• 제목/요약/키워드: Plastic-film-covered

검색결과 45건 처리시간 0.029초

The Plastic -film -covered Hill Planter

  • Jun, Zhang-Xue;YangYin
    • 한국농업기계학회:학술대회논문집
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    • 한국농업기계학회 1996년도 International Conference on Agricultural Machinery Engineering Proceedings
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    • pp.1041-1044
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    • 1996
  • The plastic-film-covered hill planter is a new-type seeding machine, including tow types which are mounted by 11kw and 40 kw tractors. It is made up of fertilizing , plastic-film covering perforating film and hole seeding, soil sealing apparatus, and can work at 5-7kw/h. The plastic-film covering and seeding of cotton, corn and soybean can all use this machine. The plastic-film-covered hill planter is mainly composed of plastic film covering unit, drum-type hill-drop unit and furrow coverer, some other types are also equipped with fertilizer drill unit. It can do combined work of covering plastic film , sowing , plastic film perforating , soil covering at one time, and it is suitable to the covering plastic film as well as planting of the grandulated crops, such as cotton , corn, soybean and so on.

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The Studying on Drum-type Hill-drop Unit

  • Zhang, Xuejun;Yang, Yin
    • 한국농업기계학회:학술대회논문집
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    • 한국농업기계학회 1996년도 International Conference on Agricultural Machinery Engineering Proceedings
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    • pp.996-998
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    • 1996
  • The drum-type hill-drop unit, an important working device of the plastic -film-covered hill planter, can finish filling and separating seed precisely, perforating film and holing , and its seeding depth and spacing are stability . The unit is applied to hole seed many crops, for example, cotton, corn , soybean, etc. The drum-type hill-drop unit(DHU) , the key work unit to the plastic film-covered planter, mainly consists of distributor box , seeding parts, hole forming unit and drum , It can be operated to accomplish seeds distributing, hole forming , plastic film perforating . Moreover , its inner cavity can be used as seed box.

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제주에서 터널 피복시기가 아스파라거스의 수확기 및 수량에 미치는 영향 (Effect of Tunnel Covering Date on Harvesting Time and Yield of Asparagus(Asparagus officinalis L.) in Jeju)

  • 성기철;김천환;이진수;김두섭;엄영철;강경희
    • 생물환경조절학회지
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    • 제16권4호
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    • pp.344-347
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    • 2007
  • 난지권인 제주에서 아스파라거스 수확기 및 수량에 미치는 터널피복 시기를 구명코자 2년생 '그린타워' 품종을 이용 수행하였다. 무처리를 비롯하여 터널피복 시기는 2004년 1월 10일부터 15일 간격으로 2월 25일 까지 4회 실시하였다. 맹아일은 관행 3월 3일에 비하여 1월 10일과 25일 피복구에서 23주 빨랐다. 첫 수확일은 관행구(무처리) 3월 11일에 비하여 1월 10일 피복구에서 2월 19일로 3주, 1월 25일과 2월 10일 피복구에서는 2월 25일로 2주 정도의 수확기 촉진 효과가 나타났다. 주당수량은 1월 10일과 25일 피복구에서 가장 많았으며 피복시기가 늦어짐에 따라 크게 적어졌다. 터널피복에 의한 2월 조기수확 효과는 1월 10일 및 1월 25일 피복구에서 각각 325, 333kg/10a로 크게 나타났으며 2월 10일 피복구 이후에서는 크게 감소되었다.

방적성 Plasma 처리 필름으로 피복된 플라스틱온실의 풋고추 생육 (Growth of Green Pepper(Capsicum annuum L.) in a Plastic Greenhouse Covered with Anti-dropping Plasma Film)

  • 전희;김경제;김진영;김현환;이시영
    • 생물환경조절학회지
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    • 제9권3호
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    • pp.156-160
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    • 2000
  • 플라즈마 필름은 플라스틱 필름 표면의 유적성을 향상시키기 위하여 고전압처리 되었다. 플라즈마 필름과 계면활성제 필름(대조구)를 각각 직경 25mm 두께 1.5mm 골조 파이프 하우스에 피복하였다. 또한 40일 플러그 육묘된 풋고추를 110cmx25cm 간격으로 정식하였다. 피복시 수온을 7$0^{\circ}C$로 처리된 수적발생 장치에서 나온 수증기가 필름 표면에서 응결되어 흘러내려 비이커에 모인 양을 150분 후에 측정한 결과, 플라즈마 필름에서 2.56mL.100$cm^{-2}$ , 계면활성제 필름에서 0.94mL.100$cm^{-2}$ 이 나왔다. 피복 60일 후 오전 8시 20분에 시설내 필름 표면에 부착된 수적량은 플라즈마 필름에서 0.34mL.100$cm^{-2}$ , 계면활성제필름에서 0.32mL.10$cm^{-2}$ 이었다. 광 투과율은 플라즈마 필름 피복시설이 계면활성제 피복시설 보다 2.0% 높았다. 그리고 시설내 기온은 플라즈마 필름 피복시설이 계면활성제 피복시설 보다 0.5$^{\circ}C$ 높았다. 그러나 상대습도는 차이가 없었다. 풋고추 초장, 엽면적, 건물중 및 초기수량 또한 처리간에 차이가 없었다.

