• 제목/요약/키워드: flat-top

검색결과 241건 처리시간 0.023초

소형 ROV를 활용한 독도 및 심흥택해산 해저면 탐사 (Observation on the Seabed around Simheungteak Seamount near Dokdo and using Mini-ROV)

  • 민원기;노현수;김창환;박찬홍;김동성
    • 한국해양학회지:바다
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    • 제24권1호
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    • pp.18-29
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    • 2019
  • 독도와 심흥택 해산의 정상부 및 사면에서 HD 급 비디오카메라, 2기의 LED 조명, 1개의 다목적 로봇팔, 8개의 추진기가 장착된 소형 ROV로 해저면 조사를 수행하였다. 조사에 사용된 장비는 스웨덴에서 제작된 500 m급 소형 무인잠수정 "V8 SII"과 지원모선인 "코쌀 5호"였으며, 수심 범위가 45~370 m인 조사해역의 4정점에서 총 6회 잠수를 수행하였고, 잠수시간은 운용조건에 따라 약 30~120분 소요되었다. 조사 결과, 독도 주변 해저 경사면과 해산 정상부 부근에는 다양한 크기의 암석 및 밀도 높은 부착생물인 심해성 말미잘(Actinostolidae sp.), 거미불가사리류(Ophiuridae sp.), 대게류의 서식이 확인되었다. 본 조사를 통해 얻어진 결과는 1) 주요 수산자원인 대게류의 서식 확인 및 심해생물상 자료, 2) 해저면의 퇴적상 및 지형 특성 확인, 3) 육상기원 어구 폐기물 확인 등이다. 본 탐사는 수산자원 및 생태학적으로 중요한 독도 해저면과 주변 해산의 수중환경의 첫 기록으로서, 동해의 해산 정상부의 심해 저서환경 및 생물의 직접관찰에 소형 ROV가 활용 가능함을 시사하였다.

빅데이터를 활용한 어촌체험휴양마을 방문객의 경험분석 - 화성시 백미리와 양양군 수산리 어촌체험휴양마을을 대상으로 - (An Analysis of the Experience of Visitors of Fishing Experience Recreation Village Using Big Data - A Focus on Baekmi Village in Hwaseong-si and Susan Village in Yangyang-gun -)

  • 송소현;안병철
    • 농촌계획
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    • 제27권4호
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    • pp.13-24
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    • 2021
  • This study used big data to analyze visitors' experiences in Fishing Experience Recreation Village. Through the portal site posting data for the past six years, the experience of visiting Fishing Experience Villages in Baekmi and Susan was analyzed. The analysis method used Text mining and Social Network Analysis which are Big data analysis techniques. Data was collected using Textom, and experience keywords were extracted by analyzing the frequency and importance of experience texts. Afterwards, the characteristics of the experience of visiting the Fishing Experience Village were identified through the analysis of the interaction between the experience keywords using 'U cinet 6.0' and 'NetDraw'. First, through TF and TF-IDF values, keywords such as "Gungpyeong Port", "Susan Port", and "Yacht Marina" that refer to the name of the port and the port facilities appeared at the top. This is interpreted as the name of the port has the greatest impact on the recognition of the Fishing Experience Villages, and visitors showed a lot of interest in the port facilities. Second, focusing on the unique elements of port facilities and fishing villages such as "mud flat experience", "fishing village experience", "Gungpyeong port", "Susan port", "yacht marina", and "beach" through the values of degree, closeness, and betweenness centrality interpreted as having an interaction with various experiences. Third, through the CONCOR analysis, it was confirmed that the visitor's experience was focused on the dynamic behavior, the experience program had the greatest influence on the experience of the visitor, and that the experience of the static and the dynamic behavior was relatively balanced. In conclusion, the experience of visitors in the Fishing Experience Villages is most affected by the environment of the fishing village such as the tidal flats and the coast and the fishing village experience program conducted at the fishing port facilities. In particular, it was found that fishing port facilities such as ports and marinas had a high influence on the awareness of the Fishing Experience Villages. Therefore, it is important to actively utilize the scenery and environment unique to fishing villages in order to revitalize the Fishing Experience Villages experience and improve the quality of the visitor experience. This study is significant in that it studied visitors' experiences in fishing village recreation villages using big data and derived the connection between fishing village and fishing village infrastructure in fishing village experience tourism.

