• 제목/요약/키워드: Rough Rice

검색결과 246건 처리시간 0.022초

곡물보관창고의 산물시설화를 위한 곡물 건조저장시설의 개발 -사각 사일로 시스템- (Development of a Grain Drying and Storage System for Bulk Facilities of Grain Custody Warehouse -Square Silo System-)

  • 정종훈;유수남
    • Journal of Biosystems Engineering
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    • 제20권2호
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    • pp.151-161
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    • 1995
  • A basic proposal on the design of a grain drying and storage system was suggested for the bulk facilities of grain custody warehouses. A model square silo system was designed and developed on the basis of the proposal. A square silo system made of steel plate was developed with a stirring device, an automatic moisture meter and an auto-control system of PLC. Then, the developed square silo system was evaluated through drying experiments with rough rice. The square silo system could dry grains uniformly with a stirring device and an auto-control system regardless of grain depth. The developed square silo system can be well adapted for the bulk facilities of grain custody warehouses.

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벼의 압력손실 및 호흡 모델과 자동통풍에 관한 연구 (PRESSURE DROP, RESPIRATION MODELS AND AUTOMATIC AERATION OF ROUGH RICE)

  • 정종훈;라리 알 버어마
    • Journal of Biosystems Engineering
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    • 제16권3호
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    • pp.298-311
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    • 1991
  • 빈 시스템에서 적정 팬을 선정하기 위해서, 빈에서 벼를 건조 혹은 통풍시킬 때 벼의 저항에 의해 발생되는 공기의 압력손실을 예측하는 모델을 개발하였다. 또한 벼의 건물 손실을 예측하기 위하여 벼의 호흡 모델을 개발하였다. 그리고 온도 및 습도 센서들을 이용한 자동계측 시스템을 사용하여 저장된 벼의 상태를 연속적으로 측정, 분석함으로써 벼의 통풍기준을 결정하고 이를 근거로 빈의 자동통풍 시스템을 개발하여 평가하였다. 공기의 정압 손실은 공기의 속도 및 벼의 함수율의 함수로서 나타내어졌으며, 일정 곡물 깊이에서 벼의 함수율이 낮을수록 그 정압손실은 증가하였다. 벼의 호흡에 의해 발생되는 이산화탄소의 양은 저장온도, 벼의 함수율, 저장 기간의 함수로서 나타낼 수 있었다. 벼의 안전 저장을 위해 곡물의 온도 및 함수율, 평형상대습도, 벼의 품질저하지수(deterioration index)에 대한 자동통풍 기준을 결정하였으며 이들을 이용해서 퍼스널 컴퓨터로 팬, 제습기 등의 통풍 장치들을 자동제어하는 자동통풍 시스템을 개발하였다. 이 시스템은 곡물의 상태를 예측, 제어함으로써 14% 이하의 함수율과 4이하의 품질저하지수, 그리고 어떤 균류도 생성시키지 않음으로써 벼를 안전하게 저장할 수 있었다.

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누룩의 문헌고찰 (The Bibliographical Study Nuruk)

  • 이미경;이성우;윤태헌
    • 동아시아식생활학회지
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    • 제4권1호
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    • pp.19-29
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    • 1994
  • In this paper a review of literature on Nuruk(yeast) between 1907 and 1945 was made, which showed that barley, rice bran, oat, rye, and other ingredients were originally used according to region and production quantity. Yeast can be classified into rough (Chokuk) and powder (Bunkuk) types depending on the degree of grinding. Yeast also had seasonal names, being called " Choonkuk", Hakuk", Jeolkuk", and "Dongkuk" in the spring, summer, autumn and wither respectively. The form of yeast in terms of quantity, size, and shape varied greatly by region, Production facilities were composed of plant structures to suit each process, enabling continuous output. The production process included shaping, placement in the fermenting chamber, piling by turns, risk-sifting and final output. Testing procudures were divided into visual inspection, physical testing, and chemical analyses.

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Growth Simulation of Ilpumbyeo under Korean Environment Using ORYZA2000: II Growth Simulation by New Genetic Coefficients

  • Lee Chung-Kuen;Shin Jae-Hoon;Shin Jin-Chul;Kim Duk-Su;Choi Kyung-Jin
    • 한국작물학회:학술대회논문집
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    • 한국작물학회 2004년도 춘계 학술대회지
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    • pp.102-103
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    • 2004
  • [ $\bigcirc$ ] In the growth simulation without changing of module with ORYZA2000, dry matter, LAI and leaf nitrogen content(FNLV) were estimated well under high nitrogen applicated condition, but overestimated under low nitrogen applicated condition. $\bigcirc$ Nitrogen stress factor on the SLA was introduced into ORYZA2000 because especially overestimated LAI under low nitrogen applicated condition was originated from SLA decrease with leaf nitrogen(FNLV) decrease. $\bigcirc$ In the growth simulation with modified SLA modified module, LAI was estimated well under even low nitrogen applicated condition, but dry matter was hardly changed compared with default. $\bigcirc$ Simulated plant nitrogen content and dry matter have no clear difference between modules, but compared with observed values, panicle weight(WSO) and rough rice yield(WRR14) were overestimated under high nitrogen applicated because of lodging, pest, disease and low nitrogen use efficiency.