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논토양에서 비닐하우스를 이용한 재배방법이 인삼의 수량 및 품질에 미치는 영향 (Effect of Cultivation Using Plastic-Film House on Yield and Quality of Ginseng in Paddy Field)

  • 김동원;김종엽;유동현;김창수;김희준;박종숙;김정만;최동칠;오남기
    • 한국약용작물학회지
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    • 제22권3호
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    • pp.210-216
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    • 2014
  • The average and maximum temperature were $29.5^{\circ}C$ and $33.2^{\circ}C$ at 2:00 p.m. respectively, in the plastic-film house covered with shade net, and both of temperature were lower $0.6^{\circ}C$ and $1.3^{\circ}C$ than those of conventional shade. Light transmittance was 14% in the plastic-film house, while 9.9% in conventional shade during growing season from May to October. Withering time of aboveground part was on October 3rd in conventional shade with 60% of withering leaf, while it was on November 10th with 3.7% of withering leaf in the plastic-film house, about 40 days longer survival. The main disease incidence were 15% of anthracnose, 17% of leaf spot, 5% of phytophthora blight and 3% of gray mold in the conventional shade, while 0 ~ 0.1% disease incidence and 95% of emergence rate in the plastic-film house. The growth in the aboveground and underground part of ginseng was totally better, particularly characteristics affecting yield such as root length, main root length and diameter in the plastic-film house. The fresh weight was increased by 128% compared to the conventional shade and harvested roots per $3.3m^2$ were 36 roots in the conventional shade and 58 roots in the plastic-film house and futhermore yield per $3.3m^2$ was increased by 216% compared to the conventional shade. As covering materials, the rice straw in the plastic-film house was excellent. The ginsenoside contents affecting the quality of ginseng were higher in the plastic-film house indicating 0.333% of Rg1, 0.672% of Rb1, 0.730% of Rc and rate of red rusty root was less than 4.0 ~ 6.1%. Above the results, the quality of ginseng grown in the plastic-film house covered with shade net was improved than that of the conventional shade.

온실을 이용한 홍고추의 건조 (Red Pepper Drying with Solar Energy in Greenhouse)

  • 윤용철;서원명;강종국;조화태
    • 한국농공학회:학술대회논문집
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    • 한국농공학회 2001년도 학술발표회 발표논문집
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    • pp.256-260
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    • 2001
  • This study was initially performed to investigate current red-pepper drying methods commonly being adopted on red-pepper cultivation farm area. Based on the informations obtained from the field survey, an experiment of red-pepper drying was carried out to verify the actual drying potential of plastic covered solar house similar to the conventional pipe frame greenhouses covered with one or two layer of plastic film. Some results obtained from field survey and drying experiment for red-pepper are summarized as follows; 1. Various patterns of red-pepper drying process were found; 1) complete natural drying with red-pepper exposed in outdoor air, 2) hot air drying by dry chamber only, 3) combination drying by hot air dryer together with plastic covered passive solar house, 4) drying with plastic covered solar house unit. 2. The average air temperatures of outdoor and solar house during drying experiment period were $26.9-30.8\;and\;28.6-33.8^{\circ}C$, respectively, and the maximum air temperatures of those two were $34.2-36.4\;and\;39.8\;-52.3^{\circ}C$, respectively. Horizontal solar intensity during experiment period was $18.49-23.96\;MJ/m^{2}$, and relative humidity of outdoor and experimental solar house were 56 - 66% and 64 - 70%, respectively. 3. The weight of red-pepper during drying experiment period was decreased almost linearly from initial moisture content of 85% to final moisture content of 14%.

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플라스틱 온실(溫室)의 일사량분석(日射量分析)과 열적환경(熱的環境)의 시뮬레이션에 관(關)한 연구(硏究) - I. 플라스틱 온실(溫室)의 일사량분석(日射量分析) (Analysis of solar radiation and simulation of thermal environment in plastic greenhouse - I. Analysis of solar radiation in plastic greenhouse)

  • 박재복;고학균
    • 태양에너지
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    • 제6권2호
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    • pp.22-32
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    • 1986
  • This study was carried out to analyze solar radiation in plastic greenhouse which is covered with polyethylene or polyvinyl chrolide film. A computer model for solar radiation analysis in the plastic greenhouse was developed and solar gain factors for E-W and N-S oriented plastic greenhouse in the greenhouse farming area during winter were investigated. Solar gain factors for E-W plastic greenhouse were 60 to 75 percent which were 10 to 15 percent higher than those for N-S plastic greenhouse from November to January. However, the values were apparently decreased in February and reversed in March, showing 3 to 5 percent higher in E-W plastic greenhouse. About 67 to 72 percent of the total solar radiation was attributed to the south-directed wall and roof for the E-W plastic greenhouse and about 30 percent through walls and 60 percent through roofs for the N-S plastic greenhouse.