Comparison of behavior of high-rise residential buildings with and without post-tensioned transfer plate system

  • Byeonguk Ahn;Fahimeh Yavartanoo;Jang-Keun Yoon;Su-Min Kang;Seungjun Kim;Thomas H.-K. Kang
    • Computers and Concrete
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    • 제31권4호
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    • pp.337-348
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    • 2023
  • Shear wall is commonly used as a lateral force resisting system of concrete mid-rise and high-rise buildings, but it brings challenges in providing relatively large space throughout the building height. For this reason, the structure system where the upper structure with bearing, non-bearing and/or shear walls that sits on top of a transfer plate system supported by widely spaced columns at the lower stories is preferred in some regions, particularly in low to moderate seismic regions in Asia. A thick reinforced concrete (RC) plate has often been used as a transfer system, along with RC transfer girders; however, the RC plate becomes very thick for tall buildings. Applying the post-tensioning (PT) technique to RC plates can effectively reduce the thickness and reinforcement as an economical design method. Currently, a simplified model is used for numerical modeling of PT transfer plate, which does not consider the interaction of the plate and the upper structure. To observe the actual behavior of PT transfer plate under seismic loads, it is necessary to model whole parts of the structure and tendons to precisely include the interaction and the secondary effect of PT tendons in the results. This research evaluated the seismic behavior of shear wall-type residential buildings with PT transfer plates for the condition that PT tendons are included or excluded in the modeling. Three-dimensional finite element models were developed, which includes prestressing tendon elements, and response spectrum analyses were carried out to evaluate seismic forces. Two buildings with flat-shape and L-shape plans were considered, and design forces of shear walls and transfer columns for a system with and without PT tendons were compared. The results showed that, in some cases, excluding PT tendons from the model leads to an unrealistic estimation of the demands for shear walls sit on transfer plate and transfer columns due to excluding the secondary effect of PT tendons. Based on the results, generally, the secondary effect reduces shear force demand and axial-flexural demands of transfer columns but increases the shear force demand of shear walls. The results of this study suggested that, in addition to the effect of PT on the resistance of transfer plate, it is necessary to include PT tendons in the modeling to consider its effect on force demand.

경기도 화성 고정리 공룡알 화석지 공룡생태박물관 부지선정을 위한 지구물리 및 지질조사 (Geophysical and Geological Investigation for Selecting a Dinosaur Museum Site in the Dinosaur Egg Fossil Area, Gojeong-ri, Hwasung, Gyeonggi Province)

  • 김한준;정갑식;이보연;조철현;이광배;이준호;주형태;이광훈
    • 지구물리와물리탐사
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    • 제13권4호
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    • pp.357-363
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    • 2010
  • 이 연구에서는 많은 양의 공룡알 화석이 발견된 경기도 송산면 고정리의 시화호 남측 간척지내에 위치한 공룡생태박물관 건립부지의 $350{\times}750\;m^2$ 구역에서 탄성파 굴절법 탐사, 시추, 그리고 시추공에서 하향식 탄성파 탐사로 이루어지는 지질조사를 통해 부지내 기반암과 그 위에 쌓인 갯벌의 분포와 특성을 파악하였다. 전체 6,950 m 길이의 11개 측선에서 해머를 파원으로 이용하여 탄성파 굴절법 자료를 획득하여 역산으로 지질구조를 구하였다. 5개의 지점에서 지표에서 기반암까지 시추를 하였으며 이때 시료를 채취하여 입도분석 등을 통해 퇴적물을 분류하였으며 일부 시료에서 갯벌의 진화과정을 밝히기 위해 연대측정을 하였다. 2개 시추공에서 지층시료를 회수한 후에 해머를 음원으로 이용하여 깊이에 따라 탄성파의 속도를 측정하였다. 조사지역의 지질은 지표에서 아래로 갯벌, 풍화토, 그리고 기반암의 구조로 나타난다. 갯벌퇴적층과 풍화토층의 두께는 각각 5 ~ 12 m와 2 ~ 8 m이다. 기반암은 중생대 백악기 퇴적암층으로 해석되며 조사지역내에서 서쪽에서 동쪽으로 갈수록 얕게 분포하는 경향이 있다. 조사구역을 피복하고 있는 갯벌퇴적층과 풍화층의 부피는 약 140만 $m^3$, 무게는 350만 ton으로 계산된다. 조사지역에서 해수면 상승속도는 0.1 ~ 0.15 cm/yr로 추정되는데 이 값은 8,000년전 이후의 느린 해수면 상승속도를 반영한다고 볼 수 있다.