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Combine Harvest Scheduling Program for Rough Rice using Max-coverage Algorithm

  • Lee, Hyo-Jai;Kim, Oui-Woung;Kim, Hoon;Han, Jae-Woong
    • Journal of Biosystems Engineering
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    • 제38권1호
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    • pp.18-24
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    • 2013
  • Purpose: This study was conducted to develop an optimal combine scheduling program using Max-Coverage algorithm which derives the maximum efficiency for a specific location in harvest seasons. Methods: The combine scheduling program was operated with information about combine specification and farmland. Four operating types (Max-Coverage algorithm type, Boustrophedon path type, max quality value type, and max area type) were selected to compare quality and working capacity. Result: The working time of Max-Coverage algorithm type was shorter than others, and the total quality value of Max-Coverage algorithm and max quality value type were higher than others. Conclusion: The developed combine scheduling program using Max-Coverage algorithm will provide optimal operation and maximum quality in a limited area and time.

Isotope-Aided Micronutrient Studies in Rice Production with Special Reference to Zinc Deficiency (II) -Residual Effect of $^{65}Zn$ Labelled Fertilizers-

  • Kim, Tai-Soon;Kim, Jae-Sung;Kim, Jin-Se
    • Nuclear Engineering and Technology
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    • 제11권1호
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    • pp.47-54
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    • 1979
  • 수도(水稻)에 의한 $^{65}$ Zn 표지 및 비표지 아연비료의 잔류(殘留) 효과의 포장실험 결과를 요약하면 다음과 같다. 수량면에서 본 아연비료의 잔효(殘效)는 약간 있었다. 수량에 미치는 아연시비법(施肥法)의 영향을 보면 아연 건층시비가 포층시비 보다 효과가 컸다. 아연 시비 수준별로 본 수량은 5kg Zn/ha 전층 시비가 10, 20kg Zn/ha 건층시비 보다 좋았다. 아연비료 형태별로 수량을 비교해 보면 $^{65}$ ZnSO$_4$ 가 Urea-$^{65}$ Zn 복합비료 보다 좋았다. 이와 같은 경향은 1차년도 실험 결과와 같았다. 수도체(水稻體)의 아연 전 흡수량은 유기물 첨가토양(처리 2와 8)과 Urea-$^{65}$ Zn 복합비료 시용구에서는 전년도 보다 현저하게 증가되었다. 수도체의 % Zndff값은 전년도에 얻어진 값 보다 훨씬 감소되었다. 수도체의 비료 아연 흡수량은 대부분의 아연 처리구에서 전년도 보다는 약간 감소되었으나 유기물 시용토양에 아연을 전층시비했을 때와 Urea-$^{65}$ Zn 복합비료 시용구에서는 전년도의 값 보다는 오히려 증가되었다. 아연 전층시비법은 표층시비법 보다 수도체의 비료 아연 흡수량은 많았다. 수도체의 전아연 흡수량에 대해서 비료에 유래된 아연의 기여율은 4.6%-24.3% 범위하였다. 5kg Zn/ha 수준에서 $^{65}$ Zn 표지 아연 비료의 이용 효율은 0.213%-0.58%였다.

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벼 흰잎마름병 저항성 차이에 따른 병 발생정도와 수량 및 미질의 비교 (Disease Incidence, Yield and Quality Comparisons among Rice Varieties with Different Resistance to Bacterial Leaf Blight)

