The heat transfer characteristics of forced convection according to the geometric shapes with four rectangular blocks in a horizontal PCB channel was analyzed numerically using SST (Shear Stress Transport) turbulence model. As the boundary condition for CFD (Computational Fluid Dynamics) analysis, the inlet temperature and air velocity were respectively 300 K and 3.84 m/s and the heat flux of the block surface was 358 W/㎡. The shape factors of block were width, height, spacing and channel entrance height. As the results, the heat transfer rate was decreased as the width ratio (x/h) was increased, while it was increased as the height ratio (h/x) is increased. Also as the block spacing ratio (s/x) was increased, the heat transfer effects was not significantly affected. And as the channel entrance height ratio (H/x) was increased, the heat transfer performance was decreased.
This study aims to analyze the changes in the mechanical properties of interlock fabrics knitted with three types of fibers (i.e., cotton, wool, and polyester) by bonding fusible interlinings with varying deniers (i.e., 10D, 20D, and 30D) for a 3D virtual try-on system. We experimented with four properties and thicknesses of twelve specimens of interlining bonded knitted fabrics including face fabrics and interlinings. The results showed that the tensile property changed values (i.e., LT increased, and WT and RT decreased) according to the denier of interlinings; however, the change was slight. On the other hand, the bending property increased significantly as the denier of the interlining increased on both the wale and the course. Among shearing properties, the value of G increased as the denier of the interlining increased on both the wale and the weft; however, 2HG decreased. Additionally, changes in the compression property varied according to the fibers and the denier of the interlinings. The thickness of the knitted fabrics increased or decreased slightly by bonding the interlining. based on these results, we conclude that the 3D virtual system users need to reflect these numerical changes of interlock fabrics by bonding interlinings when they perform fitting tasks on the screen to accurately express the to accurately express the manufacturing conditions of the real garment.
This study aims to analyze the changes in the mechanical properties of interlock fabrics knitted with three types of fibers (i.e., cotton, wool, and polyester) by bonding fusible interlinings with varying deniers (i.e., 10D, 20D, and 30D) for a 3D virtual try-on system. We experimented with four properties and thicknesses of twelve specimens of interlining bonded knitted fabrics including face fabrics and interlinings. The results showed that the tensile property changed values (i.e., LT increased, and WT and RT decreased) according to the denier of interlinings; however, the change was slight. On the other hand, the bending property increased significantly as the denier of the interlining increased on both the wale and the course. Among shearing properties, the value of G increased as the denier of the interlining increased on both the wale and the weft; however, 2HG decreased. Additionally, changes in the compression property varied according to the fibers and the denier of the interlinings. The thickness of the knitted fabrics increased or decreased slightly by bonding the interlining. based on these results, we conclude that the 3D virtual system users need to reflect these numerical changes of interlock fabrics by bonding interlinings when they perform fitting tasks on the screen to accurately express the to accurately express the manufacturing conditions of the real garment.
해상에서 두 척의 대형 해양경찰 함정을 이용하여 충돌 가능성이 높은 네 가지 조우방위각(000°, 045°, 090°, 135°)을 설정하여 피험자인 30명의 해양경찰관을 대상으로 조우방위별 거리 3해리(Nautical Mile: NM)에서부터 0.25 NM까지 근접하며 상대거리가 점차 감소 될 때 피험자들이 상대선박을 보며 지각한 충돌위험도(Perceived Ship Collision Risk, PSCR)를 측정(0.25 NM 간격으로 기록)하는 실험을 하였 고 획득된 데이터를 이용하여 특징을 통계적으로 분석하였다. 본 연구의 목적은 인적오류 예방을 위하여 실선 실험한 선박 조우방위별 상 대거리 3 NM에서 0.25 NM까지의 열두 구간에서 획득한 충돌위험도 값을 적정 다항식으로 곡선 근사(Curve Fitting)하여 분포곡선으로 나타 내고 특징을 분석하여 항해당직자들이 지각한 충돌위험도의 변화가 최대인 거리를 제시하기 위한 것이다. 분석결과, 각 조우방위에서 거리 구간별 최적의 회귀방정식을 도출하였으며 거리 1.25 1 NM 구간에서 충돌위험도 평균값의 편차가 가장 크게 변화되었고, 특히 1 NM에서 충돌위험도 값이 가장 크게 나타나 실선 실험결과 항해당직자가 지각(Perception)한 충돌위험도의 변화 값이 최대인 거리가 1 NM임을 도출 및 검증하였으며 이는 선박 충돌가능성이 높은 근접상황에서 인적오류 예방 자료로 유용할 것으로 기대된다.