태양에너지를 이용한 곡물건조시스템의 시뮬레이션에 관한 연구 (Simulation of Drying Grain with Solar-Heated Air)

  • 금동혁;김용운
    • Journal of Biosystems Engineering
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    • 제4권2호
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    • pp.65-83
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    • 1979
  • Low-temperature drying systems have been extensively used for drying cereal grain such as shelled corn and wheat. Since the 1973 energy crisis, many researches have been conducted to apply solar energy as supplemental heat to natural air drying systems. However, little research on rough rice drying has been done in this area, especially very little in Korea. In designing a solar drying system, quality loss, airflow requirements, temperature rise of drying air, fan power and energy requirements should be throughly studied. The factors affecting solar drying systems are airflow rate, initial moisture content, the amount of heat added to drying air, fan operation method and the weather conditions. The major objectives of this study were to analyze the effects of the performance factors and determine design parameters such as airflow requirements, optimum bed depth, optimum temperature rise of drying air, fan operation method and collector size. Three hourly observations based on the 4-year weather data in Chuncheon area were used to simulate rough rice drying. The results can be summarized as follows: 1. The results of the statistical analysis indicated that the experimental and predicted values of the temperature rise of the air passing through the collector agreed well. 2. Equilibrium moisture content was affected a little by airflow rate, but affected mainly by the amount of heat added, to drying air. Equilibrium moisture content ranged from 12.2 to 13.2 percent wet basis for the continuous fan operation, from 10.4 to 11.7 percent wet basis for the intermittent fan operation respectively, in range of 1. 6 to 5. 9 degrees Centigrade average temperature rise of drying air. 3. Average moisture content when top layer was dried to 15 percent wet basis ranged from 13.1 to 13.9 percent wet basis for the continuous fan operation, from 11.9 to 13.4 percent wet basis for the intermittent fan operation respectively, in the range of 1.6 to 5.9 degrees Centigrade average temperature rise of drying air and 18 to 24 percent wet basis initial moisture content. The results indicated that grain was overdried with the intermittent fan operation in any range of temperature rise of drying air. Therefore, the continuous fan operation is usually more effective than the intermittent fan operation considering the overdrying. 4. For the continuous fan operation, the average temperature rise of drying air may be limited to 2.2 to 3. 3 degrees Centigrade considering safe storage moisture level of 13.5 to 14 perceut wet basis. 5. Required drying time decrease ranged from 40 to 50 percent each time the airflow rate was doubled and from 3.9 to 4.3 percent approximately for each one degrees Centigrade in average temperature rise of drying air regardless of the fan operation methods. Therefore, the average temperature rise of drying air had a little effect on required drying time. 6. Required drying time increase ranged from 18 to 30 percent approximately for each 2 percent increase in initial moisture content regardless of the fan operation methods, in the range of 18 to 24 percent moisture. 7. The intermittent fan operation showed about 36 to 42 percent decrease in required drying time as compared with the continuous fan operation. 8. Drymatter loss decrease ranged from 34 to 46 percent each time the airflow rate was doubled and from 2 to 3 percent approximately for each one degrees Centigrade in average temperature rise of drying air, regardless of the fan operation methods. Therefore, the average temperature rise of drying air had a little effect on drymatter loss. 9. Drymatter loss increase ranged from 50 to 78 percent approximately for each 2 percent increase in initial moisture content, in the range of 18 to 24 percent moisture. 10. The intermittent fan operation: showed about 40 to 50 percent increase in drymatter loss as compared with the continuous fan operation and the increasing rate was higher at high level of initial moisture and average temperature rise. 11. Year-to-year weather conditions had a little effect on required drying time and drymatter loss. 12. The equations for estimating time required to dry top layer to 16 and 1536 wet basis and drymatter loss were derived as functions of the performance factors. by the least square method. 13. Minimum airflow rates based on 0.5 percent drymatter loss were estimated. Minimum airflow rates for the intermittent fan operation were approximately 1.5 to 1.8 times as much as compared with the continuous fan operation, but a few differences among year-to-year. 14. Required fan horsepower and energy for the intermittent fan operation were 3. 7 and 1. 5 times respectively as much as compared with the continuous fan operation. 15. The continuous fan operation may be more effective than the intermittent fan operation considering overdrying, fan horsepower requirements, and energy use. 16. A method for estimating the required collection area of flat-plate solar collector using average temperature rise and airflow rate was presented.

