• Title/Summary/Keyword: Mean skin temperature(MST)

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Evaluation of Thermal Comfort on Temperature Differences between Outdoor and Indoor Thermal Conditions in Summer (여름철 실내외 온도차에 따른 인체의 온열쾌적성 평가)

  • 금종수;김동규;최광환;이낙범;임재중;최호선;배동석
    • Korean Journal of Air-Conditioning and Refrigeration Engineering
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    • v.14 no.11
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    • pp.890-896
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    • 2002
  • Purpose of this study is to clarify the evaluation of thermal comfort based on temperature differences between outdoor and indoor thermal conditions in summer. The experiments were performed to evaluate temperature difference between indoor and outdoor thermal conditions (29, 31, $33^{\circ}$) by physiological and psychological responses of human. According to physiological responses, TSV (thermal sensation vote) and CSV (comfort sensation vote) and psychological responses, ECG (electrocardiogram), MST (mean skin temperature) of human, it was clear that the optimum temperature difference is about $5^{\circ})\;and\;7^{\circ}$).

Effect of Cooling Hands in the Cold Water for the Physiological Responses and Clothing Comfort -Focused on Vascular Hunting Reaction, Thermal Sensation and Pain Sensation- (손의 한랭자극이 인체생리반응과 의복의 쾌적성에 미치는 영향 -한랭혈관반응, 온랭감각, 한랭통증을 중심으로-)

  • 이원자
    • The Research Journal of the Costume Culture
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    • v.12 no.2
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    • pp.279-289
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    • 2004
  • This study was conducted to compare the hunting reaction of finger in the cold water. Finger skin temperature is measured the left middle finger tip immersion in cold water of 5℃ for 30 minutes and measurements were made on finger skin temperature(Ts), thermal comfort, and cold pain sensations during the experiment at the spring (March) and Winter(December). Results were follows. Is before immersion was at the highest in spring and at the lowest in winter and was closely related to the indoor temperature Ts during immersion and recovery. Mean of finger skin temperature(MST), the skin temperature at the first rise(TTR) and amplitude of finger skin temperature reaction during immersion(AT) were significant higher in spring than that in winter(P<.01). The lowest skin temperature(LST) during the cold water immersion were significantly higher in spring than that in winter (P<.05). The frequency of the appearance of cold-Induced vase dilation(CIVD) was higher in spring than that in winter. However, time for the first temperature(TTR) and recovery time(RT) had no seasonal variation. In addition, cold pains during immersion were felt more strongly in spring than in winter. Local thermal sensation, finger thermal sensation in dynamic state during hand immersion was different from that in the Winter. Spring was slowly cold in cold water immersion.

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Evaluation of Thermal Comfort during Sleeping in Summer - Part IV : Study on Indoor Temperature Conditions for Comfort Sleep - (여름철 수면시 온열쾌적감 평가 - 제4보 : 쾌적수면을 위한 실내온도 설정에 관한 연구 -)

  • Kum, Jong-Soo;Kim, Dong-Gyu;Park, Jong-Il
    • Korean Journal of Air-Conditioning and Refrigeration Engineering
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    • v.19 no.4
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    • pp.307-312
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    • 2007
  • This study was performed to evaluate sleep efficiencies and conditions for comfortable sleep based on the analysis of sleep efficiency and MST under four thermals conditions ($22^{\circ}C,\;24^{\circ}C,\;26^{\circ}C,\;30^{\circ}C$). Five female subjects who have similar life cycle and sleep patterns were participated for the sleep experiment. Their age was from 20 to 22 years old. They were healthy, and had regular sleep with consistent bed and wakeup time. It was checked whether they had a good sleep before the night of experiment. Experiments were performed in an environmental chamber using thermo-hygrostat. The physiological signal (EEG) for sleep stage were obtained from C3-A2 and C4-Al electrode sites. Sleep stages were classified, then SWS latency and SWS/TST were calculated for the evaluation for sleep efficiencies on thermal conditions. As results, mean skin temperature for comfort sleeping was $34.5{\sim}35.4^{\circ}C$. Considering sleep efficiency and mean skin temperature, indoor room temperature of upper limit was $28.1^{\circ}C$.