전해질막을 사용하는 알칼라인 연료전지는 최근 들어서 시스템 구성이 비슷하고 전해질막의 종류만 다른 기존의 양이온 교환막 연료전지를 대체할 수 있을 것으로 기대를 모으고 있다. 특히, 알칼라인 연료전지에서는 비백금계 저가 촉매가 사용 가능하여 많은 연구들이 진행되고 있다. 본 연구에서는 이러한 알칼라인 연료전지 시스템에 적용하기 위한 고성능, 고내 구성 음이온 교환막을 제조하기 위하여, 두 종류의 다공성 지지체인 폴리벤조옥사졸 지지체와 폴리에틸렌 지지체에 Fumion FAA 이오노머를 함침시켜, 기존의 Fumion 시리즈의 막보다 우수한 기계적 강도를 가지면서 높은 이온전도도를 유지할 수 있는 함침막을 제조하고자 하였다. 이를 통하여 최종적으로 지지체-함침막이 성공적으로 제조되었고, 이온 전도도와 기계적 특성이 지지체의 성질에 따라 서로 다른 결과를 보여 주었다. PE 지지체에 Fumion 이오노머를 함침시킨 함침막에서는 우수 한 기계적 특성이 얻어졌지만, 이온전도도는 감소하였으며 특히 높은 온도에서 성능감소가 더욱 증가하였다. 반면에 PBO 지 지체에 Fumion 이오노머를 함침 시킨 경우에는 PBO의 높은 염기성으로 인하여 함침 후에 높은 이온 전도도를 보였지만, Fumion-PE막에 비하여 상대적으로 낮은 기계적 특성을 나타내었다. 결과적으로 지지체-함침막 제조 시 알칼라인 연료전지의 운전조건에 따라 지지체의 특성을 충분히 고려하여 연구를 진행할 필요가 있다는 결론을 얻었다.
In this study, Fe-Cu-C alloy is sintered by spark plasma sintering (SPS). The sintering conditions are 60 MPa pressure with heating rates of 30, 60 and 9oC/min to determine the influence of heating rate on the mechanical and microstructure properties of the sintered alloys. The microstructure and mechanical properties of the sintered Fe-Cu-C alloy is investigated by X-ray diffraction (XRD) and field-emission scanning electron microscopy (FE-SEM). The temperature of shrinkage displacement is changed at 450oC with heating rates 30, 60, and 90oC/min. The temperature of the shrinkage displacement is finished at 650oC when heating rate 30oC/min, at 700oC when heating rate 60oC/min and at 800oC when heating rate 90oC/min. For the sintered alloy at heating rates of 30, 60, and 90oC/min, the apparent porosity is calculated to be 3.7%, 5.2%, and 7.7%, respectively. The hardness of the sintered alloys is investigated using Rockwell hardness measurements. The objective of this study is to investigate the densification behavior, porosity, and mechanical properties of the sintered Fe-Cu-C alloys depending on the heating rate.
본 논문에서는 변형에 의해 유발된 패턴변화(pattern transformation)에 기반하여 압축(compression)과 인장(tension) 하중 모두에서 음의 포아송 비(negative poisson’s ratio)를 나타내는 다공성(porous) 구조를 제안한다. 기존에 개발된 원형 구멍을 이용한 구조는 연결선(ligament)의 회전 모멘트 부족으로 인해 인장 시 양의 포아송 비를 나타내는 한계점이 있었으며, 타원 형 구멍을 이용한 구조는 응력집중 현상으로 인하여 내구성(durability)이 약한 문제점이 있었다. 이에 본 연구에서는 휘어진 연결선의 배열을 통하여 인장하중 하에서의 회전 모멘트를 증가시키는 동시에 응력집중 현상을 완화하고 변형에너지(strain energy)를 구조물 전반에서 고르게 흡수하도록 설계하였다. 이를 통해 10%의 공칭 변형률(nominal strain) 범위 내의 압축 과 인장 모두에서 음의 포아송 비를 가지며, 기존 모델에 비하여 강성(stiffness)과 내구성이 개선된 구조를 개발하였다. 비선 형 유한요소해석을 통하여 기존 타원형 구멍 모델과의 비교를 수행하였으며 제안된 모델이 구조의 강성과 내구성 측면에서 현저히 개선됨을 확인하였다.
