• 제목/요약/키워드: 온열 쾌적감

검색결과 72건 처리시간 0.026초

운전자의 심리·생리 반응을 고려한 승용차 쾌적 난방 모드에 관한 연구 (Research on the Thermal Comfort Heating Mode Considering Psychological and Physiological Response of Automobile Drivers)

  • 김민수;금종수;박종일;김동규
    • 설비공학논문집
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    • 제30권3호
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    • pp.149-157
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    • 2018
  • In this research, the psychological and physiological reactions of the driver were measured during winter to evaluate thermal comfort. The experiment was conducted using 3 different cases which are hot air heating, warm-wire seat heating and hot air & warm-wire seat heater operating simultaneously. With regard to psychological reaction, the warm-wire heating mode was the most preferred. The reason is that it is dry in other cases. With regard to EEG response, thermal comfort increased by 37% in warm air mode heating. In addition, when the warm-wire heating mode and the hot air & warm-wire heating mode were simultaneously operated, the thermal comfort continuously increased by between 17% and 20% for 20 minutes after boarding. Under the change of the autonomic nervous system, the thermal stress level increased by 23% after 15 minutes on board in the hot air heating mode and decreased continuously by 13% during the warm-wire seat heating mode. We recommended the hot air heating mode is only used for a short time to raise the inside temperature during the early boarding period and that warm-wire seat heating mode be actively utilized.

대류난방시 실내열환경에 관한 연구 - 온도 및 기류속도에 대한 온열쾌적감- (The Study on Indoor Thermal Environment during Convection Heating - Thermal Comfort by Indoor Air Temperature and Velocity -)

  • 김동규;정용현
    • 한국환경과학회지
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    • 제14권2호
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    • pp.209-214
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    • 2005
  • Draft is defined as an unwanted local cooling of the human body caused by air movement. It is a serious problem in many ventilated or air conditioned buildings. Often draft complaints occur although measured velocities in the occupied zone maybe lower than prescribed in existing standards. Purpose of this study is to clarify the evaluation of thermal comfort based on temperature and air velocity in winter. Experiments were performed in an environmental chamber in winter. Indoor temperature and air velocity was artificially controlled. The experiments were performed to evaluate temperature conditions and air velocity conditions by physiological and psychological responses of human. According to physiological responses and psychological responses, it was clear that the optimum air velocity is about 0.15 m/s and 0.30 m/s.

휴식과 운동 중 COVID-19 대응 보건용 마스크 착용이 호흡·심혈관계 반응 및 착용감에 미치는 영향 (Effects of Wearing COVID-19 Protective Face Masks on Respiratory, Cardiovascular Responses and Wear Comfort During Rest and Exercise)

  • 정재연;강찬혁;성유찬;장세혁;이주영
    • 한국의류산업학회지
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    • 제22권6호
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    • pp.862-872
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    • 2020
  • This study explores the effects of facemasks on respiratory, thermoregulatory, cardiovascular responses during exercise on a treadmill and at rest. Five male subjects (25.8 ± 0.8 y, 171.8 ± 9.2 cm in height, 79.8 ± 28.1 kg in weight) participated in the following five experimental conditions: no mask, KF80, KF94, KF99, and N95. Inhalation resistance was ranked as KF80 < KF94 < N95 < KF99 and dead space inside a mask was ranked as KF80 = KF94 < N95 < KF99. The surface area covered by a mask was on average 1.1% of the total body surface area. The results showed no significant differences in body core temperature, oxygen consumption (VO2), carbon dioxide production (VCO2), heart rate or subjective perception among the five experimental conditions; however, cheek temperature, respiratory ventilation and blood pressure were greater for KF80 or KF94 conditions when compared to KF99 or N95 conditions (p<0.05). The differences among mask conditions are attributed to the dead space or specific designs (cup type vs pleats type) rather than the filtration level. In addition, the results suggest that improving mask design can help mitigate respiratory resistance from increased filtration.

