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1

5,200원

논산 개태사지석불입상(보물 제219호)은 담회색을 띠고 부분적으로 장석 반정을 함유하고 있는 중립 내지 조립질 의 화강섬록암으로 구성되어 있다. 구성암석의 전암대자율은 평균 12.06(×10-3 SI unit)으로 개태사지 배후의 천호산 (0.19×10-3 SI unit) 노두와는 많은 차이를 보이고 있어 석재의 외부 유입 가능성이 제기된다. 이 석불입상은 우협시불의 박리(35.2%), 본존불의 시멘트 보수물질(21.1%) 및 먼지(25.0%)가 주요한 손상현상으로 밝혀졌다. 초음파 속도는 본존 불 2850.2m/s, 좌협시불 2648.4m/s, 우협시불 2644.5m/s로 측정되었다. 이를 통해 산정한 일축압축강도는 우협시불이, 부위별로는 대좌에서 상대적으로 낮은 강도를 나타내어 손상도 평가 결과와 일치하였다. 석불입상이 봉안된 보호각 내부 의 연평균 기온은 13.7℃, 상대습도는 79.0%로, 계절에 따른 보호각 내부의 환경 변화는 근본적으로 외부의 변화를 따르 나 미기후 변동이 심하지 않아 비교적 안정된 실내 환경이 유지되고 있다. 석불입상의 대좌 표면에서는 봄과 여름철에 결로가 발생하는 것으로 확인되었으며, 겨울철에는 동결파괴가 우려된다. 이는 훼손도 평가와 초음파 탐사 결과에서 나타난 대좌의 풍화 및 강도 저하의 근본적인 요인일 가능성이 매우 크다 . 따라서 봄과 여름철에 집중 강우 시 실내의 제습과 한겨울에 기온 강하를 저감시킬 수 있는 조치가 필요하다.

The Gaetaesajiseokbulibsang (Treasure No. 219) consists of light gray and coarse to medium-grained granodiorite with feldspar phenocrysts in part. Magnetic susceptibility of the rock material was measured as 12.06(×10-3 SI unit), being different from the granite(0.19×10-3 SI unit) in the Mt. Cheonho. This indicates the raw material has been supplied from the outside. As a result of deterioration assessment, exfoliation of the Right Buddha, cement and dust of the Main Buddha were estimated as 35.2%, 21.1% and 25.0%. The ultrasonic velocity was measured as 2850.2m/s(Main Buddha), 2648.4m/s(Left Buddha) and 2644.5m/s(Right Buddha). The compressive strength calculated from the velocity showed low in the Right Buddha among three and the all pedestal parts which corresponds to the result of deterioration assessment. The indoor mean temperature and relative humidity of the shelter were 13.7℃ and 79.0%. It is evaluated that the indoor microclimate was stable and the shelter functioned to reduce climatic fluctuation of the outdoor. However, water condensation was occurred on the surface of the pedestal part during spring and summer, and freezing in winter season might also be done. These factors were probable to be a main cause of the surface exfoliation of the Triad Buddha Statues. Therefore, dehumidification and heating system in the shelter should be applied to prevent further deterioration.

2

도심의 도로방향에 따른 폭염시 도시 미기후 변화 KCI 등재

오금동, 이태철, 윤성환

대한건축학회지회연합회 대한건축학회연합논문집 제24권 제2호 통권 108호 2022.04 pp.1-8

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4,000원

Cities are an important source of greenhouse gas emissions, extremely vulnerable to the impact of climate change, and are a key place to deal with climate. Street, as one of the most basic and important space of urban functions and daily life, is a main component of city master plan related to organic activities. The purpose of this study is to analyze street microclimate environment and thermal comfort environment using ENVI-met program(V4.4.6 Summer 21), through changing street direction including North-South(N-S), Northeast-Southwest(NE-SW), East-West(E-W) and Southeast-Northwest(SE-NW) based on field measurement results. The results of this study were as follows: Mutual shading from adjacent buildings have a greater impact on outdoor thermal environment especially in day time. At 13:00, the values of air temperature, mean radiant temperature, wind speed and comfort index in N-S and NE-SW street are greater than other two directions due to a lack of shading area. In addition, mean radiant temperature and comfort index of E-W street are more sensitive after sunrise and before sunset, but it shows less obvious on air temperature and wind speed. All of streets are "Very hot" level from 10:00 to 16:00, time duration of E-W street is longer than other three directions, and the highest mean radiant temperature and comfort index of NE-SW street are appeared at 14:00 that one hour later than other three directions. Shading of trees for microclimate environment is weaker than mutual shading from buildings. It is recommended that the main streets are more consistent with the prevailing wind direction in planning of new city.

