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"제민요술(齊民要術)"에 수록된 식품조리 가공법 연구보고 (I) -술- (A Study on the Cooking and Processing Methods Presented in CHE MIN YO SUL(Chinese Book of Husbandary) -Wines-)

  • 윤서석;윤숙경;조후종;이효지;안명수;안숙자;서혜경;윤덕인;임희수
    • 한국식생활문화학회지
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    • 제5권3호
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    • pp.349-359
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    • 1990
  • This study was carried out to understand and analyze the cooking and processing methods presented in CHE MIN YO SUL, Chinese books of husbandary was written in sixth century. This book was composed of two parts-part I is Agricultural production and part II is product-Utilization. Especially, wines and yeast(NU RUK) written in part II were studied at this study paper. Most of yeast was made of barley and wheat. These materials had been prepared as raw, steamed, and roasted state by proper ratio with kinds of yeast and then fermented as dough state. Occasionally, various kinds of soup made from cocklebur, leaves of mulberry tree, wormwood etc. put into yeast dough. Yeast doughs were shaped round and square with or without hole in the center, made in July of the lunar calendar and fermented for 3 or 4 weeks. There were 43 kinds of wines in this book. Most of them were made of all kinds of cereals grown at that time-rice, waxy rice, millet, waxy millet etc. These cereals had been steaming or cooking gruel with grain or powder state and then fermented with yeast. These wines were prepared by single or double brewing methods and the kinds of double brewing wines were more than single brewing wines by two times. There were none of wines made from fruit and distilled wines. Generally, single brewing wines were not made in Apr., Nov., Dec., of the lunar calendar and double brewing wines were not made in Aug., Oct., Nov., of the lunar calendar. And ripenning periods of wine brewing were various, from 1 day to 7 months for single brewing, from 2 days to 8 months for double brewing.

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Atmospheric Turbulence Simulator for Adaptive Optics Evaluation on an Optical Test Bench

  • Lee, Jun Ho;Shin, Sunmy;Park, Gyu Nam;Rhee, Hyug-Gyo;Yang, Ho-Soon
    • Current Optics and Photonics
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    • 제1권2호
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    • pp.107-112
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    • 2017
  • An adaptive optics system can be simulated or analyzed to predict its closed-loop performance. However, this type of prediction based on various assumptions can occasionally produce outcomes which are far from actual experience. Thus, every adaptive optics system is desired to be tested in a closed loop on an optical test bench before its application to a telescope. In the close-loop test bench, we need an atmospheric simulator that simulates atmospheric disturbances, mostly in phase, in terms of spatial and temporal behavior. We report the development of an atmospheric turbulence simulator consisting of two point sources, a commercially available deformable mirror with a $12{\times}12$ actuator array, and two random phase plates. The simulator generates an atmospherically distorted single or binary star with varying stellar magnitudes and angular separations. We conduct a simulation of a binary star by optically combining two point sources mounted on independent precision stages. The light intensity of each source (an LED with a pin hole) is adjustable to the corresponding stellar magnitude, while its angular separation is precisely adjusted by moving the corresponding stage. First, the atmospheric phase disturbance at a single instance, i.e., a phase screen, is generated via a computer simulation based on the thin-layer Kolmogorov atmospheric model and its temporal evolution is predicted based on the frozen flow hypothesis. The deformable mirror is then continuously best-fitted to the time-sequenced phase screens based on the least square method. Similarly, we also implement another simulation by rotating two random phase plates which were manufactured to have atmospheric-disturbance-like residual aberrations. This later method is limited in its ability to simulate atmospheric disturbances, but it is easy and inexpensive to implement. With these two methods, individually or in unison, we can simulate typical atmospheric disturbances observed at the Bohyun Observatory in South Korea, which corresponds to an area from 7 to 15 cm with regard to the Fried parameter at a telescope pupil plane of 500 nm.