한국인의 온열쾌적감 및 생리신호에 관한 연구 ( Part II : 여름철 체감실험 결과 ) (Experimental Study on Thermal Comfort Sensation of Korean and Physiological Signal Part II : Analysis of Subjective Judgement in Summer Experiment)

  • 김동규;주익성;금종수;최광환;최호선;이길랑
    • 한국감성과학회:학술대회논문집
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    • 한국감성과학회 1997년도 한국감성과학회 연차학술대회논문집
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    • pp.113-117
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    • 1997
  • 본 논문은 여름철 체감실험에 대한 결과이다. 유니폼을 착용한 각 피험자(중학생, 대학생, 고령자)는 90분동안 환경시험실에 체재하면서 의자에 앉아 전신온냉감 및 쾌불쾌감을 신고하였다. 체감실험동안 피부온도는 인체의 3곳에서 측정하였고 피험자는 10분 간격마다 전신온냉감 및 쾌불쾌감을 신고하였다. 환경물리량및 인체 피부온도는 매 20초 간격으로 측정하였다. 여름철 체감실험 결과 아래의 결론을 얻었다. 1)평균피부온도가 증가함에 따라 TSV는 선형적으로 능가하며 열적으로 중립감을 느낄 때으리 평균피부온도는 고령자의 경우 남자 33.8$^{\circ}C$, 여자 34.3$^{\circ}C$이고, 대학생 남자의 경우 34.1$^{\circ}C$ ,여자 33.8$^{\circ}C$, 중학생의 경우는 34.4$^{\circ}C$이다. 2)발한량과 평균피부온도의 관계는 각 계층 모두 평균피부온도 34$^{\circ}C$를 전후로 급격히 상승함을 알 수 있다. 3)전신온냉감이 중립일 경우 고령자 남자의 SET*=25.6$^{\circ}C$, 고령자 여자 28.4$^{\circ}C$, 대학생 남자 26$^{\circ}C$, 대학생여자 26.9$^{\circ}C$, 중학생 27.1$^{\circ}C$이었다.

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기능성 실험 가운의 개발 및 평가 -체온조절 및 온열 쾌적성을 중심으로- (Development and Evaluation of Functional Lab Gowns in Point of Thermoregulation and Thermal Comfort)

  • 최정화;이주영;김소영
    • 한국의류학회지
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    • 제28권2호
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    • pp.292-302
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    • 2004
  • The purpose of this study was to evaluate thermal properties of lab gowns developed from the point of safety and work efficiency. We evaluated thermal and subjective responses of subjects wearing functional new lab gowns (Type B, C, D) and a popular lab gown on the market (Type A). Type B was a new lab gown made of woven fabric with functional cuffs. Type C was a new apron made of woven fabric with arm protectors. Type D was a new lab gown made of non-woven material with functional cuffs and openings around the armpits. Temperature in the climatic chamber was set at 19$^{\circ}$C as an indoor temperature in winter and at 24$^{\circ}$C in summer. There were no significant differences in rectal temperature and heart rate among four types of gowns and between two air temperatures for 120 min. Mean skin temperature was much higher in the type A and B than in He type C and D (p .05). In the 19$^{\circ}$C air, clothing microclimate temperature on the back was the highest in the type B and was the lowest in the type C (p .05). Clothing microclimate humidity was not significant differences among gowns. In subjective .esponses, subjects perceived that Type B was the warmest gown in the 19$^{\circ}$C and the hottest and more humid in the 24$^{\circ}$C than other gowns. Inversely, type C was the coolest gown among four gowns. Both in the 19$^{\circ}$C and in the 24$^{\circ}$C, the Type D had gained most responses of being comfortable. In conclusion, the temperature difference of 5$^{\circ}$C was more of an influencing factor than the difference from four types of lab gowns. Secondly, we recommend the manufacturers to make lab gowns with functional cuffs for safety purposes. Thirdly, the spread of the type of apron with arm protector will contribute to increase of the frequency of wearing in summer. Fourthly, it is necessary to study continuously about lab gowns with non-woven materials for researchers exposed to toxic chemical and biological materials.

서열환경하에서 안전모 착용시의 인체생리학적 반응 (Thermophysiological Responses of Wearing Safety Hat for Working at a Hot Environment)