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태양에너지를 이용한 곡물건조시스템의 시뮬레이션에 관한 연구 (Simulation of Drying Grain with Solar-Heated Air)

  • 금동혁
    • Journal of Biosystems Engineering
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    • 제4권2호
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    • pp.64-64
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    • 1979
  • Low-temperature drying systems have been extensively used for drying cereal grain such as shelled corn and wheat. Since the 1973 energy crisis, many researches have been conducted to apply solar energy as supplemental heat to natural air drying systems. However, little research on rough rice drying has been done in this area, especially very little in Korea. In designing a solar drying system, quality loss, airflow requirements, temperature rise of drying air, fan power and energy requirements should be throughly studied. The factors affecting solar drying systems are airflow rate, initial moisture content, the amount of heat added to drying air, fan operation method and the weather conditions. The major objectives of this study were to analyze the effects of the performance factors and determine design parameters such as airflow requirements, optimum bed depth, optimum temperature rise of drying air, fan operation method and collector size. Three hourly observations based on the 4-year weather data in Chuncheon area were used to simulate rough rice drying. The results can be summarized as follows: 1. The results of the statistical analysis indicated that the experimental and predicted values of the temperature rise of the air passing through the collector agreed well.2. Equilibrium moisture content was affected a little by airflow rate, but affected mainly by the amount of heat added, to drying air. Equilibrium moisture content ranged from 12.2 to 13.2 percent wet basis for the continuous fan operation, from 10.4 to 11.7 percent wet basis for the intermittent fan operation respectively, in range of 1. 6 to 5. 9 degrees Centigrade average temperature rise of drying air.3. Average moisture content when top layer was dried to 15 percent wet basis ranged from 13.1 to 13.9 percent wet basis for the continuous fan operation, from 11.9 to 13.4 percent wet basis for the intermittent fan operation respectively, in the range of 1.6 to 5.9 degrees Centigrade average temperature rise of drying air and 18 to 24 percent wet basis initial moisture content. The results indicated that grain was overdried with the intermittent fan operation in any range of temperature rise of drying air. Therefore, the continuous fan operation is usually more effective than the intermittent fan operation considering the overdrying.4. For the continuous fan operation, the average temperature rise of drying air may be limited to 2.2 to 3. 3 degrees Centigrade considering safe storage moisture level of 13.5 to 14 perceut wet basis.5. Required drying time decrease ranged from 40 to 50 percent each time the airflow rate was doubled and from 3.9 to 4.3 percent approximately for each one degrees Centigrade in average temperature rise of drying air regardless of the fan operation methods. Therefore, the average temperature rise of drying air had a little effect on required drying time.6. Required drying time increase ranged from 18 to 30 percent approximately for each 2 percent increase in initial moisture content regardless of the fan operation methods, in the range of 18 to 24 percent moisture.7. The intermittent fan operation showed about 36 to 42 percent decrease in required drying time as compared with the continuous fan operation.8. Drymatter loss decrease ranged from 34 to 46 percent each time the airflow rate was doubled and from 2 to 3 percent approximately for each one degrees Centigrade in average temperature rise of drying air, regardless of the fan operation methods. Therefore, the average temperature rise of drying air had a little effect on drymatter loss. 9. Drymatter loss increase ranged from 50 to 78 percent approximately for each 2 percent increase in initial moisture content, in the range of 18 to 24 percent moisture. 10. The intermittent fan operation: showed about 40 to 50 percent increase in drymatter loss as compared with the continuous fan operation and the increasing rate was higher at high level of initial moisture and average temperature rise.11. Year-to-year weather conditions had a little effect on required drying time and drymatter loss.12. The equations for estimating time required to dry top layer to 16 and 1536 wet basis and drymatter loss were derived as functions of the performance factors. by the least square method.13. Minimum airflow rates based on 0.5 percent drymatter loss were estimated.Minimum airflow rates for the intermittent fan operation were approximately 1.5 to 1.8 times as much as compared with the continuous fan operation, but a few differences among year-to-year.14. Required fan horsepower and energy for the intermittent fan operation were3. 7 and 1. 5 times respectively as much as compared with the continuous fan operation.15. The continuous fan operation may be more effective than the intermittent fan operation considering overdrying, fan horsepower requirements, and energy use.16. A method for estimating the required collection area of flat-plate solar collector using average temperature rise and airflow rate was presented.