임플랜트 식립부위 형성시 골조직의 온도변화에 관한 연구 (A STUDY ON THE TEMPERATURE CHANGES OF BONE TISSUES DURING IMPLANT SITE PREPARATION)

  • 김평일;김영수;장경수;김창회
    • 대한치과보철학회지
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    • 제40권1호
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    • pp.1-17
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    • 2002
  • The purpose of this study is to examine the possibility of thermal injury to bone tissues during an implant site preparation under the same condition as a typical clinical practice of $Br{\aa}nemark$ implant system. All the burs for $Br{\aa}nemark$ implant system were studied except the round bur The experiments involved 880 drilling cases : 50 cases for each of the 5 steps of NP, 5 steps of RP, and 7 steps of WP, all including srew tap, and 30 cases of 2mm twist drill. For precision drilling, a precision handpiece restraining system was developed (Eungyong Machinery Co., Korea). The system kept the drill parallel to the drilling path and allowed horizontal adjustment of the drill with as little as $1{\mu}m$ increment. The thermocouple insertion hole. that is 0.9mm in diameter and 8mm in depth, was prepared 0.2mm away from the tapping bur the last drilling step. The temperatures due to countersink, pilot drill, and other drills were measured at the surface of the bone, at the depths of 4mm and 8mm respectively. Countersink drilling temperature was measured by attaching the tip of a thermocouple at the rim of the countersink. To assure temperature measurement at the desired depths, 'bent-thermocouples' with their tips of 4 and 8mm bent at $120^{\circ}$ were used. The profiles of temperature variation were recorded continuously at one second interval using a thermometer with memory function (Fluke Co. U.S.A.) and 0.7mm thermocouples (Omega Co., U.S.A.). To simulate typical clinical conditions, 35mm square samples of bovine scapular bone were utilized. The samples were approximately 20mm thick with the cortical thickness on the drilling side ranging from 1 to 2mm. A sample was placed in a container of saline solution so that its lower half is submerged into the solution and the upper half exposed to the room air, which averaged $24.9^{\circ}C$. The temperature of the saline solution was maintained at $36.5^{\circ}C$ using an electric heater (J. O Tech Co., Korea). This experimental condition was similar to that of a patient s opened mouth. The study revealed that a 2mm twist drill required greatest attention. As a guide drill, a twist drill is required to bore through a 'virgin bone,' rather than merely enlarging an already drilled hole as is the case with other drills. This typically generates greater amount of heat. Furthermore, one tends to apply a greater pressure to overcome drilling difficulty, thus producing even greater amount heat. 150 experiments were conducted for 2mm twist drill. For 140 cases, drill pressure of 750g was sufficient, and 10 cases required additional 500 or 100g of drilling pressure. In case of the former. 3 of the 140 cases produced the temperature greater than $47^{\circ}C$, the threshold temperature of degeneration of bone tissue (1983. Eriksson et al.) which is also the reference temperature in this study. In each of the 10 cases requiring extra pressure, the temperature exceeded the reference temperature. More significantly, a surge of heat was observed in each of these cases This observations led to addtional 20 drilling experiments on dense bones. For 10 of these cases, the pressure of 1,250g was applied. For the other 10, 1.750g were applied. In each of these cases, it was also observed that the temperature rose abruptly far above the thresh old temperature of $47^{\circ}C$, sometimes even to 70 or $80^{\circ}C$. It was also observed that the increased drilling pressure influenced the shortening of drilling time more than the rise of drilling temperature. This suggests the desirability of clinically reconsidering application of extra pressures to prevent possible injury to bone tissues. An analysis of these two extra pressure groups of 1,250g and 1,750g revealed that the t-statistics for reduced amount of drilling time due to extra pressure and increased peak temperature due to the same were 10.80 and 2.08 respectively suggesting that drilling time was more influenced than temperature. All the subsequent drillings after the drilling with a 2mm twist drill did not produce excessive heat, i.e. the heat generation is at the same or below the body temperature level. Some of screw tap, pilot, and countersink showed negative correlation coefficients between the generated heat and the drilling time. indicating the more the drilling time, the lower the temperature. The study also revealed that the drilling time was increased as a function of frequency of the use of the drill. Under the drilling pressure of 750g, it was revealed that the drilling time for an old twist drill that has already drilled 40 times was 4.5 times longer than a new drill The measurement was taken for the first 10 drillings of a new drill and 10 drillings of an old drill that has already been used for 40 drillings. 'Test Statistics' of small samples t-test was 3.49, confirming that the used twist drills require longer drilling time than new ones. On the other hand, it was revealed that there was no significant difference in drilling temperature between the new drill and the old twist drill. Finally, the following conclusions were reached from this study : 1 Used drilling bur causes almost no change in drilling temperature but increase in drilling time through 50 drillings under the manufacturer-recommended cooling conditions and the drilling pressure of 750g. 2. The heat that is generated through drilling mattered only in the case of 2mm twist drills, the first drill to be used in bone drilling process for all the other drills there is no significant problem. 3. If the drilling pressure is increased when a 2mm twist drill reaches a dense bone, the temperature rises abruptly even under the manufacturer-recommended cooling conditions. 4. Drilling heat was the highest at the final moment of the drilling process.