3

4,000원

Pressure injuries continue to impose a substantial clinical and economic burden on hospitalized adults and older adults in long-term care, despite the availability of established prevention bundles and specialized support surfaces. At the same time, recent advances in voice interfaces, flexible sensors, explainable analytics, and textile-based thermal systems have made it increasingly plausible to conceptualize an integrated prevention platform. The purpose of this study was to synthesize the technological components, clinical evidence, and translational limitations of voice-based pressure injury neglect alerts and pressureredistribution smart cooling/heating systems. A structured literature review was performed across PubMed, Web of Science Core Collection, Scopus, IEEE Xplore, ScienceDirect, SpringerLink, Wiley Online Library, JMIR, and MDPI for studies published from January 2020 to May 2026. Eligible studies addressed pressure injury prevention or enabling technologies directly relevant to prevention, including voice interaction, multimodal sensing, posture classification, predictive analytics, support surfaces, microclimate management, and cooling/heating actuation. Thirty-seven studies were included in the qualitative synthesis, and 34 representative international journal articles were prioritized in this manuscript. The strongest clinical evidence remained concentrated in multicomponent prevention bundles and specialized support surfaces. The highest engineering maturity was observed in battery-free or flexible multimodal sensing of pressure, temperature, hydration, and posture. Voice-based systems were promising for repositioning adherence, remote follow-up, and caregiver escalation, but direct trials using pressure injury incidence as the primary endpoint were scarce. Active cooling/heating technologies were advancing rapidly in smart textiles and thermoelectric wearables, yet translation to fully integrated medical support surfaces remained limited. The most realistic next-generation architecture is therefore a layered platform that combines multimodal sensing, explainable risk alerts, voice interaction, pressure redistribution, and adjunctive microclimate control. Prospective clinical trials should evaluate pressure injury incidence, interface pressure, local temperature/humidity, alarm burden, caregiver workload, and cost-effectiveness simultaneously.

4

Frost Protection Parameters for highland crops based in loT for Benguet Province

Janelli M. Mendez

ASCONS IJASC Volume 1 Number 1 2019.03 pp.41-45

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4,000원

Background/Objectives: Severe atmospheric phenomenon decreases agricultural productivity. Recent years have witnessed a confusion of IoT answers helpful to varied application domain names. This paper presents an occult IoT observation post platform for good farming. This paper presents an occult IoT observation post platform for good farming. Methods/Statistical analysis: Specifically, the researcher tends to design a frost protection system with early warning system that collects from the deployed devices on the farmland in time period and provides frost forecasts and an early warning for the farmers using SMS based and Web-based monitoring for the weather stations. Findings: The planned system will effectively facilitate boost agricultural productivity by providing farmers with a lot of accurate frost forecast, thereby reducing the chance of frost harm. Improvements/Applications: The proposed framework is made by three parts, the data acquisition network, the climate figure service which goes about as a complementary source of data and the data processing framework. For the data acquisition network, an initial prototype has been built, deployed and tested in a real plot.

5

This study reviewed environmental and ecological services of urban forests regarding urban air, water, soil, and wildlife, and explored desirable design strategies to enhance the multiple services of urban forests. Urban forests ameliorated urban microclimate conditions and saved building energy uses through evapotranspiration, shading, and windspeed reduction. They reduced air pollutant concentrations from deposition and absorption, and controlled water pollution through rainfall interception and liquid matter uptake. They also increased wildlife diversity by providing cover and food. These environmental and ecological services were variable with different structures of urban forests. Maximizing the services requires a linkage of holistic and individualistic approach to urban forest design. The design through holistic approach should determine a desirable indicator of urban forest supply and proper spatial layout of urban forest patches at the whole urban scale. Horizontal and vertical forest structures at finer spatial scales are also critical for each type of urban forests such as gardens, parks, and streets. The services of urban forests were directly associated with their area, volume, and spatial network as well as density, size, and growth rate of planted trees. A new design skill for urban forests was presented and discussed in this study.

