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        검색결과 10

        2.
        2020.10 KCI 등재 구독 인증기관 무료, 개인회원 유료
        불투수포장면적의 증가는 도심지 내 열환경 악화, 물순환체계 단절 등의 문제점과 더불어 인간의 여러 가지 신체적・정신적 질병에 원인이 되기도 한다. 이에 도시공원 내 거리에 따른 공기이온 실태와 거리별 기상요소 및 공기이온과의 상관성을 분석하여, 향후 도심지 내 대규모 도시공원 조성 혹은 리모델링에 있어서 기후적 측면의 건강성을 고려한 도시공원 조성의 기초자료로 제시하고자 하였다. 연구대상지는 서울시 송파구 올림픽공원을 대상으로 거리에 따라 4개 유형으로 구분한 뒤, 구간을 A, B로 분류하였다. 측정지점은 80지점을 선정한 후 토지피복 및 식생현황을 조사한 후 기상요소, 공기이온을 측정하 였다. 첫째, 구간별 녹지율은 A구간 Center(90%) > Inner(70%) > Outer-inner(10%) = Outer(10%), B구간 Center(100%) > Inner(60%) > Outer-inner(30%) > Outer(0%) 순이었다. 둘째, 기상요소의 경우 기온의 경우 Outer(24.18℃) > Outer-inner(22.90℃) > Inner(22.43℃) > Center(21.719℃)으로 분석되었으며, 상대습도의 경우 Center(46.49%) > Inner(43.36%) > Outer-inner(42.41%) > Outer(38.53%)으로 분석되었다. 셋째, 공기이온 중 양이온의 경우 Outer(435.71ea/㎤) > Outer-inner(415.16ea/㎤) > Inner(389.46ea/㎤) > Center(352.64ea/㎤)의 순이었으며, 음이온의 경우 Center(569.72ea/㎤) > Inner(499.83ea/㎤) > Outer-inner(410.58ea/㎤) > Outer(292.02ea/㎤) 순으로 Center로 갈수록 증가하는 것으로 분석되었으며, 도로와 가까워질수록 감소하는 것으로 분석되었다. 이온지수의 경우 Center(1.67) > Inner(1.31) > Outer-inner(1.08) > Outer(0.71)으로 분석되었다. 넷째, 상관성 분석결과 정(+)의 상관인 것은 음이온, 이온지수로 도로로부터 공원 Center로 갈수록 증가하는 것으로 분석되었으며, 부(-)의 상관인 것은 기온, 일사량, 양이온으로 도로와 가까워질수록 증가하는 것으로 분석되었다.
        4,000원
        3.
        2019.10 KCI 등재 구독 인증기관 무료, 개인회원 유료
        도심 산지형 공원 내 식생유형별 요인이 공기이온에 미치는 영향력을 파악하고자 충주시 탄금대 공원을 대상으로 수행하였다. 측정지점은 능선부 내 수종, 흉고직경, 울폐도, 층위구조에 따라 설정하였으며, 기상요소와 공기이온을 측정하였다. 공기이온 측정결과, 양이온 발생량은 평균 610.90±50.27ea/㎤, 음이온 발생량은 평균 723.58±64.25ea/㎤, 이온지수는 1.19±0.10 이였다. 식생유형에 따른 분석결과는 다음과 같다. 첫째, 공기이온은 수종, 흉고직경, 층위구조에 따라 차이가 발생하였으며, 통계적으로 유의한 것으로 분석되었다. 둘째, 이온지수와 식생유형과의 관계에서 수종, 흉고직경, 울폐도, 층위구조 모두에서 정의 상관관계로 분석되었으며, 양이온의 경우 수종, 흉고직경, 울폐도와 부의 상관관계, 음이온의 경우 수종, 흉고직경, 울폐도, 층위구조에서 정의 상관관계로 분석되었다. 셋째, 능선부 내 이온지수의 영향요인은 기상요인과 식생유형을 비교한 결과 식생유형의 상관계수가 더 높았으며, 세부적으로는 수종 > 층위구조 > 울폐도 > 흉고직경의 순이었다. 본 연구에서는 능선부를 대상으로 공기이온을 평가한 한계점이 존재한다. 이에 향후 공기이온에 대한 연구에서 지형구조, 식생유형을 모두 고려한 분석이 이루어져야할 것이며, 계절에 따른 변화·비교연구가 필요할 것으로 판단되었다.
        4,000원
        4.
        2006.12 KCI 등재후보 구독 인증기관 무료, 개인회원 유료
        Ozone has become a significant pollutant not only outdoors but also indoors. The ozone emission test was conducted for the sum of forty five air cleaners selected in the online shops and department stores. Negative ion emission test was also conducted for the selected fifteen ones which had the function to generate negative ions. Filter-type and complex type air cleaners emitted ozone less than 0.05 ppm, the standard of indoor ozone emission of air cleaner. Wet type ones emitted no ozone. In the case of ionizer type, 66.7% in the nine ones emitted ozone about 1.4~10 times larger than 0.05ppm. Most of air cleaners used a pin corona discharge emitted large amount of ozone. Those which used carbon fiber emitted little ozone in spite of generating a lot of negative ions.
        4,200원
        6.