Evaluation of Thermal Comfort for the Vertical Room Air Temperature Difference and for the Control of Air Stream based on Physiological Signal Analysis (실내 상하온도차와 기류방식 제어에 따른 온열쾌적성 평가를 위한 생리신호분석)

  • 이낙법;임재중;배동석;금종수;최호선;이구형
    • Science of Emotion and Sensibility
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    • v.2 no.1
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    • pp.147-155
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    • 1999
  • 온열쾌적감에 영향을 주는 중요한 요인들로는 온도, 습도, 기류 등의 물리적 요인과 성별이나 체질 등 뿐만 아니라 온열환경에서 느끼는 인간의 감성적인 측면도 요인으로 작용한다. 본 연구에서는 여러 가지 온열 환경 중에서 실내의 상하온도차와 기류방식의 제어에 따른 생체반응의 변화, 및 감성의 변화를 관찰하여 온열환경에 따른 인간의 온열쾌적감을 평가하기 위해 생리신호를 측정, 분석하였다. 인간에게 가장 쾌적함을 주는 최적의 실내 상하온도차와 기류제어방식을 구현하기 위한 평가방법으로 MST(mean skin temperature)분석 및 HRV(heart rate variability) 분석과 EEG 주파수 스펙트럼 분석을 시행하였다. 그 결과 실내의 상하온도차는 23$^{\circ}C$의 머리부위 온도에서 발 부위와의 온도차가 -3$^{\circ}C$일 때 가장 쾌적한 조건으로 나타났고, 기류제어방식은 감성기류조건에서 가장 쾌적함을 보였다. 본 연구를 통해 실내의 상하온도차와 기류방식에 대한 온열환경의 쾌적조건을 설정하였고, HRV 분석과 EEG의 주파수 분석이 주판신소설문평가와 유의한 결과를 나타내어 이러한 생리신호의 분석이 인간의 감성적 측면을 고려한 온열쾌적성을 펑가하는데 보다 객관적이고 신뢰성 있는 평가지표로 이용될 수 있음을 제시하였다.

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Comfort Control Algorithm Development of Car Air Conditioner using Thermal Comfort Evaluation of Driver : Part I - Air-conditioning Operating Preference of Driver (자동차 에어컨 쾌적제어 알고리즘 개발을 위한 운전자 온열감성 평가 : 제 1 보-운전자의 에어컨 조작 선호도)

  • Kim, Min-Soo;Kim, Dong-Gyu;Lee, Gi-Deok;Kum, Jong-Soo
    • Korean Journal of Air-Conditioning and Refrigeration Engineering
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    • v.26 no.6
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    • pp.294-300
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    • 2014
  • In this study, we investigated and evaluated the air conditioning operation of the driver according to the temperature difference between the inside and outside of a car parked outside during the summer. We suggest including a comfort mode to the car air conditioning system to improve the thermal comfort of the driver, in which the comfort can be maintained for a longer time. For the a result of our experiment, in the cases with temperature of above $45^{\circ}C$ inside of the car, the subjects preferred strong air blow with the face and the arms in the direction of the blow. In the cases with temperature of below $40^{\circ}C$ inside of the car, the subjects preferred lower volume of air blow. In the temperature below $28.1^{\circ}C$ inside of the car, the mean temperature on the skin of the driver reached the comfort zone.

Basic Study on Creating Ecological Residence Space - A thermal environment study of the aged - (생태 공간 조성에 관한 기초 연구 -고령자를 대상으로 한 열환경 연구-)

  • Kim, Dong-Gyu;Ha, Byeong-Yong;Kum, Jong-Soo;Chung, Yong-Hyun
    • Journal of Fisheries and Marine Sciences Education
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    • v.23 no.2
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    • pp.153-161
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    • 2011
  • Creating standards on thermal environment has been organized traditionally based on the youth and the manhood who are in mainly active layer of a society. However, traditional creating standards have differences from the physiology of the aged who have weak physical ability than younger person. As a result, it causes a health problem of the aged. Therefore, In this study, we had a basic study to create a comfortable thermal environment which had considered to a physical ability and a physiology of the aged, and build a ecological residence space to maintain health. We had several experiments with the aged; Experiment, Comfort Sensation Vote, Mean Skin Temperature and Analyzing HRV. The result have following by: 1)For the aged, the summer recommend temperature, $26^{\circ}C$, is appropriate within first 30 ~ 40 minutes, but it should be increasing the temperature after that time. 2) By considering PMV status and thermal feeling of the aged, they are prefer to higher temperature than normal setting of air-condition system. 3) In the condition of the summer recommend temperature, $26^{\circ}C$, they had answered in neutral or comfort with the comfort sensation vote. However, we had figure out that they had stress in a lower temperature by analyzing the result of HRV.