• Title/Summary/Keyword: Soil resistance value

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제천시 보호수의 생육환경 및 관리현황 평가 (Assessment of Growth Conditions and Maintenance of Law-Protected Trees in Je-cheon City)

  • 윤용한;주진희
    • 한국전통조경학회지
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    • 제28권2호
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    • pp.67-74
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    • 2010
  • 보호수는 역사와 전통을 간직한 자원으로 우리의 소중한 자산이자 보호관리하여 대대로 물려주어야 할 자연유산이다. 보호수는 수목으로 육종학적, 유전학적인 의미를 가짐과 동시에 환경적, 정서적 의미를 가지며, 그 가치를 높게 평가할 수 있다. 본 연구는 제천시 보호수의 생육환경 및 관리현황을 조사하여 개선방안을 모색하고자 식물학적 특성, 입지현황, 건강도, 토양특성, 근원부 성상, 관리현황 등을 조사하였다. 제천시 보호수는 300 이상의 수령이 가장 많았으며, 평탄지에 주로 위치하였다. 입지유형은 마을형, 동산형, 도로형의 순이었으며, 개발 정도는 건물지가 가장 많았다. 형성층 전기저항 측정치는 평균 $8.4k{\Omega}$로 나타났으며, 4그루에서 수피이탈 현상이 있었다. 대부분의 보호수에서는 외과수술이 실시되어 있었고, 근원부성상에서 완전 나지화가 된 곳은 1그루로, 근원부위에 콘크리트로 포장된 곳은 2곳으로 조사되었다. 토양산도는 5.0~8.4의 범위로 평균 7.1로, 전기전도도 EC는 0.5dS/m 이하로 측정되었다. 보호책은 총 48그루 중에서 16그루만 설치되어 있었으며, 석축이 설치된 곳은 3곳이었다. 외과수술이 시행된 곳은 총 33그루로 대부분이 공동의 부패부위방지 및 치료인 것으로 추측되며, 안내판은 23그루에 설치된 것으로 조사되었다.

삼림이수기능(森林理水機能)의 정량적(定量的) 평가방법(平價方法)에 관한 연구(硏究)(II) - 조도계수(粗度係數)의 응용(應用)을 중심(中心)으로 - (A Study on a Quantitative Method in Estimating Forest Effects for Streamflow Regulation (II) - Mainly Dealing with Application of Coefficient for Slope Roughness -)

  • 이헌호
    • 한국산림과학회지
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    • 제81권4호
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    • pp.337-345
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    • 1992
  • 산지유역은 대부분이 수원대(水源帶)이고 수자원상 중요한 위치를 차지하고 있기 때문에 수자원의 확보와 홍수재해의 경감을 위해 삼림의 유량조절기능과 우수유출(雨水流出)에 미치는 삼림의 영향을 정량적으로 해석할 필요가 있다. 본 논문은 유출해석모델로 Kinematic wave법을 채용했다. 그리고 모델의 조변수(助變數)(parameter)로서 사면조도계수(斜面組度係數)를 동정(calibration)에 의해 추정해서 그 값으로 삼림의 이수기능(理水機能)을 평가할 수가 있었다. 본 논문에 사용한 수문자료(水文資料)는 동경대학(東京大學) 애지(愛知)연습림의 두 시험유역에서 관측한 자료이다. 삼림이 수기능의 평가방법으로서 제안한 조도계수의 추정방법과 그 결과를 요약하면 다음과 같다. 1. 조도계수($N_s$)는 산복사면의 표면유(表面流)의 유수저항(流水抵抗)을 나타낸다. 즉 삼림의 성장과 함께 $A_o$층(層)의 발달에 의해 우수(雨水)의 유하(流下)가 방해를 받는다. 2. Kinematic wave법(法)에 의한 모델실험에 의하여 하도(河道)의 직접유출량(直接流出量)을 계산할 때 조변수로서 사면 조도계수의 값을 추정할 수가 있었다. 3. 혈궁유역(穴宮流域)에서의 조도계수는 지수함수적으로 일정치에 점근(漸近)하면서 증대하는 곡선상에 있고, 치산 조림의 성과가 나타나기 시작한 1940년대 전후의 급격한 증대가 특징적이다. 한편 백판유역(白坂流域)에서는 직선적으로 미증(微增)경향이 있는 것으로 지표의 상태에는 거의 변화가 없었던 것이 추찰(推擦)된다. 4. 조도계수값의 증대는 직접유출량의 감소 및 기저유츨량(基底流出量)의 증대와 직접적인 관련이 있었다. 임상(林相)의 양호화(良好化)와 함께 한 강우에 대한 직접유출량의 비율은 상대적으로 감소하고, 기저유출량의 비율이 증가하는 경향이 인정되었다. 그러나 한 강우에 대한 유출량의 절대량은 경년적(經年的)으로 감소해 가는 경향이 있었다.