  • 노태환;김기영;이두구;심형권;강미형;박종철
    • 식물병연구
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    • 제14권3호
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    • pp.171-175
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    • 2008
  • 벼 흰잎마름병 발병 상습지인 전북 김제, 전남 영암, 장흥에서 감수성인 '남평벼', 저항성인 '강백벼'(xa5)와 '익산493호'(Xa3+xa5)에 대해 병 발생과 수량 및 미질의 피해 양상을 조사하였다. 벼 발생율은 김제지역이 병 발생이 가장 심한 반면 전남 두 지역은 초발병 시기가 늦어 비교적 낮은 발병율을 보였다. '남평벼'가 $98{\sim}23%$로 전 지역에서 파장 감수성을 보였다. 반면, '강백벼'와 '익산493호'는 각각 $2{\sim}15%$, $2{\sim}6%$의 저항성을 나타내었다. 쌀 수량은 발병율이 가장 높은 전북 김제지역에서만 발병정도에 따라 유의성 있는 차이를 보였다. 감수성인 '남평벼'가 352 kg/10a인 반면 저항성인 '익산493호'는 540 kg/10a로 65%의 차이를 보였다. 쌀 미질은 발병정도에 관계 없이 완전립율과 심복백 비율등의 외관상 미질에 영향을 주는 것으로 조사되었다. 발병율이 낮았던 지역에서는 Xa3+xa5를 보유한 '익산493호'는 완전립율, 심복백 비율등이 xa5을 가진 '강백벼'에 비해서도 좋은 결과를 보였다. 특히 밥맛에 큰 영향을 주는 단백질 함량은 '남평벼'에서는 발병정도에 따라 불안정한 곁과를 보였으나 저항성 품종들에서는 $6.9{\sim}9.8%$로 균일하게 나타났다.

벼의 자연통풍건조에 있어서 통풍량이 건조에 미치는 영향에 관한 연구 (A Study on Effects of Air-delivery Rate upon Drying Rough Rice with Unheated Air.)

  • 이상우;정창주
    • 한국농공학회지
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    • 제16권1호
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    • pp.3293-3301
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    • 1974
  • An experimental work was conducted by using a laboratory-made model dryer to investigate the effect of the rate of natural forced-air on the drying rate of rough rice which was deposited in the deep-bed. The dryer consisted of 8 cylinderical containers with grain holding screen at their bottoms, each of which having 30cm in diameter and 15cm in height. The containers were sacked vertically with keeping them air-tight by using paper tape during dryer operation. Two separate layers of containers were operated in the same time to have two replications. The moisture contents of grains within each bins after predetermined period of dryer operation were determined indirectly by measuring the weight of the individual containers. The air-rates were maintained at 6 levels, or 5, 8, 10, 15, 18 and 20 millimenters of static head of water. The roomair conditions during dryer operation were maintained in the range of 10-l5$^{\circ}C$ in temperature and 40-60% in relative humidity. The results of the study are summarized as follows: 1. Drying characteristics of the grains in the bottom layers were approximately the same regardless of airdelivery rates, giving the average drying rate as about 0.35 percent per hour after 40-hour drying period, during which moisture content (w. b.) reduced from 24 percent to about 10 percent. 2. After about 40-hour drying period, the mean drying rates increased from 0.163 percent per hour to 0.263 percent per hour as air-flow rates increased from 5mm to 87.16mm of static head of water. In the same time, the moisture differences of grains between lower and upper layers varied from 12.7 percent at the air rate of 5mm of water head to 7.5 percent at the air-flow rate of 20mn of water head. Thus, the greater the air-flow rate was, the more overall improvement in drying performance was. Additionally, from the result of ineffectiveness of drying grain positioned at 70cm depth or above by the air rate of 5mm of static head of water it may be suggested in practical application that the height of grain deposit would be maintained adequately within the limits of air-rates that may be actually delivered. 3. Drying after layer-turning operation was continued for about 30 hours to test the effectiveness of reducing moisture differences in the thick layers. As a result of this layer-turning operation, moisture distribution through layers approached to narrow ranges, giving the moisture range as about 7 percent at air-flow rate of 5mm head of water, about 3 percent at 10mm head about 2 percent at 15mm head, and less than 1 percent at 20mm head. In addition, from the desirable results that drying rate was rapid in the lower layers and dully in the upper layers, layer-turning operation may be very effective in natural air drying with deep-layer grain deposit, especially when the forced air was kept in low rate. 4. Even though the high rate of air delivery is very desirable for deep-layer natural-air drying of rough rice, it can be happened that the required air delivery rate could not be attained because of limitation of power source available on farms. To give a guide line for the practical application, the power required to perform the drying with the specified air rate was analyzed for different sizes of drying bin and is given in Table (5). If a farmer selects a motor of which size is 1 or {{{{1 { 1} over {2 } }}}} H.P. and air-delivery rate which ranges from 8~10mm of head, the diameter of grain bin may be suggested to choose about 2.4m, also power tiller or other moderate size of prime motor may be recommended when the diameter of grain bin is about 5.0m or more for about 120cm grain deposit.