한 개 측선에서 얻어진 중력 변화율 텐서 자료를 이용하여 주향과 경사를 가지는 선형 이상체의 위치를 결정하 는 알고리즘을 제시하였다. 기존에 연구된 중력 변화율 텐서를 이용한 선형 이상체의 주향과 경사를 결정하는 방법을 발전시켜서, 선형 이상체의 주향과 경사를 결정한 이후 이상체의 위치를 결정하는 알고리즘을 개발하였다. 선형 이상체 의 주향과 경사는 2차원 이상체로부터 얻어지는 중력 변화율 텐서가 회전 변환 후 2개의 독립 성분만을 가진다는 특징 을 이용하여, 중력 변화율 텐서의 5개의 독립 성분을 2개의 독립 성분으로 축소시키는 회전 변환 각으로부터 선형 이 상체의 주향과 경사를 결정한다. 이상체의 위치를 가리키는 방향 벡터는 중력 변화율 텐서의 회전변환 후 남은 2개 독 립 성분의 비를 이용하여 유도하였다. 여러 측점에서 계산된 이상체를 가리키는 방향 벡터가 수렴하는 영역이 선형 이 상체의 위치로 결정된다. 최소자승법을 이용하여
In this study, we investigate the effect of the diffusion barrier and substrate temperature on the length of carbon nanotubes. For synthesizing vertically aligned carbon nanotubes, thermal chemical vapor deposition is used and a substrate with a catalytic layer and a buffer layer is prepared using an e-beam evaporator. The length of the carbon nanotubes synthesized on the catalytic layer/diffusion barrier on the silicon substrate is longer than that without a diffusion barrier because the diffusion barrier prevents generation of silicon carbide from the diffusion of carbon atoms into the silicon substrate. The deposition temperature of the catalyst and alumina are varied from room temperature to 150°C, 200°C, and 250°C. On increasing the substrate temperature on depositing the buffer layer on the silicon substrate, shorter carbon nanotubes are obtained owing to the increased bonding force between the buffer layer and silicon substrate. The reason why different lengths of carbon nanotubes are obtained is that the higher bonding force between the buffer layer and the substrate layer prevents uniformity of catalytic islands for synthesizing carbon nanotubes.
조선조의 불교의례는 어렵고 힘든 시기를 견디어야 했던 불교계의 현실과 조선의 치국이념인 유교에서 얻지 못하는 내세관이 반영될 수밖에 없었다. 그렇게 형성된 불교의례는 현세 구복적이며 주술적인 성격이 강하였다.
개항 이후 불교에 대한 인식이 달라지고 한국불교의 모순을 타파하고 새 로운 이념을 제시한 개혁가들은 이런 의례에 대해 비판하기 시작하였다. 비 판과 함께 근대 불교의례의 방향으로 대중들이 쉽게 읽을 수 있고 이해할 수 있는 한글화와 대중화가 제시되었다.
이와 같은 한국불교의 자체적인 변화에도 불구하고 한국을 병합한 일제 는 사법을 제정하여 한국불교 의례를 크게 변질시키면서 통제정책에 활용 하였다.
그런 분위기를 인식한 한국불교인들은 1910년대 한국불교 의례 회복을 논의하였지만 실행되기 어려웠고, 1930년대 이르러 일제강점에 의해 훼손된 불교의례를 재정립하기 위한 노력이 대두되었다. 뜻있는 선지식들은 지난날 비판하고 버려두었던 불교의례 속에서 우리의 전통을 찾으려 하였다. 그런 배경에서 1931년 발간된 불자필람과 1935년 대중들을 위해 약본으로 발 간한 석문의범이다. 그런 의식에서 형성된 전통의례의 출판은 한국 불교 인의 많은 관심과 활용으로 이어졌다.
그러나 일제는 전시 체제에 맞도록 한국 1,500여 사찰에서 대동아전쟁의 연전연승을 위한 기도법회를 열어 절대적인 친일과 동원을 강요하면서 변질 된 의례를 지속시켰다.
이렇게 변질된 한국불교 의례는 광복 후에 회복될 수 있었다. 새로운 집 행부가 설립된 후 모범총림을 시설하여 옛날부터 전해지는 한국불교 범음전 통을 회복하였고, 성철과 청담의 주도하에 설립된 봉암사 결사운동에서 비 불교적인 요소들을 제거함으로써 현대 불교의례의 방향성이 제시되었다.
