• 제목/요약/키워드: Tractor attached

검색결과 67건 처리시간 0.024초

벌출작업 기종의 선정을 위한 GIS 활용 (Application of GIS for Selection of Logging Operation Machine)

  • 전권석;마호섭
    • 한국지리정보학회지
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    • 제6권1호
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    • pp.85-97
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    • 2003
  • 지리정보시스템(GIS)에 의하여 구축되어진 수치지형모델(DTM)을 이용하여 경상남도 남해군 금산의 국유림(2,948ha)을 대상으로 지형분석을 실시한 후, 현재 우리나라에서 보유하고 있는 벌출작업기계 3기종을 선택하여 산림경영계획의 측면에서 지형별 투입가능한 산림작업기계의 영역을 분류하고 적용성을 검토하였다. 금산의 표고는 201~250m(15.5%), 251~300m(14.5%)의 순으로 분포하였으며, 400m까지의 누적 면적점유율은 78.7%로서 비교적 표고가 낮은 것으로 나타났다. 대상임분, 작업규모, 경사 및 지형에 따른 차량계 벌출작업기계의 투입가능한 지역(경사 30% 이하)은 17.2%(511.7ha)였으며, 윈치부착 차량계 벌출작업기계의 투입가능한 지역(경사 31~60%)은 63.8%(1,896.3ha)였고, 가선계가 가능한 지역(경사 61~80%)은 18.4%(545.5ha)로 나타났다. 본 지역의 경우 중경사지형의 점유율이 81.0%로서 집재기종 중 트랙터부착 집재기(Logging Boogie)의 사용이 적절하다고 판단되며, 이는 향후 대상지역의 산림작업 계획시 기초자료로 활용할 수 있을 것이다. 임목수확작업에 필요한 기계의 이용계획과 작업방법을 선정할 경우에는 지형, 임도망, 임상, 작업규모, 노동력과 작업기술, 기계 및 자본력 등 많은 인자들이 중요한 결정요인이지만 무엇보다도 지형적인 요소가 가장 중요한 요인이다. 특히, 지형정보시스템을 이용하여 집재지형을 분류하면 산지사면의 경사길이와 경사도에 따라 벌출작업이 가능한 대표기종의 선정에 많은 도움이 될 수 있을 것이다.

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가축분뇨액비 지중살포기의 견인력 및 살포 특성 (Pulling Force and Manure Spreading Characteristic of Tractor-drawn Animal Slurry Manure Sub-soil Injector)

  • 최광재;이성현;유병기;오권영;박환중;이상태
    • 한국축산시설환경학회지
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    • 제11권1호
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    • pp.25-34
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    • 2005
  • 1. 트랙터 삼점히치탑재형 지중살포기 가. 5련 치즐푸라우에 의해 토양 파쇄가 이루어지고 용적식 워블판 펌프에 의해 지중에 압송 살포하는 구조로 설계 제작되었다. 나 슬러리 가축분뇨살포기의 지중깊이별 축분살포기 견인력은 토앙파쇄 깊이 50mm에 비해 100mm일 때 550kgf에서 600kgf로 조금 증가하였으나 토양파쇄 깊이 150mm에서는 약 800kgf로 급격히 증가하였다. 다. 슬러리가축분뇨 송출장치로 오수펌프와 토출관 사이 압력조절탱크 설치로 분뇨토출 분지관의 살포균일성을 높일 수가 있었다. 2. 트랙터 견인형 지중살포기 가. 5련 치즐플라우에 의한 토양파쇄 후베인형 진공펌프에 의해 슬러리 가축분뇨를 지중에 압송 살포하는 장치로 제작되었다. 나. 슬러리 가축분뇨 지중살포기의 살포 깊이별 견인력은 반 건조 상태인 논 토양의 경우 지표살포 683kgf, 살포 깊이 l0cm에서 1,062kgf, 깊이15cm에서 1,214kgf로 나타났으며, 살포 깊이 20cm에서는 트랙터의 슬립발생 증가하여 작업이 곤란하였다. 다. 시작기의 밭 토양에서 견인력은 지표살포 784kgf, 살포 깊이 l0cm에서 997kgf, 깊이 15cm에서 1,320kgf, 깊이 20cm에서 1,670kgf로 나타나 살포 깊이가 증가함에 따라 견인력이 크게 증가하는 경향이었다. 라. 슬러리가축분뇨를 토양에 압송$\cdot$살포하는 송출관에 분배관 설치로 토출관간 슬러리가 축분뇨의 토출균일성을 높일 수 있었고, 송출관의 압력조절밸브를 조정하면 10a당 살포량 조절이 가능하였으며, 지중살포 깊이는 10${\~}$15 cm 수준이 적합한 것으로 판단된다.