  • 박소진;김희은
    • 한국의류학회지
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    • 제26권1호
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    • pp.74-82
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    • 2002
  • 본 연구에서는 서열환경하에서의 안전모 착용과 관련된 생리학적 온열반응을 조사하고 아울러 일반적인 안전모에 통풍을 목적으로 구멍을 뚫어 놓은 안전모가 작업시 체열방산, 체온의 항상성과 같은 생리반응에 어떠한 영향을 미치는지에 대한 검토를 실시하고자 성인 남자 5명을 대상으로 착용실험을 실시하였다. 구멍이 없는 일반적인 형태의 무공 작업 안전모와 통기를 목적으로 구멍을 뚫어 놓은 유공 작업 안전모를 대조군으로 하여, 온도 30$\pm$1$^{\circ}C$, 습도 55$\pm$10%R.H의 인공기후실에서 휴식과 운동을 되풀이하는 총70분간의 실험을 실시하였다. 그 결과를 요약하면 다음과 같다. 1. 직장온과 심박수는 유공안전모 착용시가 무공안전모 착용시 보다 유의하게 낮게 나타났으며, 체열평형과 관련하여 신체기능의 항상성을 유지하는 데에 유공안전모를 착용하는 것이 더 효율적임을 알 수 있었다. 2.각 부위의 피부온과 평균 피부온은 유공안전모 착용시가 무공안전모 착용시보다 유의하게 낮았는데 특히 발한이 다른 부위보다 먼저 시작되는 이마에서 더욱 두드러지게 나타났다. 이는 안전모 착용으로 체온이 상승되어 피부온과 평균 피부온의 상승으로 이어지는 과정에서 유공안전모 착용시 가 무공안전모 착용시보다는 더 유리하다는 것을 알수 있었다. 3. 혈압은 전 구간에 걸쳐 유공안전모 착용시가 무공 안전모 착용시 보다 낮게 나타났다. 유공안전모 착용시가 무공안전모 착용시 보다 혈액을 통해 전달되는 체열의 상승이 억제되고 피부온과 심박수의 상승이 억제되는 것을 알수 있었는데 이것이 곧 혈압의 과다상승 방지와 인체부담의 경감으로 연결되었다고 사료된다. 4. 발한량은 유공안전모 착용시가 무공안전모 착용시보다 낮은 값을 나타내 보였다. 운동으로 인해 높아진 머리부분의 온도는 통풍을 목적으로 구멍을 뚫어 놓은 유공안전모를 착용했을 때 통기구멍으로 공기가 순환되어 온도가 과도하게 상승하는 것이 방지된다. 따라서 서열환경하에서의 체온상승이 억제됨에 따라 낮은 발한량을 나타내 보였다. 안전모내의 기후에서 유공안전모 착용시가 무공안전모 착용시보다 유의하게 더 낮은 온도를 나타내었고, 안전모내 습도는 운동시에 유공안전모 착용시가 무공안전모 착용시보다 다소 낮은 경향을 보였다. 통기를 목적으로 구멍을 뚫어 놓은 유공안전모를 착용함으로 인해 모자내의 더운 공기가 외부와 순환되어 무공안전모 착용시 보다는 온도가 낮게 나타났고 땀이 유공안전모의 구멍을 통해 증발을 일으켜 과도하게 습해지는 것을 방지 할 수 있었다. 5. 주관적 감각으로 온냉감, 습윤감, 쾌적감, 피로감을 측정하였는데 유공안전모 착용시가 무공안전모 착용시보다 더 낮은 주관적 감각 수치를 나타내어 착용감이 더 좋았음을 알 수 있었다. 또한 근력측정에서 무공안전모 착용시가 유공안전모 착용시 보다 평가 수치 가 낮게 나타나 더 피로한 것을 알수 있다. 이상의 결과에서 통기를 목적으로 구멍을 뚫어놓은 유공작업안전모가 심부온, 피부온, 혈압, 심박수, 발한량, 모자내 기후 등의 인체생리반응을 고려해 볼 때 더 바람직한 작업 안전모 형태라는 것을 알 수 있었다. 종래의 작업과 관련한 피복연구에서 작업복, 장갑, 신발에 대하여는 생리학적 연구가 이루어졌으나, 안전모에 관한 연구에서는 생리학적인 부분을 고려하지 않고 단지 안전 보호측면에서의 연구가 이루어졌을 뿐이었다. 따라서 서열환경하에서 머리부분의 쾌적성을 고려한 다양한 작업 안전모에 대한 계속적인 연구와 개발이 이루어진다면 물리적 측면에서 작업 안전을 만족시킬 뿐만 아니라 생리적 측면에서 체열 평형을 도모하여 작업 능률의 향상을 가져올 것이다.