In order to replace 14K white gold alloys, the properties of 5K white gold alloys (Au20-Ag80) were investigated by changing the contents of In (0.0-10.0 wt%). Energy dispersive X-ray spectroscopy (EDS) was used to determine the precise content of alloys. Properties of the alloys such as hardness, melting point, color difference, and corrosion resistance were determined using Vickers Hardness test, TGA-DTA, UV-VIS-NIR-colorimetry, and salt-spray tests, respectively. Wetting angle analysis was performed to determine the wettability of the alloys on plaster. The results of the EDS analysis confirmed that the Au-Ag-In alloys had been fabricated with the intended composition. The results of the Vickers hardness test revealed that each Au-Ag-In alloy had higher mechanical hardness than that of 14K white gold. TGA-DTA analysis showed that the melting point decreased with an increase in the In content. In particular, the alloy containing 10.0 wt% In showed a lower melting temperature (> 70 °C) than the other alloys, which implied that alloys containing 10.0 wt% In can be used as soldering materials for Au-Ag-In alloys. Color difference analysis also revealed that all the Au-Ag-In alloys showed a color difference of less than 6.51 with respect to 14K white gold, which implied a white metallic color. A 72-h salt-spray test confirmed that the Au-Ag- In alloys showed better corrosion resistance than 14K white gold alloys. All Au-Ag-In alloys showed wetting angle similar to that of 14K white gold alloys. It was observed that the 10.0 wt% In alloy had a very small wetting angle, further confirming it as a good soldering material for white metals. Our results show that white 5K Au-Ag-In alloys with appropriate properties might be successful substitutes for 14K white gold alloys.
To prolong the shelf-life of strawberry, samples were treated with gel packs containing slow-released chlorine dioxide(ClO2) gas at 3~7 ppm for 6 days at room temperature. The weight loss and decay ratio as well as changes in pH, color and texture properties of the treated samples were investigated. The weight of the control and ClO2 gas treated samples decreased slightly, but the weight of the control changed faster than those of the ClO2 gas treated samples during the storage period. The decay ratio of control was higher than those of the ClO2 gas treatments since 4 days of storage. The pH and acidity in the control and in the ClO2 gas treated samples were no differences during storage period. The lightness of strawberry decreased during storage, but there was no difference in lightness among the treatments even when storage time was extended. The redness and yellowness of the control showed higher change than those of the ClO2 gas treatments during 6 days. The firmness of the control changed more rapidly than those of the ClO2 gas treatments during 6 days. Especially, the samples treated 3 and 5 ppm ClO2 gas were the least changed. And the scores for appearance, firmness and overall acceptance control and 7 ppm ClO2 gas treatment decreased more rapidly than those of 3 and 5 ppm treatment.
Vegetables and fruits contain a great deal of vitamins, minerals, dietary fiber and phytochemicals. Therefore, healthconcious consumer prefer beverage made from fresh fruits and vegetables due to their health benefits. This study was conducted to investigate differences in nutritional composition and sensory characteristics of juices depending on the apparatus used: either a low-speed juicer or high-speed blender. All ingredients could be made into juice without addition of water using the low speed juicer. However, addition of water was necessary to produce juice with the high-speed blender. Phenol and flavonoid content, were higher in juice made with the low-speed juicer than that produced with the high-speed blender and were correlated with DPPH radical scavenging ability. Protease activity of pineapples juices was not significantly different for the two methods, but protease activity of kiwi juice was about 8 times higher in juice made with low-speed juicer than that made with the high-speed blender. SOD activity also tended to be higher in the juice made with low-speed juicer. The concentration of dissolved oxygen in the juice made with high-speed blender was higher than that of juice made with a low-speed juicer and was correlated with color change. In addition, the high-speed blender caused an increase juice temperature, but temperature was not changed during use of the low-speed juicer. The noise level of the low-speed juicer was low, but the high-speed blender had high noise intensity comparable to that of railway or aircraft noise. In the sensory evaluation of juice, juice made with the low-speed juicer was preferred over juice made with the high-speed blender. As a result, the overall quality of the juice produced using the low-speed juicer was superior.