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신개발 심층시비장치를 이용한 심층시비가 벼와 콩 수량에 미치는 영향 (Effect of Fertilizer Deep Placement on Rice and Soybean Yield Using Newly Developed Device for Deep Fertilization)

  • 홍성창;김민욱;김진호
    • 한국환경농학회지
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    • 제42권1호
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    • pp.44-51
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    • 2023
  • Nitrogen fertilizer is an essential macronutrient that requires repeated input for crop cultivation. Excessive use of nitrogen fertilizers can adversely affect the environment by discharging NH3, NO, and N2O into the air and leaching into surrounding water systems through rainfall runoff. Therefore, it is necessary to develop a technology that reduces the amount of nitrogen fertilizer used without compromising crop yields. Fertilizer deep placement could be a technology employed to increase the efficiency of nitrogen fertilizer use. In this study, a deep fertilization device that can be coupled to a tractor and used to inject fertilizer into the soil was developed. The deep fertilization device consisted of a tractor attachment part, fertilizer amount control and supply part, and an underground fertilizer input part. The fertilization depth was designed to be adjustable from the soil surface down to a depth of 40 cm in the soil. This device injected fertilizer at a speed of 2,000 m2/hr to a depth of 25 to 30 cm through an underground fertilizer injection pipe while being attached to and towed by a 62-horsepower agricultural tractor. Furthermore, it had no difficulty in employing various fertilizers currently utilized in agricultural fields, and it operated well. It could also perform fertilization and plowing work, thereby further simplifying agricultural labor. In this study, a newly developed device was used to investigate the effects of deep fertilizer placement (FDP) compared to those with urea surface broadcasting, in terms of rice and soybean grain yields. FDP increased the number of rice grains, resulting in an average improvement of 9% in rice yields across three regions. It also increased the number of soybean pods, resulting in an average increase of 23% in soybean yields across the three regions. The results of this study suggest that the newly developed deep fertilization device can efficiently and rapidly inject fertilizer into the soil at depths of 25 to 30 cm. This fertilizer deep placement strategy will be an effective fertilizer application method used to increase rice and soybean yields, in addition to reducing nitrogen fertilizer use, under conventional rice and soybean cultivation conditions.

원형베일 조사료용 트랙터 견인형 세절.급여기 개발(II) - 이용실태 및 경제성 분석 - (Development of a Tractor Attached Roughage Cut-feeder for Round Bale(II) - Recent Trend of Traditional Cutting System and Feasibility Study -)

  • 하유신;홍동혁;박경규
    • Journal of Biosystems Engineering
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    • 제34권4호
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    • pp.228-233
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    • 2009
  • In order to cut the round bale easily, a roughage cut-feeder for the round bale was developed in this study. This study consists of two parts. One is development of a cutting mechanism and a performance test reported in the previous paper. This is the second part of the study. For the study, recent trend of traditional cutting system was analyzed. Also, cost of the prototype cut-feeder was analyzed and determine the break-even point of farm size was determined by comparing with traditional method using a traditional cutter. A prototype cut-feeder was investigated with the fact that working performance, fiber length and shape of roughage and feeding quality was good. Operating cost of the prototype cut-feeder decreased rapidly with an increase of farm size. Break-even point in terms of farm size was 36 heads for beef and 28 heads for dairy. Also, costs estimated were 118,000 won/head year and 148,000 won/head year, respectively.

트랙터 견인형 TMR 배합기의 개발(III) -경제성 분석- (Development of a Tractor Attached TMR Mixer(III) -Cost analysis-)

  • 박경규;김혁주;서상훈;나규동;홍동혁;장철;하유신;이종순
    • Journal of Biosystems Engineering
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    • 제25권4호
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    • pp.265-272
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    • 2000
  • Feasibility of the self-TMR mixing/feeding system for dairy farm in Korea was analyzed by comparing with a traditional feeding system. The total operating cost of self-TMR feeding system decreased with an increase of farm size. However, the cost was higher than that of traditional feeding system because of its high purchasing cost of TMR mixer as an initial investment. Profit per unit input of the TMR feeding system became greater over the traditional system when the farm size is larger than 17 heads due to more and better milk production. The profitable discrepancy became bigger as dairy farm size increases.