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평행식 진동탄환 암거 천공기의 연구 (IV)(V)-실기 설계 제작 및 보장실험-Development of Balanced-Type Oscillating Mole Drainer(IV)(V)

  • 김용환;이승규;서상용
    • Journal of Biosystems Engineering
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    • 제2권1호
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    • pp.7-24
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    • 1977
  • This paper is the forth and fifth one of the study on balanced type oscillating mole drainer. In the light of the results from previous reports about the model tests, some design criteria were established and a prototype machine was set up for experimental purpose. Motion characteristics and functionof the each parts of the machine were checked and analyzed. After that, performance tests of the prototype machine were carried out in thefield. Obtained results are summarized as follows ; 1. Ten centimeter of the bullet diameter was determined so as to be able to attach it to the tractors with capacity of 30 PS to 40 PS. 2. To maintain the balance between the moments of the front shank and rear shank, the oscillating amplitude of the rear bullet was determined to be larger than that of the front bullet. At the same time , the oscillating direction of the rear bullet was designed with the inclines of ten to thirty degrees. 3. An octagonal dynamo transduced was developed for measuring the compressive force of the upper link is measuring the draft force of the machine. Acceptable linear relationship between forces and strain responses from O.D.T. was obtained. 4. Analysing the balancing mechanism of the acting part of the machine , it was found that the total draft force of the machine was equal to the difference between the sum of the draft force produced from the right and left side bending moments of the lower drawber and the compressive force on the upper link. 5. There are acceptable linear relationship between the strain and twisting moment by driving shaft, and between strain and shank moment. Above results enable us to carry out the field experiment with prototype machine. 6. When the test machine was used in the field, it was possible to reduce the oscillating acceleration by forty percent in average as compared it with the single bullet mole drainer. 7. When the test machine was used under the oscillating condition, the dratt torce was reduced by 27 percent to 59 percent as compared it with the test machine under non-oscillating condition, while the draft force was increased by 7 percent to 20 percent as compared it with the mole drainer having oscillating single bullet. The reasoning behind this fact was considered as the resistance force due to the rear shank and bullet. 8. As the amplitude and frequency of the bullet were increased, the torque was increased accordingly. This tendency could be varied with the various characteristics of the given soils. And the larger frequency and amplitute, the more increasing oscil\ulcornerlating power but decreasing draft brce were needed, and draft force was increased as the velocity was increased.9. When the amplitude of the rear bullet was designed to be larger than that of the front bullet, the minimum value of the moment was lowered and oscillating acceleration was reduced. And when the oscillating direction of the rear bullet was declined back\ulcornerwards, oscillating acceleration was increased along with the increasing angle of decli\ulcornernation. When the test machine was operated in high speed, the difference between maximum moments and minimum ones became narrow. This varying magnitude of moments appeared on the moment oscillogram seems to be correlated to the oscillating acceleration and draft force. 10. From the analysis of variance, it was found that those factors such as frequency, amplitude, and operating velocity significantly affected in the oscillating acceleration, the draft resistance, the torque, the moment, and the total power required. And interaction between frequency and amplitude affected in the oscillating acceleration. 11. Within the given situation of this study, the most preferable operating conditions of the test machine were 7 Hz in oscillating frequency, 0.54 m/sec in operating velocity, and 39.1 mm in oscillating amplitude of front and rear bullets. However, it is necessary to select the proper frequency and magnitude of oscillation depending on the soil properties of the field in which the mole drainer is practiced by use of a bal1nced type oscillating mole drainer. 12. It is recommended that a comparative study of the mole drainers would be performed in the near future using two separate balanced oscillating bullet with the one which is operated by oscillating the movable bullet in a single cylinder or other balanced type which may be single oscillating bullet with spring, damper or balancing weight, and that of thing. To expand the applicability of the balanced type oscillating mole drainer in practical use, it is suggested to develop a new mechanism which perform mole drain with vinyl pipe or filling material such as rice hull.