Marine structures developed for marine industry and resource manifests different fluid characteristics. As such, the changes in the location, shape and size of these structures affect the fluid flow. Specifically, this wake flow caused by the structures result in environmental damage and topographical change. but on the other hand, protects harbor facility and environment. This study was conducted by changing the position of vertical plate in horizontal and vertical direction and experimented the variation of wake flow by PIV. This experiment confirmed the wake flow reduction by the changes of gab in horizontal and vertical direction. Particularly, the experiment showed that changes of gab in horizontal and vertical direction resulted in an increased u-velocity fields in the back of structure for larger horizontal gab.
CO2농도와 온도의 상승으로 인한 지구온난화가 진행되었을 때 광, 수분 그리고 유기물 구배에 따른 멸종위기식물인 황근의 생육과 생태적 지위폭의 변화를 알아보았다. 대조구(야외)와 처리구(CO2 + 온도 상승구)로 나누어 각각 광, 수분 그리고 유기물구배를 두어 재배하였다. 그 연구결과, 황근은 낮은 광량보다 높은 광량을 선호하나, 광량이 787±77.76μmol m-2s-1을 넘어가면 높은 광량이라 하더라도 생육이 어려웠다. 또한 유기물이 없거나(0%) 너무 많은 토양(20%)에서는 생육이 어려웠다. 그러나 수분 구배에 따른 경향이 보이지 않았다. 황근의 고사율은 대조구보다 처리구에서 광량이 높은 조건을 제외한 모든 구배에서 높았다. 이는 CO2와 온도가 상승하면 광에 대한 내성범위가 좁아진다는 것을 의미한다. 대조구와 처리구를 비교하였을 때, 수분구배에 따른 경향은 보이지 않았다. 유기물구배에서 는 대조구보다 처리구에서 모두 고사율이 낮았는데, 이는 유기물에 대한 내성의 범위가 넓어진 것을 의미한다. 황근의 생태적 지위폭은 처리구가 대조구보다 광 구배에서 30.1% 좁아졌으며, 수분 구배에서 8.6% 그리고 유기물 구배에서 30% 넓어졌다. 따라서 CO2농도와 온도의 증가로 인한 지구온난화가 진행되면, 황근의 생육은 광량에 의해서 제한될 것으로 판단된다.
From June 2007 to May 2008, seasonal variations of bacterial abundance and heterotrophic nanoflagellate (HNF), together with environmental factors, were investigated at weekly and monthly intervals in Kyeonggi Bay. During the study period, the water temperature and salinity varied from 1.9℃~29.0℃ and 31~35.1 psu, respectively. The concentration of ammonia, nitrate+nitrite, phosphate, and silicate ranged from 0.01 to 3.22 μM, 2.03 to 15.34 μM, 0.06 to 1.82 μM, and 0.03 to 18.3 μM, respectively. The annual average concentration of Chl. a varied from 0.86 μg L-1 to 37.70 μg L-1; the concentration was twice as much at the surface than at the deeper layers. The abundance of bacteria and HNF ranged from 0.29×106 to 7.62×106 cells mL-1 and 1.00×102 to 1.26×103 cells mL-1, respectively. In particular, there were significant correlations between bacteria and HNF abundance (p<0.05), and then the high abundance of HNF was frequently observed with an increase of bacterial abundance in summer (p<0.001). Our results therefore indicate that bacterial abundance in the bay was mainly controlled by resources supplied as organic and inorganic substances from Lake Shihwa due to the daily water exchange after dike construction. Also, the bacterial abundance was significantly controlled by HNF grazing pressure (top-down) in the warm seasons, i.e. excluding winter, in the Kyeonggi Bay.
Tscherskia triton is widely distributed in Northern China, Korea, and the adjacent areas of Russia. Except its distribution, reproduction, and growth development related to life history, reproductive cycle and reproductive organs of T. triton are rarely studied in Korea. The purpose of this study was characterized the estrous cycle of T. triton captured in Jeju Island in order to provide information to a better information of captive breeding of the species when longday (16L : 8D) and short-day (8L : 16D) photoperiod. Then, histological study of the ovaries and uterus with five females in each photoperiod was performed. The duration of the estrus cycle was 4~5 days and it showed regular cycle pattern. Results of the vaginal cytology examination showed four characteristic phase of the estrous cycle in long-day photoperiod (16L : 8D): proestrus, estrus, metestrus and diestrus. However, in short-day photoperiod, the diestrus phage of the estrus cycle was maintained from the 6th to 12th day. In the long-day photoperiod, females had many Graafian follicles and corpus luteums in large ovaries, and developed uterine glands in the thick endometrium. But they had some primary, secondary and tertiary follicles, and undeveloped uterine glands in the thin endometrium during short-day photoperiod. These results were identified difference of the estrus cycle and histological characteristics of reproductive tracts according to the photoperiod. These results are very important clues to the reproductive biology of T. triton, and it will be widely used as date for maintaining biodiversity.