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트랙터부착형 타워집재기 개발(I) - 설계 및 제작- (Development of a Mobile Tower-yarder with Tractor (I) - Design and Manufacture -)

  • 박상준;김보균
    • 한국산림과학회지
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    • 제97권1호
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    • pp.61-70
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    • 2008
  • 본 연구는 급경사 지형과 간벌사업, 소규모 목재생산 등에 효율적인 가선계 집재기계인 트랙터 부착형 타워집재기를 개발하고자 수행하였다. 타워집재기의 유압동력원은 트랙터의 PTO를 이용한 3개의 유압펌프를 장착하여 4개의 드럼 구동용 모터와 인터록크용 클러치 실린더, 타워신장용 실린더, 아웃트리거 실린더를 작동시킬 수 있도록 설계 제작하였으며, 런닝스카이라인 삭장방식과 인터록크 기능을 채택하고 더블캡스턴드럼과 와이어로프 저장드럼, 인터록크 클러치를 장착한 타워집재기를 개발하였다. 또한 더블캡스턴 드럼의 윈치 구동력 및 견인력과 가선의 이송속도를 산출하여 윈치 구동력은 $191kg{\cdot}m$, 윈치 견인력은 1,910kgf, 더블캡스턴 드럼의 회전수는 220.5rpm, 가선의 이송속도는 138.5m/min의 타워집재기를 개발하였다. 메인라인 250m와 홀백라인 450m을 저장하기 위해서는 메인라인 및 홀백라인 저장드럼의 플랜지 직경은 각각 약 360mm와 약 460mm가 최적이라는 것을 알 수 있었다. 런닝스카이라인 삭장방식에 맞고 쵸킹작업이 용이하고 집재목의 처짐을 방지하기 위한 잠금장치를 장착한 반송기를 개발하였으며, 타워집재기의 인터록크 기능을 고려하고 조작의 수월성과 작업의 효율성을 위한 유선 리모트 콘트롤러를 개발하였다. 타워집재기의 견인 및 이동을 위해 트랙터의 후방 3점 히치 연결장치와 고무바퀴를 장착하였으며, 타워집재기의 안전성과 작업의 효율성을 높이기 위해 아우트리거와 버팀줄을 장착한 타워집재기를 개발하였다.

보릿짚 시용이 콩의 생육 및 수량에 미치는 영향 (Effects of Barley Straw Application on Growth and Yield in Soybean)

  • 김수경;손범영;김대호;김은석;강동주
    • 한국작물학회지
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    • 제45권6호
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    • pp.387-391
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    • 2000
  • 맥류후작 콩 재배시 보릿짚의 시용효과를 구명하기 위하여 보릿짚 시용, 제거 및 소각에 따른 토양 이화학성 및 콩의 생육과 수량에 미치는 영향에 대하여 검토하였던 바를 요약하면 다음과 같다. 1.보릿짚을 시용한 토양의 유기물함량은 보릿짚 제거 및 소각보다 높았으며 수분을 등 물리성의 개선 효과 있었다. 2. 잡초발생은 보릿짚 제거에 비해 보릿짚 시용에서 44%, 소각에서 31% 억제되었다. 3. 근류수 및 근류 건물중은 보릿짚 시용에서 많았다. 4. 식물체 건물중은 보릿짚 시용에서 지상부는 파종 후 30일경까지는 보릿짚 제거에 비해 적었으나, 그 이후단계는 차이가 없었으며, 지하부는 전 생육기간 동안 보릿집 처리 방법에 따른 차이는 없었다. 5.수량은 보릿짚 처리방법에 따른 유의적인 차이는 없었다.

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자주식 심토환경 개선기 개발(1) - 과수원의 토양 다짐 특성 및 심토 관리 실태 - (Development of Self-propelled Explosive Subsoiler (1) - Present Status of Soil Compaction and Subsoil Management in Orchard -)