구치부용 복합 레진 가열시 물리적 성질의 변화에 관한 실험적 연구 (THE EFFECT OF TEMPERATURE CHANGES ON THE PHYSICAL PROPERTIES OF POSTERIOR COMPOSITE RESINS)

  • 박연홍;민병순;최호영;박상진
    • Restorative Dentistry and Endodontics
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    • 제14권1호
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    • pp.41-56
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    • 1989
  • The purpose of this study was to examine the effect of temperature dependence of the behavior on the physical properties of posterior composite resins. Three light cure posterior composite resins (Heliomolar, Litefil-P, and P-50) and one chemical cure posterior composite resin (Bisfil-II) were used as experimental materials. Composite resin was placed in a cylindrical brass mold (2.5 mm high and 6.5 mm inside diameter) that was rested on a glass plate. Another flat glass was placed on top of the mold, and the plate was tightly clamped together. After the mold had been filled with the light cure composite material, the top surface was cured for 30 seconds with a light source. Chemical cure resin specimens were made in the same manner as above. Three hundreds and twenty composite resin specimens were constructed from the four composite materials. One hundred and sixty specimens of them were placed in a heater at $50^{\circ}C$, $75^{\circ}C$, $100^{\circ}C$, $125^{\circ}C$, $150^{\circ}C$, $175^{\circ}C$ and $200^{\circ}C$ for 5 minutes or 10 minutes respectively before compressive strengths were measured. Another one hundred and sixty specimens were tested for the diametral tensile strengths in the same way as above. They were randomly divided into eight groups according to the mode of heating methods as follows and stored in distilled water at $37^{\circ}C$ for 24 hours. Group $37^{\circ}C$ - specimens were stored at $37^{\circ}C$ in distilled water for 24 hours. Group $50^{\circ}C$ - specimens were heated at $50^{\circ}C$ after curing. Group $75^{\circ}C$ - specimens were heated at $75^{\circ}C$ after curing. Group $100^{\circ}C$ - specimens were heated at $100^{\circ}C$ after curing. Group $125^{\circ}C$ - specimens were heated at $125^{\circ}C$ after curing. Group $150^{\circ}C$ - specimens were heated at $150^{\circ}C$ after curing. Group $175^{\circ}C$ - specimens were heated at $175^{\circ}C$ after curing. Group $200^{\circ}C$ - specimens were heated at $200^{\circ}C$ after curing. Twenty specimens of each of four composite resins were respectively made by insertion of materials into same mold for examining the dimensional changes between before and after heating. The final eighty specimens were stored in distilled water at $37^{\circ}C$ for 24 hours before testing the dimensional changes. Compressive and diametral tensile strengths were measured crosshead speed 1mm/minute and 500Kg in full scale with a mechanical testing machine (DLC 500 Type, Shimadzu Co., Japan). Dimensional changes were determined by measuring the diametral changes of eighty specimens with micrometer (Mitutoyo Co., Japan). Results were as follows: 1. Diametral tensile strengths of specimens in all groups were increased with time heated compared with control group except for that in group $50^{\circ}C$ and the maximum diametral tensile strength was appeared in the specimen of Litefil-P heated for 10 minutes at $100^{\circ}C$. In heliomolar and P-50, it could be seen in the specimen heated for 10 minutes at $150^{\circ}C$, but in Bisfil-II, it could be found in the specimen heated for 5 minutes at $150^{\circ}C$. 2. Compressive strengths of specimens in all groups was tended to be also increased with time heated but that in group $50^{\circ}C$ and the maximum compressive strengths were showed in the same specimens conditioned as the diametral tensile strengths of four composite materials tested. 3. In Heliomolar, Litefil-P, and Bisfil-II, it was decreased in diameters of resin specimens between before heating and increased in diameters of resin specimens after storing in distilled water, but it was not in P-50. 4. There is little difference in diametral tensile strengths, compressive strengths, and dimensional changes followed by heating the resin specimens for 5 minutes and 10 minutes, but there is no statistical significances.