6

CFD 분석에 의한 느타리버섯 재배사 환경균일성 향상 연구 KCI 등재후보

이성현, 유병기, 이찬중, 임영택

한국버섯학회 한국버섯학회지 제15권 제1호 2017.03 pp.14-20

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4,000원

The oyster mushroom cultivation house typically has multiple layers of growing shelves that cause the disturbance of air circulation inside the mushroom house. Due to this instability in the internal environment, growth distinction occurs according to the area of the growing shelves. It is known that minimal air circulation around the mushroom cap facilitates the metabolism of mushrooms and improves their quality. For the purpose of this study, a CFD analysis FLUENT R16 has been carried out to improve the internal environment uniformity of the oyster mushroom cultivation house. It is found that installing a section of the working passage towards the ceiling is to maintain the internal environment uniformity of the oyster mushroom cultivation house. When all the environment control equipment – including a unit cooler, an inlet fan, an outlet fan, an air circulation fan, and a humidifier – were operated simultaneously, the reported Root Mean Square (RMS) valuation the growing shelves were as follows: velocity 23.86%, temperature 6.08%, and humidity 2.72%. However, when only a unit cooler and an air circulation fan operated, improved RMS values on the growing shelves were reported as follows: velocity 23.54%, temperature 0.51%, and humidity 0.41%. Therefore, in order to maintain the internal environment uniformity of the mushroom cultivation house, it is essential to reduce the overall operating time of the inlet fan, outlet fan, and humidifier, while simultaneously appropriately manage the internal environment by using a unit cooler and an air circulation fan.

7

4,200원

이 연구는 현풍석빙고의 미기후 특성을 분석하여 손상에 영향을 미친 기후인자를 해석하고 보존환경을 평가한 것이다. 석빙고의 내부 구성부재에는 균열, 이격, 탈락, 박락, 백화, 갈색 변색, 흑색 변색 및 생물에 의한 변색이 발생하였으며, 이 중 생물에 의한 변색이 가장 높은 훼손율(24%)을 보였다. 석빙고 내부의 환경은 외부의 기상 변화에 따라 변동하나 변동폭과 일교차가 작고 일정한 온습도를 유지하는 것으로 나타났다. 이는 석빙고 전면의 산사면과 폐쇄된 입구환경이 외기를 차단하여 온습도의 변화를 최소화하였기 때문이다. 석빙고의 단열환경은 수분의 응축과 동결 현상을 방지하여 물리적 손상도를 저감하고 장빙기능을 극대화한 것으로 판단된다. 그러나 99% 이상의 높은 상대습도는 미생물의 생장을 활성화시켜 생물학적인 손상도를 높인 것으로 해석된다.

This study aimed to identify weathering factors and to assess the conservation environment through microclimatic analysis of Hyeonpung Seokbinggo (ice-storing stone warehouse). The stone blocks inside Seokbinggo suffered crack, displacement, break-out, exfoliation, efflorescence, brown and black discoloration, and biological colonization. Biological colonization represented the maximum deterioration rate(24%) among those weathering forms. The indoor microclimate showed parallel patterns with outdoor one, but the indoor temperature and relative humidity ranged far narrower than outdoor and remained steady. The environmental characteristics resulted from blocking-out of outdoor heat by the closed entrance and surrounding microtopography. This prevented water condensation and freezing effects, so that it reduced physical deterioration of rock, and maximized ice-storing effect for long time. However, contrary to positive effect, extremely high relative humidity over 99% accelerated biological colonization inside the Seokbinggo.