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Rock-pile식(式) 집열기(集熱器)를 이용(利用)한 농산물건조(農産物乾燥)에 관(關)한 연구(硏究) (Drying of Agricultural Products by the Flat-plate Solar Collector with Rock-piled Heat Storage Medium)

  • 장규섭;김만수
    • Applied Biological Chemistry
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    • 제26권2호
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    • pp.75-81
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    • 1983
  • 태양열(太陽熱) 축열장치(蓄熱裝置)의 개발(開發)을 위(爲)한 기초자료(基礎資料)를 얻기 위(爲)하여 태양열(太陽熱)의 축열매체(蓄熱媒體)로 돌을 이용(利用)한 평판집열기(平板集熱器)을 제작(製作)하여 집열기(集熱器)의 효율(效率), 총열전달계수(總熱傳達係數), 집열기(集熱器)에 의(依)한 상승온도등(上昇溫度等)을 분석(分析)하고 이를 열원(熱源)으로 벼와 고추에 대(對)한 건조실험(乾燥實驗)을 하였다. 초기함수율(初期含水率) 24.5%인 벼를 14.5%까지 건조(乾燥)시키는데 상온통풍건조(常溫通風乾燥)에서는 약(約) 18일(18日), 튜브형집열기(型集熱器)에서 약(約) 12일(12日), 평판집열기(平板集熱器)에서 약(約) 10일(10日)이 소요(所要)되었으며 통고추 건조(乾燥)의 경우 일광건조(日光乾燥)에서 약(約) 68시간(68時間), 튜브형집열기(型集熱器)에서 약(約) 38시간(38時間), 평판집열기(平板集熱器)에서 약(約) 36시간(36時間)이 소요(所要)되었다. 고추를 절단(切斷)하여 건조(乾燥)할 경우 수평(水平)으로 절단(切斷)하는 것이 효과적(效果的)이었으며 건조(乾燥) 과정중(過程中) capsanthine과 capsaicine성분(成分)의 변화(變化)는 건조방법(乾燥方法)이나 절단방법(切斷方法)에 따라 고추의 품질(品質)에 영향(影響)을 미치는 정도(程度)는 아니라고 사료(思料)되었다.

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논벼의 생육시기별 간단단수처리와 수확량과의 관계에 관한 연구 (Research on Relations Between Intermittent Suspension Treatments of irrigation at Different Growing Stages and yields of Paddy Rice)

  • 이기춘
    • 한국농공학회지
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    • 제17권3호
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    • pp.3795-3814
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    • 1975
  • The purpoes of this thesis is to study the effect of the variation of the beginning date of the suspension of irrigation and the length of intermittent suspension period of irrigation in the paddy field on the growth and yield of rice, so as the provide a critical limit of saving irrigation water and an irrigation method to prevent drough damage in rice cultivation. In this experiment, the rice variety adopted was NONGRIM No.29. There were seven main test plot, each test plot having a different beginning date of the suspension of irrigation. A main test plot was susdivided into five small test plots, each having a different length of the suspension period of irrigation. The results obtained in this experiment are summarized as follows: 1. The number of tillers is controlled by the treatment of the suspension of irrigation, its beginning date being early of late. The reductive effects of beginning dates of suspension upon the number of tillers. investigated on July 30, are about 84% for the treatment suspended on July 8, 87% on July 12, and 92% on July 19, respectively, in comparison with the standard plot. However. the suspenion treatments after the foregoing dates does not affect the control of their numbers. On the other hand, the lengths of intermittent suspension periods influence highly on the number of tillers to be restrained considerably, the decrease ratio ranging from 91% to 80% Both treatments on dates and periods are so intermingled that the restraining effects of suspension periods become greater as the dates of its beginning are earlier. 2. The elongation of plant hieghts also restrained considerably by the longer periods and earlier dates of suspension treatments of irrigation. Especially, the effects of the lengths of suspension periods become more serious. 3. Heading dates are delayed by two to five days through the suspension treatments of irrigation. However, the heading stage ends almost on the same day without relation to the differences between the irrigation suspension treatments. In the test plot where the suspension date of irrigation comes after the young panicle forming stage, the heading stage ends one or two days later than in the standard test plot. 4. Both culm lengths and panicle lengths show significant differences in their values, i.e., their lengths are shorter, as the begining dates of irrigation suspension are earlier and the suspension periods are longer. 5. The earlier the beginning date and the longer the period of irrigation suspension, the less is the number of panicles per hill in comparison with the standard plot. 6. The earlier the beginning date and the longer the period of irrigation suspension, the higher is the significant difference in the number of kernels per panicle in comparison with that in the standard test plot, i.e., the less is the number of kernels per panicle. 7. The earlier the beginning date and the longer the period of irrigation suspension, the lighter are the weights of rough rice and straws per hill in comparison with those in the standard plot.

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