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다양한 광원에 의한 광중합형 수복물질의 미세경도에 관한 연구 (THE EFFECTS OF VARIOUS CURING LIGHT SOURCES ON THE MICROHARDNESS OF LIGHT-ACTIVATED RESTORATIVE MATERIALS)

  • 최남기;양규호;김선미;최충호
    • 대한소아치과학회지
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    • 제32권4호
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    • pp.634-643
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    • 2005
  • 이번 연구의 목적은 청색광을 방출하는 다이오드(LED) 광중합기(FreeLight2, L.E.Demetron I, Ultra-Lume 5)가 3가지의 레진재료들 (Z250, Point 4, Dyract AP)의 미세경도에 미치는 영향을 평가하고 그들의 최적 중합시간을 찾는 것이다. 표본들은 각각의 복합체에 대하여 아크릴릭 몰드$(2.0mm{\times}3mm)$를 사용하여 만들었다 모든 표본들은 평평한 유리판위에 Mylar strip을 위치시킨 후 제작되었다. 몰드에 복합체가 위치된 후 또다른 Mylar strip으로 덮고 유리판으로 가볍게 압력을 가하였다 광조사 시간은 Elipar TriLight은 40초, Elipar FreeLight 2, L.E.Demetron I, Ultra-Lume 5는 각각 5, 10, 20, 40초씩으로 하였으며 평균 경도값은 각각의 그룹에서 상층과 하층을 사용하여 계산했다. 결과의 통계적 유의성을 위해 ANOVA와 Sheffe's test를 사용하였다. FreeLight 2. Ultra-Lume 5, and L.E. Demetron I는 대조군인 할로겐 광중합 40초에 비교하여 Point 4를 20초에 중합시킬 수 있었다. FreeLight 2 and L.E.Demetron I는 대조군인 20초의 할로겐 광중합에 비교하여 Z250을 10초에 중합시킬 수 있었다. FreeLight 2와 L.E.Demetron I는 대조군인 40초의 할로겐 광중합에 비교하여 Dyract AP를 10초에 중합시킬 수 있었다. 이번 연구에서 사용된 LED 광중합기는 통상적으로 이용되는 할로겐 광중합기와 비교시 절반이하의 조사시간으로도 적절한 미세 경도를 얻을 수 있었다.

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한국(韓國) 고대(古代) 궁원지(宮苑池)의 전개양상(展開樣相)과 사상적(思想的) 배경(背景)에 관한 연구(硏究) (A Study on aspect of development and the ideological backgrounds of a pond a place of Korea)

  • 오승연
    • 헤리티지:역사와 과학
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    • 제37권
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    • pp.65-89
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    • 2004
  • 지금까지 한국 고대 궁원지에 대한 연구는 조경학의 분야에서 주로 다루어 왔으나 고고학적 발굴을 직접 담당하는 연구자들에 의해서는 단편적인 유적이나 유물에 대해서 부분적으로 언급되었을 뿐 전반적이거나 종합적인 연구는 미약한 상태이다. 따라서 본고에서는 지금까지 발굴조사된 궁원지의 분류작업을 통해 한국 고대 궁원지의 계통관계를 파악하고, 궁원지 조영의 사상적 배경을 밝히고자 시도하였다. 한국의 고대 궁원지는 평면형태에 따라 방지계(I)와 곡지계(II)로 구분할 수 있었는데, 방지계(I)는 다시 섬 가산 정원석의 존재 여부에 따라 IA식과 IB식으로 세분되었다. 그리고 곡지계(II)는 호안이 곡선만으로 구성된 IIC식과 호안에 곡선과 직선이 함께 사용된 IID식으로 구분되었다. 또 규모에 따라서 최대직경 45m 이상의 대형(a)과 20m 미만의 소형(b)으로 구분되므로 결국 한국 고대 궁원지는 IAa IAb IBa IICa IICb IIDa로 분류할 수 있다. 우리나라에서 궁원지가 처음 확인되는 초창기부터 방지계와 곡지계는 공존하고 있었으며 신라의 삼국통일 후, 궁원지의 계승 및 변화의 양상이 나타난다. 즉, 통일신라에서는 평면형태가 직선+곡선으로 이루어진 궁원지를 주로 받아 들이는 반면, 발해에서는 고구려계의 방형플랜을 가진 궁원지를 계승하는 점은 앞 시기로부터의 연속성이 엿보인다. 한편, 평면형태의 계승관계와 달리 구성요소 면에서는 삼국시대에 존재하지 않던 섬상부의 정자터, 원지내 교각시설 등이 나타나고 있으며, 이와 같은 양상은 이웃한 일본에서도 동시에 출현하는 것으로 보아 7세기 후반~8세기 전반에 한 중 일 궁원지 조성에 새로운 변화의 동인이 작용하고 있음을 짐작할 수 있다. 궁원지 조영의 사상적 배경은 신선사상과 불교로 대별된다. 한국과 중국의 궁원지에 관한 기록이 모두 신선사상의 용어가 사용되는 점이나 한국 궁원지에서 섬 가산 정원석과 같은 구체적인 표현기재가 나타나고 있는 점, 그것이 제외된 궁원지와 뚜렷히 구분된다는 점등을 고려하면, 섬 가산 정원석이 사용된 궁원지는 신선사상이 반영된 것으로 볼 수 있다. 섬 가산 정원석이 제외된 궁원지는 동시기 신선사상이 반영된 곡지계 궁원지와 형식상 명확히 구분되고 있는 점과 동시기 사원지와 형태 구조상 동일하다는 점에서 불교저 색채가 짙다고 할 수 있다.