철도 차량 정비 작업자를 위한 일회용 부직포 작업복의 온열적 성능 평가 (Evaluation of the Thermal Properties of Disposable Coveralls for Railroad Carriage Maintenance Workers)

  • 최정화;이주영;김소영
    • 한국의류학회지
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    • 제28권8호
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    • pp.1175-1185
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    • 2004
  • This study evaluated thermo-physiological and subjective properties of improved disposable coveralls for railroad carriage maintenance through climatic chamber trials and a filed study. Subjects wore five kinds of disposable coveralls (Type A: a disposable coverall on the market, Type B: a coverall with an improved hood and size-adjustable design, Type C: a coverall with a portable hood, Type D: a coverall with small holes for ventilation, Type E: a sleeveless coverall, Type F: a separated type of coverall with half sleeves) The air temperature in the climatic chamber was set in 9$^{\circ}C$ and 30$^{\circ}C$ For each condition, subjects simulated the railroad work for 120min. and rectal temperature, skin temperatures, clothing microclimate and subjective sensations were measured. The results of chamber trials showed rectal temperature and clothing microclimate did not display significant differences by clothing type. In 30$^{\circ}C$ air temperature, mean skin temperature was higher in Type E and Type F than in Type A(p<0.05) but between the improved coveralls(B-F), we could not find any significant difference. In the case of thermal comfort, the most preferred types were Type B and Type C in 9$^{\circ}C$ and Type F in 30$^{\circ}C$. All subjects felt more comfortable in the improved coveralls than in coveralls of the market (Type A). In field study, workers preferred Type B, Type C and Type F to Type A but the most favorite type differed by the specific type of work. Especially, workers were dissatisfied that Type D tore easily due to lots of small holes around the armpits and Type I did not protect workers' shoulder and arms from oil contamination. According to the climatic chamber trials and field study, the most effective coveralls were Type B and Type C for winter and Type F for summer.

PIV 유동 계측을 통한 천장형 실내기의 최적 제어 설계 (Optimal Flow Control of Ceiling Type Indoor Unit by PIV Measurements)

  • 성재용;안광협;이기섭;최호선;이인섭
    • 대한기계학회논문집B
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    • 제27권8호
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    • pp.1042-1050
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    • 2003
  • A heating flow discharged from a 4-way ceiling type indoor unit has been investigated to determine the design parameters for the optimal flow control. The flow was measured by a PIV(particle image velocimetry) system and an experimental model of 1/10 scale with a transparent room was devised by satisfying the Archimedes number. This similarity is generally used in cases where the forced convection has similar magnitude of the natural convection. To optimize the heating flow, several vane angles and vane control algorithms of cross and right angle controls were considered. Regarding the vane angle, experimental results show that 30$^{\circ}$is an optimal angle to avoid re-suction flows without significant increase in flow noise. Temperature distribution measured in the environmental chamber ensures the increased thermal comfort when compared to the case, 60$^{\circ}$angle. At the optimal angle, applying open/close control gives rise to more uniform distribution of the heating flow than without control. Especially, the cross-control seems to be satisfactory for thermal comfort.

여름철 수면시 온열쾌적감 평가 -제 2보 : 평균 피부온도 및 생리신호에 관하여 - (Evaluation of Thermal Comfort during Sleeping in Summer - Part II : About mean Skin Temperatures and Physiological Signals -)

  • 김동규;금종수;박종일
    • 설비공학논문집
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    • 제18권1호
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    • pp.1-6
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    • 2006
  • This study was performed to evaluate sleep efficiencies and conditions for comfortable sleep based on the analysis of EEGs and MST under four thermals conditions. 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 of $4.1\times4.9\times2.7m$ size. EEGs were obtained from C3-A2 and C4-Al electrode sites. Sleep stages were classified, then TST, SWS latency and SWS/TST were calculated for the evaluation for sleep efficiencies on thermal conditions. As results, it was concluded that indoor thermal environments of $24\~26^{\circ}C$ was the best for comfortable and deep sleep.

대류 난방시 실내열환경에 관한 연구 -상하온도차에 대한 온열쾌적감- (The Study on Indoor Thermal Environment during Convection Heating - Thermal Comfort Sensation for Vertical Temperature Differences -)

  • 김동규;금종수
    • 한국환경과학회지
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    • 제14권2호
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    • pp.215-220
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    • 2005
  • Thermal neutrality is not enough to achieve thermal comfort. The temperature level can be the optimal, and still people may complain. This situation is often explained by the problem of local discomfort. Local discomfort can be caused by radiant asymmetry, local air velocities, too warm and too cold floor temperature and vertical temperature difference. This temperature difference may generate thermal discomfort due to different thermal sensation in different body parts. Therefore, thermal comfort can not be correctly evaluated without considering these differences. This study investigates thermal discomfort sensations of different body parts and its effect on overall thermal sensation and comfort in air-heating room. Experimental results of evaluating thermal discomfort at different body parts in an air-heating room showed that thermal sensation on the shoulder was significantly related to the overall thermal sensation and discomfort. Although it is known that cool-head, warm-foot condition is good for comfort living, cool temperature around the head generated discomfort.