8

4,600원

경주석빙고(보물 제66호)는 조선시대 얼음 저장고로서 주구성암석은 유백색 색조를 띠고 정동이 발달한 중립질의 알칼리화강암이다. 훼손도 평가 결과, 균열(12.5%), 이격(6.7%), 탈락(25.1%), 박락(20.9%), 백화현상(6.5%), 갈색 변색(9.8%), 암흑색 변색(2.0%) 및 생물에 의한 변색(26.5%) 등이 높은 것으로 확인되었다. 전체적인 물리적 훼손율은 43.7%로 홍예틀 1번과 2번에서, 변색에 의한 훼손율은 68.7%로 북벽에서 가장 높아 석빙고의 훼손 상태가 매우 심각한 것으로 평가되었다. 석빙고 내부는 겨울철을 제외하고 연중 90% 이상의 높은 상대습도를 유지하였으며, 내부 미기후는 외부 기후 변화에 의존하나 외부보다 변동이 현저히 적은 일정한 환경을 유지하고 있었다. 상대습도는 봄과 여름에 98~100%에 최빈값을 보였다. 훼손의 근본적인 요인은 강수와 지하수의 유입 및 결로수에 의한 높은 상대습도와 장기적인 수분 유지시간이다. 이 수분은 생물에 의한 변색, 부재의 재질약화, 구조체의 거동, 백화현상 등을 야기하였다. 한편 입구 전면의 사질토양으로 인한 분진과 부유 입자가 내부의 갈색 및 암흑색 변색을 가중시켰다.

The Gyeongju Seokbinggo (Treasure No. 66) is an ice-storing stone warehouse, consisting mainly of alkaligranite which shows milky white color and medium-grained textures with drusy cavities. As results of deterioration assessment, the deterioration rates were determined as crack (12.5%), disjoining (6.7%), breaking-out (25.1%), exfoliation (20.9%), efflorescence (6.5%), brown discoloration (9.8%), darkgray discoloration (2.0%) and biological discoloration (36.5%). Comprehensive physical deterioration rate and discoloration rate were calculated as 43.7% and 68.7%, respectively, that indicates the Seokbinggo has been severely weathered. Indoor relative humidity was above 90% except in winter season. Indoor microclimate was hardly fluctuating although indoor microclimate was dependent on the outdoor climate. The main cause of deterioration was high relative humidity and a long time of wetness due to penetration of rain, underground water and condensation. It was identified that the water brought out biological discoloration, dissolution of minerals, structural movement and efflorescence, and the dust from the ground soil in front of the entrance accelerated brown and dark gray discoloration on the stone surface.

9

인삼 차광자재별 미기상 및 고온피해 발생 비교 분석

장인배, 문지원, 유진, 장인복, 서수정, 전창후

[NRF 연계] 한국약용작물학회 한국약용작물학회지 Vol.27 No.4 2019.08 pp.278-283

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Background: High temperature damage in ginseng is influenced by shading materials related not only to temperature, but also to light intensity and light quality. To address, this green-colored khaki shading sheet is widely used. As they are recently, developed, there is limited research information about their attributes and use. Methods and Results: The four-layered shading net (FLSN), blue-colored shading sheet (BCSS), aluminum-coated shading board (ACSB), and green-colored shading sheet (GCSS) were installed in the wooden A type of sun-block facilities. Two layered black, shading net was additionally used to cover the facilities since the beginning of June. The average temperature at the facility where different shades were tested was in the order of BCSS (28.9℃) > FLSN (27.7℃) > GCSS (27.6℃) > ACSB (27.1℃). However, high temperature injury rates were in order: FLSN > ACSB > GCSS > BCSS. Root weight vaired and was in the order: ACSB > GCSS > BCSS > FLSN. Conclusions: High temperature damage is possible not only because of temperature increase, but also due to various environmental light factors. Ginseng high temperature injury was minimal when BCSS or GCSS were used by difference of light quality. Although the root weight was higher in ACSB, it could be vulnerable to high temperature damage. Therefore, we propose using GCSS for ginseng shading.

10

다층베드시설을 이용한 묘삼 생산 시 미기상 환경과 생육특성

장명환, 김승한, 최양애, 원도연, 김임수

[NRF 연계] 한국약용작물학회 한국약용작물학회지 Vol.26 No.6 2018.12 pp.490-497

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Background: The growth process of ginseng seedlings is very important in producing good quality ginseng. This study was carried out to investigate the effects of different microclimates on the growth characteristics of ginseng seedlings in a multi-layer bed facility. Methods and Results: Ginseng seedlings were cultivated in a three-layer bed facility. The air temperatures on the first and second floors were similar, while that on the third floor was about 1 - 4℃ higher than that on the other floors. The vapor pressure deficit (VPD) was higher inside than on the outside of the facility, and that on third floor was the highest in the multi-layer bed system. The photosynthetic rate, chlorophyll fluorescence, and growth characteristics of ginseng seedlings did not significantly differ among the three floors. The yield of ginseng seedlings was the highest at 721 g/1.62 ㎡ on the first floor. Conclusions: It was found that microclimate plays an important role in growing ginseng seedlings in multi-layer bed facilities, and therefore proper environmental control is important. In addition, producing ginseng seedlings using multi-layer bed facilities is a technology that is expected to provide a way to overcome climate change and stabilize ginseng production.