        2004.06 KCI 등재후보 구독 인증기관 무료, 개인회원 유료
        The purpose of this work is to develop a new type of particle collection filter using electrical discharge technology. The new filter must be high efficiency and applicable to air conditioner to use for household, so we suggested the new type filter. The new type filter has a distinctive feature except characteristic of ESP, a thickness of collecting electrodes is thicker than that of existing type ESP. When particles come into the filter, the particles will collide with side surfaces of the collecting electrodes. At the same time of particle collision with side surface, the particles are charged by the collision and collected by electrical force. Therefore, we called this type "Ion Impactor". We optimized condition of thickness of collecting electrodes and applied voltage using six sigma method because thickness of collecting electrodes and applied voltage are very important to improve the collection efficiency. We analyzed distribution of electric field line, the electric field lines were uniformly distributed on the side surface of the collecting electrodes. From this analysis, we can see the improvement of the particle collection efficiency. We made the ion impactor type filter on a large scale to equip to the air conditioner, and measured the particle collection efficiency. For the 0.1∼0.2㎛ range particle, the collection efficiency was higher than that of existing type ESP by 30%. The collection efficiency of the 0.3∼0.4㎛ range particle was higher by 12%.
        4,000원
        7.
        2020.06 KCI 등재 서비스 종료(열람 제한)
        This study analyzes the effect of negative air ions on the concentration of airborne particulate matter and evaluates the expected purification efficiency of open spaces for particulate matter by investigating the amount of negative air ions generated by plants. This study establishes a negative air ion generation treatment environment, plant environment, and control environment to measure the purification efficiency of particulate matter under the conditions of each, analyzing the expected purification efficiency by designing a particulate matter purification model. Results show that the amount of generated negative air ion according to environment was negative air ion generation treatment environment > plant environment > control environment; this order also applies to the particulate matter purification efficiency. Moreover, it took 65 min for the negative ion generation treatment environment, 90 min for the plant environment, and 240 min for the control environment to reach the standard expected purification efficiency of particulate matter concentration of 960 mg/m³ for PM10. For PM2.5, with the designated maximum concentration of 700 mg/m³, it took 60 min for the negative ion generation treatment environment, 80 min for the plant environment, and more than 240 min for the control environment. Based on these results, the expected purification efficiency compared to the control environment was quadrupled in the negative ion generation treatment environment and tripled in the plant environment on average.
        8.
        2020.05 KCI 등재 서비스 종료(열람 제한)
        The purpose of this study was to provide basic health care data for the climate aspects of park re-cultivation by evaluating air ions according to the type of vegetation in the valley and upper slopes of the mountain park. Simple negative or positive air ions were expected to show the same tendencies, so they were analyzed in terms of correcting the air ion index. By analyzing the air ions according to the topography, it was found that valley > slope in terms of the air ion index. When analyzing air ions according to tree species, we found that evergreen conifers in the valley > the deciduous broad-leaved trees in the valley > the evergreen conifers in the slope = the deciduous broad-leaved trees in the slope. For DBH(Diameter at breast height), the valley large pole > slope large pole > slope medium hard wood, while crown density was analyzed as valley dense > slope dense> valley proper > slope proper. Layered structure analysis showed that the multi-layer structure of the valley > multi-layer structure of the slope = the single-layer structure of the valley > the single-layer structure of the slope. The correlation coefficient was determined according to vegetation type and air ion index in the order of DBH > crown density > layer structure > geomorphic structure. In this study, limits exist except for ridge line, valley, and slopes in urban mountain parks. Therefore, analysis should be made considering both topographical structure and various vegetation types in future studies of air ions.
        9.
        2017.10 KCI 등재 서비스 종료(열람 제한)
        The traditional temple in the urban landscape is a place of historical and cultural heritage with ethnic values within the city. However, when viewed in a landscape perspective, several problems are implied. This is because the temple is restricted within the territories of the temple when there is a great need for space for gatherers and tourists. Thus, a dissimilar landscape planning and management system from the current traditional temple is required. In this study, the landscape of the traditional temple in the city viewed from Bongeunsa temple grounds was set as the study area and the representative viewpoints within the temple grounds were used as a base of describing the landscape's image and the factors of the landscape preference was also derived. These factors were then used as a base to create the landscape preference map for the region of Bongeunsa temple to present a visual representative of the place. The factors showed a significant impact on the landscape of Bongeunsa temple were selected to aesthetics, amiability and complexity. The higher the preference of these factors was, the higher the preference was for the landscape as well. The factors representing the landscape image and the landscape map according to the landscape preference of the temple were created to allow regions that showed both low and high levels in the landscape image and preference within the grounds to be visually classified and regions that needed improvements were also displayed. Furthermore, it also allowed elements to be extracted from it. The results of this study was an attempt in creating the landscape map formed based on the landscape of the temple grounds.
        10.
        2017.06 KCI 등재 서비스 종료(열람 제한)
        This study analyzed the placement shape and correlation of green space focusing on anion that is one of curing substances. As its result, it was found out that the meteorological element becomes different and the generated amount of anion also gets different along such different meteorological element in case the shape of placing green space. As the result of analyzing the correlation with meteorological element , it was analyzed that it was the positive correlation in case of time, temperature and relative humidity and it was also analyzed that it was negative correlation in case of wind velocity and amount of light. But, in case of wind velocity, it was considered that the further complement research is required as the sampling distribution was shown as so biased by the windproof effect of the trees planted at the outskirts of green space in case of wind velocity. Based on th analyzed results as above, it suggested the model of generating anion by implementing multiple regression analysis such as y = -2462.383 + 0.304x1 x 72.746x2 x 7.315x3 x - 0.138x4 (x1; time, x2; air temperature, x3; relative humidity, x4; luminous intensity, R2; 0.691).