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서중환경에서 표면피복 양생재 종류변화가 콘크리트의 초기 온도이력 및 균열발생에 미치는 영향에 관한 현장적용성 평가 (Field Application to Evaluate the Effect of Various Surface Covered Curing Blankets on Temperature Profile and Crack Occurrence of the Concrete under Hot Weather Condition)

  • 한민철;이상운
    • 대한건축학회논문집:구조계
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    • 제34권5호
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    • pp.27-34
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    • 2018
  • Concrete placed under hot weather condition suffers from larger slump loss, rapid moisture evaporation due to high air temperature. Proper measures for material, transportation and curing should be taken to prevent the quality deterioration of the concrete under hot weather condition. In Korea, Although the period of hot weather concrete in Korea occupies only 2 months, there are a lot of quality problems including plastic, drying shrinkage and cold joint. Therefore, the objective of this paper is to investigate and compare the temperature history and crack occurrence of the concrete, which was placed in the actual apartment house construction field under hot weather condition, in response to the application of surface covered curing blankets including PE film, single layer clear bubble sheet, white colored bubble sheet and aluminum metalized bubble sheet. Test results indicated that the application of white colored bubble sheet and aluminum metalized bubble sheet showed most favorable results in terms of reduction in temperature rise and crack occurrence as well as easiness in handling. But, due to light reflection by aluminum metalized bubble sheet, it is believed that white colored bubble sheet is preferable.

충북(忠北) 지역(地域) 시설재배(施設栽培) 토양(土壤)의 화학적(化學的) 특성(特性) (Chemical Characteristics of Plastic Film House Soils in Chungbuk Area)

  • 강보구;정인명;김재정;홍순달;민경범
    • 한국토양비료학회지
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    • 제30권3호
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    • pp.265-271
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    • 1997
  • 시설재배 토양의 염류집적 현황과 토양중 염류이동을 구명하기 위하여 충북지역의 청주 및 충주에서 토양의 화학적 특성을 조사하였다. 시설재배지의 토성(土性)은 사양토(砂壤土) 30%, 양토(壤土) 27%, 미사질양토(微砂質壤土) 43% 이었고, 표토의 염류농도 분포비율은 $2dS\;m^{-1}$ 이하가 23%, $2{\sim}4dS\;m^{-1}$ 30%, $4{\sim}6dS\;m^{-1}$ 25%, $6dS\;m^{-1}$ 이상이 22%로서 장해발생기준(障害發生基準) $4dS\;m^{-1}$를 초과하는 포장이 약 50% 이었으며, 심토(20~30cm)에서는 $2dS\;m^{-1}$ 이하인 토양이 68%이었다. 시설재배 토양의 EC는 경작년수에 따라 증가하여 5년 이상인 토양에서 $4.47dS\;m^{-1}$ 이상이었고 시설 밖의 노지포장보다 2.8~5.6배 높았다. 여름철 비닐을 제거한 토양의 EC는 $0.71{\sim}2.92dS\;m^{-1}$로서 제거하지 않은 토양의 $3.54{\sim}7.36dS\;m^{-1}$보다 현저히 감소되었다. 시설 재배 토양의 $NO_3-N$, $SO_4-S$ 그리고 Cl 함량은 노지토양에 비하여 각각 2.5. 7.0, 3.4배 높았다.

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Study of Pallet Scale Modified Atmosphere Packaging Films for Reducing Water Condensation

  • Kim, Jinse;Park, Jong Woo;Park, Seokho;Choi, Dong Soo;Choi, Seung Ryul;Kim, Yong Hoon;Lee, Soo Jang;Park, Chun Wan;Lee, Jung- Soo;Cho, Byoung-Kwan
    • Journal of Biosystems Engineering
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    • 제41권2호
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    • pp.98-107
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    • 2016
  • Purpose: The aim of this study was to find an appropriate polymer film, which could reduce the water condensation for pallet-size modified atmosphere packaging (MAP). Methods: Five different types of films were selected from several commercialized films. Prior to the real food storage test, plastic boxes with wetted plastic balls were used to simulate the high humidity conditions of real food storage. The initial MAP condition was 5% oxygen and 95% nitrogen, and the $O_2$ concentration, the relative humidity and water condensation inside the films were checked on a daily basis. The MAP test for tomatoes was conducted by using the most appropriate film from the five films examined in this study. Results: Every film except Mosspack(R) indicated a similar variation in the $O_2$ concentration over the course of time. The relative humidity near the surfaces of all the films except nylon-6 approached saturation conditions over time. For three kinds of films, namely, low-density polyethylene (LDPE) film, anti-fogging oriented polypropylene (AFOPP) film, and Mosspack(R), the inner surfaces of the films were fully covered with dew after a storage period of a day. Conversely, an area of 4.5% was covered with dew in the case of the poly lactic acid (PLA) film, and there was no dew inside the nylon-6 film. The pallet-size MAP test for tomatoes was conducted by using the nylon-6 film and there was no water condensation inside the nylon-6 film over three weeks of storage. Conclusions: During the pallet scale MAP, water condensation could cause severe fungal infection and wetting of the corrugated box. Hence, it was important to minimize water condensation. This study showed that the MAP films with high WVTR such as nylon-6 and PLA could reduce the water condensation inside the pallet scale MAP.