• 제목/요약/키워드: much seeder

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시호(柴胡) 파종(播種) 및 수확(收穫)의 성력기계화(省力機械化) (Mechanization for Labor-Saving in Seeding and Harvesting of Bupleurum falcatum L.)

  • 김영국;이승택;장영희;임대준;유홍섭;김충국
    • 한국약용작물학회지
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    • 제2권2호
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    • pp.105-109
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    • 1994
  • 시호(柴胡) 재배(栽培)에 있어서 기계(機械)를 이용(利用)하여 파종(播種) 및 수확(收穫)의 성력화(省力化)로 노동력(勞動力)과 생산비(生産費)를 절멸(節滅)하기 위해 본 시험(試驗)을 수행(遂行)한 결과(結果)는 다음과 같다. 1. 시호(柴胡) 기멸파종(機滅播種)의 경운기(耕耘機) 부착(附着) 줄뿌림기 파종(播種)이 97%의 성력효과(省力效果)가 었었저만 출아율(出芽率)은 인력(人力) 줄뿌림기 파종(播種)이 가장 양호(良好)하였다. 2. 시호(柴胡) 기계파종(機械播種)시 경운기부착(耕耘機附着) 줄뿌림기 파종(播種)의 파종양(播種量) 시험(試驗)에서는 지하부(地下部) 생육(生育) 및 수양(收量)은 파종양(播種量)이 적을수록 1주당 근경(根莖), 건근중(乾根重)은 증가(增加)하는 경향(傾向)이었으나 10a당 수양(收量)은 파종양(播種量)이 많을수록 입모솔(立毛率)이 증가(增加)하여 파종양(播種量) 1.0kg/10a의 휴립 파종에서 54.1kg /10a로 가장 많았고, 파종기별(播種機別)로는 입모수(立毛數)가 가장 많은 인력(人力) 줄뿌림기 이용(利用) 파종(播種)이 84.1kg /10a로 가장 많았다. 3. 시호(柴胡) 기계이용(機械利用) 수확(收穫)은 관행(慣行)에 비해 다목적(多目的) 근수확기(根收穫機) 이용(利用) 수확(收穫)이 69%의 성력효과(省力效果)로 가장 좋았으며 수확작업비(收穫作業費) 절감(節減)에 의한 소득효과(所得效果)도 관행(慣行)에 비해 50% 증가(增加)되어 가장 좋았다. 4. 시호(柴胡)의 인력(人力) 줄뿌림기 파종(播種)과 다목적(多目的) 근수확기수확(根收穫機收穫)의 성력효과(省力效果)는 관행파종(慣行播種)과 수확(收穫)에 비해 74%의 노력시간(勞力時間)을 절감(節減)하여 69%의 작업비(作業費)를 절감(節減)하였다.

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COMPUTER CONTROLLED PLANTING SYSTEM FOR MULCHING CULTIVATION USING POLUETHYLENE FILM

  • Nagata, Masateru;Zou, Cheng
    • 한국농업기계학회:학술대회논문집
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    • 한국농업기계학회 1993년도 Proceedings of International Conference for Agricultural Machinery and Process Engineering
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    • pp.761-767
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    • 1993
  • A precision planting system using computer controlled technology for mulching cultivation was developed and tested . The system consisting of a micro-computer, several optical fiber sensors and control actuators realized the mechanization of the precision planting operation. The film hole positions, existences of a seed on shutter were detected and the planting speed was measured. The shutter opening mechanism and a seed metering device driven by a stepping motor were controlled, automatically . The planting timing of the shutter opening mechanism were analyzed from a video camera motion analysis, theoretically. The results showed a sufficient accuracy of a seed planted into the center a film hole with a variety of planting speeded. The gravity point positions in film hole of seeds planted by the system just were within the area of +-5mm of the hole center when the hole diameter was 40mm.