11

인삼 엽온과 미기상의 상관분석을 통한 최적 투광량 설정

이준수, 이승환, 박철수

[NRF 연계] 한국약용작물학회 한국약용작물학회지 Vol.29 No.4 2021.08 pp.293-301

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Background: The biological responses of crops can be more accurately studied by measuring leaf temperatures instead of monitoring the surrounding atmospheric temperatures. This study analyzed the correlations between ginseng leaf temperatures and microclimate factors to determine the optimal light transmittance rate of shading. Methods and Results: The correlations between the ginseng leaf temperature and microclimate factors, such as the light intensity and temperature within the shading structure, were analyzed at light transmittance rates of 10% and 6%, and changes in leaf colorization, photosynthetic efficiency rates and root weights were measured. The rise in the leaf temperature was significantly positively related to the internal temperature, while the rise in the internal temperature was significantly positively related to the light intensity outside the shading structure. The colorization degree and photosynthetic rate of leaves were 36.3 and 1.948 µ㏖·m−2 ·s−1 , respectively, at 6% light intensity, and 26.1 and 1.730 µ㏖·m−2 ·s−1 , respectively, at 10% light intensity, equating to an 8.6% increase in the root weight at 6%. Conclusions: To lower ginseng leaf temperatures and increase their photosynthetic rate and root weight, the amount of light transmitted inside the shading structure should be adjusted to 6%.

12

Microclimate and Rice Production

Uchijima, Zenbei

[Kisti 연계] 한국작물학회 한국작물학회지 Vol.27 No.4 1982 pp.314-339

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Fluctuating climate is still most important environmental constrain, although improved modem agricultural technology has succeeded to increase crop production in the world. To stabilize the food production under fluctuating weather conditions, it is very needed to obain the quantitative information of interactions between crops and climate. The main purpose of this paper is three hold. Using the JIBP-data, the dry matter accumulation of rice crops is studied in relation to weather indexes (\SigmaTa and \SigmaSt). Temperature dependence of the yield index of rice is analyzed as to air temperature and water temperature. \SigmaT$_{10}$ -fluctuations are studied using meteorological data at various stations. The possible shift of \SigmaT$_{10}$ -isopleths due to climate fluctuation is evaluated. The second interest is in the plant climate of rice crops. Using results of canopy photosynthesis, it is pointed that the canopy structure has most important implication in plant climate. Leaf-air, stomatal, and mesophyll resistances of rice crops are described in relation to weather conditions. The change in light condition and aerodynamical property of rice crops with the growth is illustrated. The energy partition is also studied at different growing stages. Third point is to show in more detail effective countermeasures against cold irrigation water and cool summer. Heat balance of warming pond and polyethylene tube as a heat exchanger is studied to make nomo-grams for evaluating the necessary area and necessary length. Effects of windbreak net on rice crops are illustrated by using experimental and simulation results.lts.

13

Intelligent Microclimate Control System Based on IoT

Altayeva, Aigerim Bakatkaliyevna, Omarov, Batyrkhan Sultanovich, Cho, Young Im

[Kisti 연계] 한국지능시스템학회 International Journal of Fuzzy Logic and Intelligent Systems Vol.16 No.4 2016 pp.254-261

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The present research paper is devoted to solving an urgent problem, i.e., the energy saving and energy efficiency of buildings. A rapid settlement method and experimental control of the energy conservation based on the specific characteristics of the thermal energy consumption for the heating and ventilation of the buildings, and as well as the rapid development of wireless sensor networks, can be used in a variety of monitoring parameters in our daily lives. Today's world has become quite advanced with smart appliances and devices such as laptops, tablets, TVs, and smartphones with various functions, and their use has increased significantly in our day-to-day lives. In this case, the most important role is played by a wireless sensor network with its development and use in heterogeneous areas and in several different contexts. The fields of home automation, process management, and health management systems make extensive use of wireless sensor networks. In this paper, we explore the main factors of the microclimate in an indoor environment. We control the temperature humidity, and other factors remotely using sensors and Internet-of-Things technologies.