Chlorhexidine 처리가 상아질 접착제의 미세인장결합강도에 미치는 영향 (EFFECT OF CHLORHEXIDINE ON MICROTENSILE BOND STRENGTH OF DENTIN BONDING SYSTEMS)

  • 오은화;최경규;김종률;박상진
    • Restorative Dentistry and Endodontics
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    • 제33권2호
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    • pp.148-161
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    • 2008
  • 본 연구는 상아질 혼성층의 교원섬유를 가수분해하는 효소인 MMPs (Matrix metalloproteinses)의 억제제로 알려진 chlorhexidine (CHX)을 적용 후 결합강도를 측정하였으며, 이를 각각 열순환 처리 후 결합강도를 측정하였다. 또한 주사전자현미경으로 접착계면에서의 파괴 양상을 비교 분석하였다. 우식이 없는 발거한 32개의 제3대구치의 교합면 상아질을 노출시키고 GI그룹에서는 dentin conditioner를 처리 후 2% chlorhexidine을 적용시키고, 산부식 접착제 그룹에서는 인산 산부식을 시행하고 2% chlorhexidine을 적용 후 3단계 산부식형 상아질 접착제 (Scotchbond Multipurpose, SM), 2단계 산부식형 상아질 접착제 (Single Bond, SB)를 도포하고, 자가부식 접착제 그룹에서는 2% chlorhexidine 적용 후 자가부식 상아질 접착제 (Clearfil Tri-S, TS)를 도포한다. 이후 복합 레진 (Z-250)과 GI (Fuji-II LC)를 충전한 시편을 $1\;mm^2$의 단면을 갖는 beam으로 제작하여 열순환 하지 않거나, 10,000회 열순환 ($5\;{\sim}\;55^{\circ}C$)하였다. Universal testing machine (EZ-test; Shimadzu, Japan)에서 cross head speed 1 mm/min로 인장력을 가하여, 미세인장결합강도를 측정하였다. 실험 결과는 유의수준 0.05 level에서 two-way ANOVA를 이용하여 통계분석하였다. 그 후 파절된 시편의 파괴 양상을 현미경 (SEM)으로 관찰하여 다음과 같은 결론을 얻었다; 1. 2% CHX을 적용한 모든 실험군에서 상아질과의 미세인장결합강도가 증가하였고, 열순환은 상아질과의 미세인장결합강도를 감소시켰다 (P > 0.05). 2. CHX 적용 후 열순환 한 군은 CHX을 적용하지 않고 열순환한 군에 비하여 상아질과의 미세인장결합강도가 높았으며, 특히 GI와 TS군에서 유의한 차이를 나타내었다 (P < 0.05). 3. 파괴 양상 분석 결과, 혼성층에서의 접착성 파괴를 보이며, CHX을 적용하면 혼성층 기저부에서 상부로 파괴 부위가 옮겨가는 양상을 나타내었다. 이상의 연구 결과를 토대로, MMPs 억제제인 2% CHX은 글래스 아이오노머 시멘트와 상아질 접착제의 초기 미세인장결합강도에는 영향을 미치지 않으며, CHX 적용이 접착내구성을 유지하는데 도움이 되었다.