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자동제어식 파종조절장치 개발 (Development of Automatic Seed Metering Device)

  • 이용국;이대원;오영진
    • Journal of Biosystems Engineering
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    • 제19권2호
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    • pp.91-98
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    • 1994
  • Planting, transplanting, and harvesting are important processes for the successful production of farm products in Korea because those require the high labor intensity during limitted period. Recently, many researches of using automatic control with a microcomputer are carried in the agricultural field, but are not much spread to the seeder development. Automatic sowing technology would be much attractive if there was a way to assure that each seed was count accurately in the seed metering device. Thus, an automatic seed metering device was designed and constructed to be controlled by microcomputer. This device could be improved in not only counting the number of seeds in but also sowing seeds between row spacings. Automatic seed metering device consisted of conveyor belt and temporary storage device. Performance of seed metering device depends on the apparatus including sensor, stepping motor and DC-solenoid. Research contents and results are summarized as follows. 1. The seed metering device involving seed hopper, sorter and temporary storage device was designed and constructed. 2. A seed counting system with six photo electric sensors, designed and built for this project, was adequate for tranferring and counting seeds accurately. 3. Operating algorithm for stepping motor and photo electric DC-solenoid was developed. The Seed metering device proved to be a smooth and accurate operating device using the algorithm. 4. The performance of second prototype metering device was examined with five kinds of seeds ; mung beans, red beans, white beans, black beans and corn to transfer and count the seeds. The error ratio of seed metering was less than 3.5%.

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벼 직파재배(直播栽培) 입묘율향상(立苗率向上)과 도복경감(倒伏輕減) (Improvement of Seedling Stand and Lodging Prevention in Direct Seeded Rice)

  • 오윤진;김정곤
    • 한국잡초학회지
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    • 제12권3호
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    • pp.200-222
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    • 1992
  • The results of recent researches for improvement of seedling stand in direct seeded rice on the dry paddy in Korea were summarized as the following ; a variety to be cultivated should be chosen the characteristics of high percentage germination under low temperature, shorter period of shoot emergence, and better growth of the mesocotyl and shoots. Meanwhile, there was 40% increase in seedling stand at the treatment of removal of the seed awn under using the drill seeder. After seeding the rice seed covered with soil of 3cm depth was better seedling emergence and also there was the hightest seedling emergence at the 70% of moisture content of the soil. In addition, the application of the Release containing GA 10% enabled to increase the seedling stand and furthermore it was effective under deep seeding depth. The optimum seeding date should be seeded around May 10 when mean air temperature is above 12-13$^{\circ}C$ so that may establish more less 70% in seedling stand. Based on an appropriate seedling stand of 150/$m^2$, the optimum seeding rate was 5kg/10a. It was the best in seeding method using drill seeder and the most desirable recommended seeding method was the drill seeder in terms of seedling stand. In order to improve seedling stand water management was more effective in canal irrigation and in drainage at 6hr after irrigation following by the seeding process. On the other hand, for the increase of seedling stand under flooded condition a variety might have characters being better germination at low concentration of dissolved oxygen and vertically deeper growing of the crown root. Also, seedling stand was able to increase with the seed coating of $CaO_2$in the flooded soil. It was possible to be seeded on the early part of May being mean air temperature of avove 10$^{\circ}C$ and the optimum seeding rate was 5kg/10a. For an effective water management water would be flooded up to 3cm depth for 2-3 weeks after seeding. The rice plant grown under the direct seeded cultivation might be not so much strong in lodging resistance compared to that grown under the transplanting and moreover direct seeded rice cultivation under flooded condition would be more weak growth of the rice plant than that on dry paddy. Meanwhile, the lodging would be affected by the seeding rate, the soil depth after seeding. and seeding method even in the same variety. In particular, roots in the lodging pattern of direct seeded rice cultivation under flooded condition were largely distributed on the soil surface so that resulted easily in the lodging. In general, the lodging resistance would be greater as seeding rate and amount of N fertilizer application are lower and soil depth after seeding is higher. Among the introduction of different seeding method the high ridged drill seeding method on dry paddy soil resulted in the lowest in the lodging index and also it was lower in the drill seeding method than in the scattering seeding method under flooded condition. In case of more than 150 seedlings per $m^2$ there was a severe lodging due to high lodging index at the 3rd and 4th internodes. The effective lodging prevention was able to at the treatment of the Inabenfide at 45 days before heading and the Uniconazol at 15 days before heading which caused the shortage by 10-15cm in culm length. Also, fertilizer management using split application of nitrogen would be contributed the reduction of lodging at the rate of 20-30-20-20-10%(basal-5th leaf stage-7th leaf stage-panicle initiation stage-heading stage) on the dry paddy soil.

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