조선시대 도검 패용 광다회의 제작기법 분석 (Analysis of the Manufacturing Techniques for the KwangDahoe Tying on the Sword in Joseon Dynasty)

  • 백지선;정광용
    • 헤리티지:역사와 과학
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    • 제50권3호
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    • pp.64-87
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    • 2017
  • 조선시대 끈을 일컫는 다회는 우리의 복식사, 문화사, 생활사가 녹아있는 산물로서 지역과 계층을 불문하고 다양한 분야에서 전반적으로 사용되었다. 국내외 다수의 유물이 현존하고 있으나 연구의 주요대상으로 선정되지 못하여 연구가 미흡하고 기법 전승 등에서도 접근성이 낮아 연구에 어려움이 많다. 본 연구에서는 도검의 패용(佩用)을 위해 사용된 광다회의 제작기법을 분석하여 다회의 비파괴적인 제작기법 분석 방안을 마련하고, 다회의 올바른 보존 및 계승에 기여하고자 하였다. 패용 광다회는 물건의 패용을 위한 용도로 사용되는 끈이며, 매듭을 맺기 위해 사용되기도 하여 현재는 매듭장에 의해 전승되고 있다. 제작원리는 원다회와 동일하고 다회틀 상판의 심지가 지지대 역할을 하기 때문에 제작된 다회의 중앙에 빈 공간이 존재하는 것이 특징이다. 이와 같은 다회는 3차원적으로 제작되어 제작기법이 복잡하고 현재까지 올의 개수와 배열에 따라 제작되는 다회에 관한 기초자료가 마련되어있지 않아 제작기법의 규명에 어려움이 많았다. 특히 제작기법의 추정을 위해 올을 해체하는 경우가 존재하지만 제작기법의 규명에는 어려움이 있고, 본래의 상태로 되돌릴 수 없다는 문제점도 있다. 따라서 다회의 비파괴적인 제작기법 분석방안 마련과 실제 유물에 대한 적용 가능성 평가의 필요성이 크다. 유물의 제작기법 분석은 다회 제작기법의 DB구축 결과를 바탕으로 하였고, DB구축을 위하여 다회의 도식화 및 복원샘플 제작, 형태적 특징 분석을 진행하였다. 또한 DB의 신뢰도를 높이기 위하여 유물의 X-ray CT 촬영으로 분석결과를 뒷받침할 근거를 마련하였으며, 촬영결과는 다회치기기법에 근거하여 제작기법을 해석하였다. 제작기법 분석의 대상으로 선정한 패용 광다회는 경인미술관 소장 도검(녹칠어피갑금동장별운도, 어피갑금동장곡병환도)의 패용을 위한 것으로 다회의 예술성, 기능성과 상징성을 겸비한 유산이며 광다회가 온전히 남아있어 띠돈을 비롯한 패용장식이 모두 온전한 유물이다. 유물의 제작기법 분석결과를 토대로 짜임형태를 관찰하였고 2점 모두 좌우측면에서 1회 교차된 것임을 알 수 있었다. 짜임형태 길이비 측정을 통해 20개의 올을 사용하여 제작된 것으로 확인되었다. X-ray CT 촬영결과 DB의 분석결과와 동일한 결과가 도출되어 차후 국내외에 산재되어있는 다회의 분석 및 연구를 위한 기초자료로서 활용이 가능할 것으로 사료된다. 이번 연구를 통해 미력하게나마 소중한 전통문화의 보존 및 계승, 발전에 도움이 되기를 바란다.