.647-652
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    • 2001
  • The thermal comfort of indoor spaces is very important factor in our life. Regions, cultures, climates and individual difference for establishing thermally comfortable environments should be considered carefully because these factors have a large influence on the thermal comfort doing some complicated interactions with environmental, psychological and physical elements. Recently, predicted mean vote(PMV) based on the heat transfer theory between environmental factors and human bodies has evaluated by many researchers and widely used nowadays. The objective of this study is to evaluate the thermal comfort in workspaces with personal air conditioning system using the measurements of environmental comfort parameters and the questionnaire survey of occupant's thermal senses with response to the environment.

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개별공조시스템(PACA)을 적용한 작업공간에서의 온열환경 특성 및 쾌적성 평가 (Characteristics of Thermal Environment and Evaluation of Thermal Comfort in Task Area with Personal Air-Conditioning System(PACS))

  • 최익순;정광섭;박영철;한화택;이정재
    • 설비공학논문집
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    • 제13권2호
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    • pp.106-114
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    • 2001
  • The office environment of the building has been significantly changed and the office automation(OA) for productivity improvement and efficiency has proceeded. According to thee trends, the concept of office environment was transferred from conventional \"working space\" to \"living space\" or \"creative space\". Thus, occupants in office building have demanded more comfortable and advanced task environment. The objective of this paper is to evaluate the indoor environment of working space with personal air conditioning system using the measurements of environmental comfort parameters and the questionnaire survey of occupants、 thermal sensation response to the environment.n response to the environment.

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공조방식에 의한 예상 온열감 반응(PMV) 변화에 따른 심리/생리적 감성반응의 변화 (The Changes of Psychological and Physiological Emotional Responses According to Change of the Index of Predicted Mean Vote (PMV) due to Air Conditioning Types)

  • 김보성;민윤기;민병찬;김진호
    • 감성과학
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    • 제14권4호
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    • pp.645-652
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    • 2011
  • 본 연구는 냉 난방공조 조건에서 예상 온열감 반응(predicted mean vote; PMV)의 변화에 따른 심리 생리적 감성반응의 변화를 살펴보고자 하였다. 이를 위해 기존 공조 시스템의 냉 난방 가동에 따라 PMV의 변화를 유도하고, 쾌/불쾌 및 각성/이완 정도를 심리적 감성반응으로, 심박률(heart rate; HR)을 생리적 감성반응으로 활용하여 PMV 변화에 따른 심리 생리적 감성반응을 측정하였다. 그 결과, 동일한 PMV 변화 범위 내에서 재실자의 심리적 쾌/불쾌 및 긴장/이완 반응과 생리적 반응이 공조 조건이 달라짐에 따라 변화하는 것으로 나타났다. 이러한 결과는 난방과 냉방의 공조조건에 따라 재실자의 실내 온열환경에 대한 감성반응이 서로 다를 뿐 아니라 각 공조 조건에 민감한 감성반응이 존재하는 것으로 해석할 수 있다. 이는 실내 온열조건을 재실자에게 가장 적합하도록 조절하고자 할 때, 인간의 심리 및 생리적 감성반응을 모두 고려해야 할 필요가 있음을 시사한다.

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겨울철 사무실내 온열환경 특성 및 쾌적성 평가 (Characteristics of Thermal Environments and Evaluation of Thermal Comfort in Office Building in Winter)

  • 배귀남;이철희;이춘식;최항철
    • 설비공학논문집
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    • 제7권2호
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    • pp.310-318
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    • 1995
  • In this study, indoor thermal parameters were measured to investigate the characteristics of thermal environments and 138 occupants were questioned to evaluate Korean thermal comfort in office building in winter. Thermal sensation was estimated by using PMV(Predicted Mean Vote) and ET*(New Effective Temperature) indices. Comparing present experimental result with international standards and that of other research, Korean thermal responses were discussed. Seasonal difference between summer and winter was also discussed. It was found that TSV(Thermal Sensation Vote) is more sensitive than PMV to the variation of temperature and that the measured percentage of dissatisfied is higher than PPD(Predicted Percentage of Dissatisfied) in real office building environments. By regression analysis, the following regression equation has been obtained; TSV=0.432ET*-8.814 and neutral temperature is $20.4^{\circ}C$ in this case. Thermal comfort range based on 80% satisfaction is also $19.4{\sim}22.4^{\circ}C$.

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동계 인공환경실험에 의한 온열쾌적특성 연구 (A study on characteristics of thermal comfort for artificial environmental experiment in winter)

  • 박종일;김경훈;정성일
    • 설비공학논문집
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    • 제10권6호
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    • pp.721-731
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    • 1998
  • Recently, many researchers are studying the relation between thermal environment and human comfort. The purpose of this study was to obtain basic data which are necessary to determine the thermal comfort sensation and physiological responses for men in winter indoor environment. From January to February 1998, subject experiment was 40 times proceeded under twenty different conditions of air temperature and relative humidity with early-twenty male university students. We examined subjective evaluation, Electrocardiogram(ECG), Electroencephalogram(EEG) of subjects. The results of this study can be summarized as follows : The comfort zone of people in winter was achieved at Standard new effective temperature($SET^*$) $ 25.2^{\circ}C$, PMV range was obtained by Fanger's statistical calculation was -0.27<PMV<+0.62, TSV range obtained subjects vote was -0.76<TSV<+0.36. The largest difference of skin temperature was found at the calf area as air temperature changes. vote rate of human body presented calflongrightarrowheadlongrightarrowforearmlongrightarrowchestlongrightarrowabdo men in turn. Heart rate was decreased at low $SET^*$ and heart rate was increased at high $SET^*$ But there was no change at EEG.

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PMV, TS 기준 건물 열 환경 제어법의 성능 및 적용성 분석 (Performance and Applicability of PMV-based and TS-based Building Thermal Controls)

  • 문진우
    • 설비공학논문집
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    • 제23권6호
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    • pp.430-440
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    • 2011
  • The purpose of this study was to investigate the interactions between the thermal factors in existing thermal control methods and to find out the control logic that can create more comfortable thermal conditions. For it, four thermal control logics were developed:conventional temperature-based control; temperature-based and humidity-based control; PMV-based control; and TS-based control. Their performance was comparatively tested in the U.S. typical 5-story office building in two climate zones (Detroit, Michigan and Miami, Florida) for two seasons (winter and summer) incorporating IBPT (International Building Physics Toolbox) and Matlab/Simulink. Analysis on the thermal conditions and energy efficiency revealed that each control logic created comfortable conditions for their respective target, i.e., temperature, humidity, PMV or TS, but uncomfortable for others (e.g., temperature-based control logic maintained PMV or TS uncomfortably or vise versa). In addition, energy efficiency was significantly different by logics. In conclusion, it can be said that the overall thermal comfort can be improved by the adoption of the PMV and TS as a target variable and their economical benefits are expected in the hotter climate zones with the reduced cooling and dehumidifying energy consumptions.