  • 이동훈;박우풍;이규승
    • Journal of Biosystems Engineering
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    • 제34권6호
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    • pp.397-403
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    • 2009
  • This study was carried out to investigate the present status of subsoil compaction, and subsoil compaction management in orchard as a basic study for developing a self-propelled explosive subsoiler. Subsoil compaction was evaluated using the soil penetration resistance. Soil cone index was measured using the DIK 5520 type cone penetrometer in several fruit farms such as apple, pear, peach and grapes during growing seasons of these fruit in Jecheon, Gamgok, Choongju, Cheonan and Hwasung areas. Most of the subsoil managing machinery were either explosive type or digging type attached to the tractor or power tiller and turning radius of this machine was more than 3-5 m. Many of the farmers wanted to use the subsoiler which can put lime into soil and rupture soil at the same time. For most of the orchard fields, soil penetration resistance in vehicle traffic area was increased quickly and reached about 1.0 MPa in 5 cm soil depth. As the soil depth increased to 15-20 cm, cone penetration resistance reached about 2.0-2.5 MPa which restricted root growth seriously. Thus it was concluded that one of the main reason for increasing the soil compaction in orchard fields is agricultural vehicle traffic. In the vicinity of fruit trees, compaction is not so serious compared to that of the vehicle traffic area, but as the soil depth increased to 20-25 cm, in most of the orchard fields soil penetration resistance reached about 2.0-2.5 MPa which is the root growth-limiting value. Considering the rooting depth of fruit trees which ranged 30-60 cm for apple, pear and peach, and 20-30 cm for grape, it is necessary to loosen the subosoil and improve the subsoil conditions using subsoiler.

붐방제기의 곡선행로 조향반경에 따른 붐의 구간별 유량제어 (Sectional Flow-rate Control of Boom Sprayer According to the Steering Radius along Winding Rows)

  • 김은수;김영주;이중용
    • Journal of Biosystems Engineering
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    • 제31권3호
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    • pp.146-152
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    • 2006
  • Most upland in Korea have irregular field shapes. Boom sprayers working alone winding row will show considerable differences of spraying amount per unit area between left and right booms. If flow rates of both booms are equal. This phenomenon becomes significant as steering radius of sprayer decreases. This study was performed to seek a method which reduce the difference of the spray amount between left, right and center booms while spraying along curvy rows. A flow rate control method for keeping application rate of each boom section constant was proposed and experimentally proved using a boom sprayer attached to a cultivating tractor. The flow rate control device was composed of 3 ball valves and a rotary angle sensor. The rotary angle sensor showed a symmetric voltage output with respect to steering radius. The spray overlapping was happened in a boom nearby the steering center when steering radius of the sprayer was less than 5.2 m. Flow rates for left, right and center booms were regulated using ball valves based on the steering radius and spraying areas ration of right/left boom. The Maximum spraying area ratio ($S_{LR}$) of left to right boom section was 1:3.6 at the steering radius of 5.2 m. However, The Maximum achieved right and left spraying flow ratio was 1:2.7.

농업기계(農業機械) 공동이용(共同利用)시스템의 적정기계화(適正機械化) 수준(水準) (Optimum Level of Farm Machinery Ownership for Cooperative Farm Machinery Utilization System)

  • 유수남;서상룡;최영수;박준걸;박승제
    • Journal of Biosystems Engineering
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    • 제10권2호
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    • pp.27-35
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    • 1985
  • This study was carried out to determine the optimum size and number of farm machines for various sizes of land coverage of the cooperative farm machinery utilization systems in Korea-namely Saemaul Mechanized Farming Group (SMFG). Fifty-one SMFG were selected from 8 counties in Chonnam province, and ownership, operation and management of farm machinery were surveyed. Annual covered area, cost and the break-even-point area of farm machinery were analyzed on the bases of the surveyed data and the present governmental subsidy policy, and then the optimum level of farm machinery ownership was determined. The results are summarized as follows: 1. The break-even-point areas of the tractors of 22-23ps, 28ps and 47-50ps were estimated as 12.1ha, 15.3ha and 21.6ha, respectively. The optimum size of a tractor for land sizes of 10-20ha, 20-30ha, and 30-40ha were estimated as 22-23ps, 28ps, and 47-50ps, respectively. 2. The break-even-point area of a rice transplanter was estimated as 3.3ha. The optimum numbers of rice transplanter for land sizes of 10-20ha, 20-30ha, and 30-40ha were estimated as 2,3, and 4, respectively. 3. The break-even-point areas of a speed sprayer (attached on power tiller) and a power sprayer were estimated as 114.6ha and 15.3ha, respectively. The optimum numbers of power sprayer for land sizes of 10-20ha, 20-30ha, and 30-40ha were estimated as 2,3 and 4, respectively. A speed sprayer is desirable for an area of more than 30ha coverage. 4. The break-even-point area of a combine was estimated as 10.7ha. The optimum numbers of combine for land sizes of 10-20ha, 20-30ha, and 30-40ha were estimated as 1,2, and 3, respectively.

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