14

Assessment of microclimate conditions under artificial shades in a ginseng field

Lee, Kyu Jong, Lee, Byun-Woo, Kang, Je Yong, Lee, Dong Yun, Jang, Soo Won, Kim, Kwang Soo

[Kisti 연계] 고려인삼학회 Journal of ginseng research Vol.40 No.1 2016 pp.90-96

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Background: Knowledge on microclimate conditions under artificial shades in a ginseng field would facilitate climate-aware management of ginseng production. Methods: Weather data were measured under the shade and outside the shade at two fields located in Gochang-gun and Jeongeup-si, Korea, in 2011 and 2012 seasons to assess temperature and humidity conditions under the shade. An empirical approach was developed and validated for the estimation of leaf wetness duration (LWD) using weather measurements outside the shade as inputs to the model. Results: Air temperature and relative humidity were similar between under the shade and outside the shade. For example, temperature conditions favorable for ginseng growth, e.g., between $8^{\circ}C$ and $27^{\circ}C$, occurred slightly less frequently in hours during night times under the shade (91%) than outside (92%). Humidity conditions favorable for development of a foliar disease, e.g., relative humidity > 70%, occurred slightly more frequently under the shade (84%) than outside (82%). Effectiveness of correction schemes to an empirical LWD model differed by rainfall conditions for the estimation of LWD under the shade using weather measurements outside the shade as inputs to the model. During dew eligible days, a correction scheme to an empirical LWD model was slightly effective (10%) in reducing estimation errors under the shade. However, another correction approach during rainfall eligible days reduced errors of LWD estimation by 17%. Conclusion: Weather measurements outside the shade and LWD estimates derived from these measurements would be useful as inputs for decision support systems to predict ginseng growth and disease development.

15

Modification of Microclimate to Improve Milk Production in Tropical Rainforest of Thailand

Suriyasathaporn, W., Boonyayatra, S., Kreausukon, K., Pinyopummintr, T., Heuer, C.

[Kisti 연계] 아세아태평양축산학회 Asian-Australasian journal of animal sciences Vol.19 No.6 2006 pp.811-815

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The objective of this study was to evaluate the effect of electric fan installation for milk production improvement of dairy cattle in Thailand. The study was conducted using 2 small-holder dairy farms in Chiang Mai province, during April to August 2004. Electric fans were installed in front of each row of cows. Each of the two rows of cows in the barn was defined as an experimental unit, thus each farm had two experimental units. The fans were operated alternately in 7-day intervals between rows of cows within each farm during the day or between 8.00 am to 8.00 pm. Non-operation periods were used as control. Milk yields were recorded. Data on environmental temperature and humidity were obtained from Chiang Mai Meteorological Center. Result from statistically analysis of milk record suggested an interaction between lactation period and fan installation. Therefore, this interaction term of lactation period and fan installation (PERIOD_FAN) was added as a variable to the regression model. Due to the repeated data collection of milk yield from the same cow (alternate week), milk yield was analyzed by repeated measure analysis (Mixed model). Least square means were calculated for all levels and used to compare between each pair-wise values. The final data were collected from the total of 18 cows with 2,072 data. Overall means and SEM of milk yields and days in milk separated into farm were $14.7{\pm}0.06kg/day$ and $176.3{\pm}2.2days$, and $15.2{\pm}0.22kg/day$ and $202.5{\pm}3.7$ days for farm A and farm B, respectively. For multivariable analysis, only PERIOD_FAN and humidity were significantly associated with milk yield. Only the first period of lactation showed that the amount of milk yields during fan installation was higher than that of non-fan installation (p<0.05). Cows with fan installation produced approximately 1.2 kg/cow more milk than cows without fan installation during this period. In conclusion, the use of electric fan operated during the day time increased milk production of cows during the first period of lactation.