This study illustrates changes in the epilithic diatom assemblages in response to urban climatic conditions. We further assess the impact of abnormal urban climate to the urban stream environment. Epilithic diatoms, water chemical and physical variables were sampled every quarter, and assessed at 3 Oncheon stream sites, for a period of two years (from 2013~2014). The variation of physiochemical properties such as BOD, COD, T-N and T-P, show that the water quality was strongly influenced with long periods of drought and flood disturbance. Epilithic diatom assemblages were separated along the stream sites; however, the physical disturbance from urban drought and stormwater changed the composition of diatom assemblages instead of decreasing the taxonomic richness. Thus, our results suggest that epilithic diatom assemblages are altered in response to urban climatic changes, resulting in variations of stream conditions. Hence, strategies of climate change adaptation are required when considering urban stream environments.
본 연구는 염지제의 종류에 따른 발효소시지의 숙성 중 미생물 및 위생적 품질 변화에 미치는 영향에 대해 살펴보았다. 천일염+NaNo2, 정제소금+NaNo2, KCl+NaNo2, MgCl2+NaNo2 총 4가지 형태의 염 지제 종류에 따라 제조된 발효소시지를 숙성 중 수분활성도, VBN, TBA 및 미생물 분석을 실시하였다. 수분활성도의 경우 숙성28일과 35일에서 KCl+NaNo2 처리구가 다른 처리구보다 가장 낮은 값을 나타 내었다(p<0.05). VBN 의 경우 숙성기간 중 KCl+NaNo2 처리구가 다른 처리구보다 가장 낮은 값을 나 타내었다(p<0.05). TBA 값은 숙성기간 중 KCl+NaNo2 처리구가 가장 낮은 값을 나타내었고, 천일염 +NaNo2처리구가 가장 높은 값을 나타내었다(p<0.05). 미생물 분석 결과, 유산균수의 경우 처리구와 상관없이 숙성 14일까지 증가하다, 숙성 35일까지 약간 감소하는 경향을 나타내었다(p<0.05). 본 연구 결과를 통해 염지제로서 염화나트륨을 대체할 수 있는 KCl의 사용이 위생적 품질에 악영향 없이 염화 나트륨 함량을 감소시킬 수 있는 가장 좋은 방법이고 저염 육제품 개발을 위한 기초자료로 활용될 수 있을 것이라 사료된다.
During the harvest season, drying and storage facilities at Rice Processing Complexes (RPCs) are not enough to manage all the harvested rice, which causes quality deterioration and decomposition. Also, rice export is being limited due to the high cost of long-term storage for shipping. This study was conducted to investigate the germination rate, fat acidity and lipoxygenase activity of brown rice after storage of 3, 6, 9 and 12 months at 25oC and 35oC with 22 Korean and 2 Japanese varieties. Germination rate of rough rice was decreased to 72% after storage of 9 months at 25°C and decreased to 35 and 33% after 3 and 6 months at 25°C, respectively. Fat acidity was increased according to storage periods and increasing level was higher at 35°C than at 25°C. Lipoxygenase activity was decreased according to storage periods and decreasing level was higher at 35°C than at 25°C. Although the protein content was not significantly different according to the storage period at both 25 and 35°C, significant difference existed among cultivars. Amylose content was increased until 6 months at both 25 and 35°C, but decreased after 9 months. Fat acidity and protein content were negatively correlated with amylose content, while amylose content was positively correlated with lipoxygenase activity after 12 months at 25°C. Germination rate was negatively correlated with fat acidity and protein content, while fat acidity was positively correlated with protein content and negatively correlated with amylose content and lipoxygenase activity after 6 months at 35°C. 24 varieties were classified into 3 groups on the basis of germination rate, fat acidity and lipoxygenase activity after 12 months at 25°C and 6 months at 35°C. Group I including 8 varieties of Koshihikari showed higher germination rate, lower fat acidity than Group II including 11 varieties of Nampyeongbyeo.. Honong and Jinbaek. Hopyeongbyeo and Hopum showed higher germination rate, lower fat acidity at 35°C than 25°C, while Hwanggeumnuri showed higher germination rate, lower fat acidity at 25°C than 35°C.