16

Layering Effects on Clothing Microclimate, Clothing Insulation and Physiological Responses

Park, Joonhee, Yoo, Shinjung

[Kisti 연계] 대한가정학회 International journal of human ecology Vol.14 No.2 2013 pp.93-103

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This study investigated the relationship of clothing microclimate and physiological responses in order to examine the layering effects on the clothing microclimate as an index to predict clothing thermal insulation ($I_{cl}$). Experiments were conducted in a $15^{\circ}C$ environment on six physically active males. Increased clothing layers resulted in higher mean temperature inside the clothing ($\bar{T}_{cl}$) and $I_{cl}$. The $I_{cl}$ had a high correlation with: $\bar{T}_{cl}$ (r = 0.556), the difference between the innermost surface temperature and the outermost surface temperature at the chest (DST) (r = 0.549) and the temperature inside clothing at the abdomen (r = 0.478). $\bar{T}_{cl}$ had the highest correlation with the temperature inside clothing at the abdomen (r = 0.889). $\bar{T}_{cl}$ also had the highest correlation with $\bar{T}_{sk}$ (r = 0.860). The results showed that the relationship between $I_{cl}$ and $\bar{T}_{cl}$ was linear (p < .01). Thermal comfort had a negative correlation with $\bar{T}_{cl-thigh}$ (r=-0.411) and $\bar{T}_{cl}$ (r = -0.323) (p < .01.)

17

The Effect of Spacer on Microclimate and Comfort Sensation in Protective Clothing for Firefighters

Chung, Gi-Soo, Lee, Dae-Hoon

[Kisti 연계] 한국의류산업학회 한국의류산업학회지 Vol.4 No.6 2002 pp.564-566

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Protective clothing for firefighters typically consists of a flame resistant outer shell and inner layers. The inner layers are generally composed of a moisture barrier and a thermal barrier. On performing the task in fire place the heat and perspiration generated from the body become trapped inside the protective clothing. Those heat and moisture result into heat-stress and physical fatigue of fire fighter, which hinder the work. Therefore, the system of clothing designs and material layers must be chosen carefully to balance protection and comfort. 3 kinds of protective clothing of 3 layer structure were used in the experiment of physiological comfort. From the comparison of wear trials with the 3 kinds of layers in firefighters clothing, it indicates that the moisture dissipation of A+B2+C was highest, following A+BI+C andA+B3+C. And the heat dissipation of A+BI+C and A+B2+C were better than A+B3+C. In the protective clothing with A+B3+C, heat and perspiration generated through exercise remained in clothing system long and caused discomfort.

18

Frost and Pest Forecasting based on Microclimate Analysis for Smart Farm

문애경, 김승한, 조광현

[Kisti 연계] 한국농림기상학회 한국농림기상학회 학술대회논문집 2017 pp.56-57

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19

EFFECTS OF BED PADDING MATERIALS ON BED MICROCLIMATE AT THE ROOM TEMPERATURE OF $18^{\circ}C$

Imamura, Ritsuko

[Kisti 연계] 한국의류학회 한국의류학회 학술대회논문집 2005 pp.700-703

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20

Altering Conidial Dispersal of Alternaria solani by Modifying Microclimate in Tomato Crop Canopy

Jambhulkar, Prashant Prakash, Jambhulkar, Nitiprasad, Meghwal, Madanlal, Ameta, Gauri Shankar

[Kisti 연계] 한국식물병리학회 The plant pathology journal Vol.32 No.6 2016 pp.508-518

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Early blight of tomato caused by Alternaria solani, is responsible for severe yield losses in tomato. The conidia survive on soil surface and old dry lower leaves of the plant and spread when suitable climatic conditions are available. Macroclimatic study reveals that highest inoculum concentration of Alternaria spores appeared in May 2012 to 2013 and lowest concentration during January 2012 to 2013. High night temperature positively correlated and significantly (P < 0.01) involved in conidial spore dispersal and low relative humidity (RH) displayed significant (P < 0.05) but negative correlation with conidial dispersal. The objective of the study was to modify microclimatic conditions of tomato crop canopy which may hamper conidial dispersal and reduce disease severity. We evaluated effect of marigold intercropping and plastic mulching singly and in consortia on A. solani conidial density, tomato leaf damage and microclimatic parameters as compar to tomato alone (T). Tomato-marigold intercropping-plastic mulching treatment (T + M + P) showed 35-39% reduction in disease intensity as compared to tomato alone. When intercropped with tomato, marigold served as barrier to conidial movement and plastic mulching prevented evapotranspiration and reduced the canopy RH that resulted in less germination of A. solani spores. Marigold intercropping and plastic mulching served successfully as physical barrier against conidial dissemination to diminish significantly the tomato foliar damage produced by A. solani.

 
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