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Perspective of breaking stagnation of soybean yield under monsoon climate

  • Shiraiwa, Tatsuhiko
    • 한국작물학회:학술대회논문집
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    • 한국작물학회 2017년도 9th Asian Crop Science Association conference
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    • pp.8-9
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    • 2017
  • Soybean yield has been low and unstable in Japan and other areas in East Asia, despite long history of cultivation. This is contrasting with consistent increase of yield in North and South America. This presentation tries to describe perspective of breaking stagnation of soybean yield in East Asia, considering the factors of the different yields between regions. Large amount of rainfall with occasional dry-spell in the summer is a nature of monsoon climate and as frequently stated excess water is the factor of low and unstable soybean yield. For example, there exists a great deal of field-to-field variation in yield of 'Tanbaguro' soybean, which is reputed for high market value and thus cultivated intensively and this results in low average yield. According to our field survey, a major portion of yield variation occurs in early growth period. Soybean production on drained paddy fields is also vulnerable to drought stress after flowering. An analysis at the above study site demonstrated a substantial field-to-field variation of canopy transpiration activity in the mid-summer, but the variation of pod-set was not as large as that of early growth. As frequently mentioned by the contest winners of good practice farming, avoidance of excess water problem in the early growth period is of greatest importance. A series of technological development took place in Japan in crop management for stable crop establishment and growth, that includes seed-bed preparation with ridge and/or chisel ploughing, adjustment of seed moisture content, seed treatment with mancozeb+metalaxyl and the water table control system, FOEAS. A unique success is seen in the tidal swamp area in South Sumatra with the Saturated Soil Culture (SSC), which is for managing acidity problem of pyrite soils. In 2016, an average yield of $2.4tha^{-1}$ was recorded for a 450 ha area with SSC (Ghulamahdi 2017, personal communication). This is a sort of raised bed culture and thus the moisture condition is kept markedly stable during growth period. For genetic control, too, many attempts are on-going for better emergence and plant growth after emergence under excess water. There seems to exist two aspects of excess water resistance, one related to phytophthora resistance and the other with better growth under excess water. The improvement for the latter is particularly challenging and genomic approach is expected to be effectively utilized. The crop model simulation would estimate/evaluate the impact of environmental and genetic factors. But comprehensive crop models for soybean are mainly for cultivations on upland fields and crop response to excess water is not fully accounted for. A soybean model for production on drained paddy fields under monsoon climate is demanded to coordinate technological development under changing climate. We recently recognized that the yield potential of recent US cultivars is greater than that of Japanese cultivars and this also may be responsible for different yield trends. Cultivar comparisons proved that higher yields are associated with greater biomass production specifically during early seed filling, in which high and well sustained activity of leaf gas exchange is related. In fact, the leaf stomatal conductance is considered to have been improved during last a couple of decades in the USA through selections for high yield in several crop species. It is suspected that priority to product quality of soybean as food crop, especially large seed size in Japan, did not allow efficient improvement of productivity. We also recently found a substantial variation of yielding performance under an environment of Indonesia among divergent cultivars from tropical and temperate regions through in a part biomass productivity. Gas exchange activity again seems to be involved. Unlike in North America where transpiration adjustment is considered necessary to avoid terminal drought, under the monsoon climate with wet summer plants with higher activity of gas exchange than current level might be advantageous. In order to explore higher or better-adjusted canopy function, the methodological development is demanded for canopy-level evaluation of transpiration activity. The stagnation of soybean yield would be broken through controlling variable water environment and breeding efforts to improve the quality-oriented cultivars for stable and high yield.

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광전환재 크기가 다른 광전환 필름 피복 온실 내 미기상 및 작물 생육 (Microclimate and Crop Growth in the Greenhouses Covered with Spectrum Conversion Films using Different Phosphor Particle Sizes)

  • 박경섭;권준국;이동권;손정익
    • 생물환경조절학회지
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    • 제25권2호
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    • pp.111-117
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    • 2016
  • 본 연구의 목적은 광전환재의 사이즈가 다른 광전환 필름을 피복한 온실에서, 실내 생육 환경, 토마토 및 상추의 생육과 품질을 분석하는 것이다. $10{\mu}m$ 이상의 광전환재를 이용한 광전환 필름(Micro 필름), 500nm 이하의 광전환재를 이용한 광전환 필름(Nano 필름)과 폴리에틸렌(PE) 필름을 2중 온실의 외피복재로 피복하였다. 내피복재는 0.06mm PE 필름을 사용하였고, 내피복재 및 외피복재의 두께는 모두 0.06mm로 동일하였다. 광전환 필름의 인장강도, 인열강도, 신장율은 PE 필름과 유사하였다. 투광률은 Nano 필름이 600-750nm 및 전체 투광률에서 PE 필름보다 높았으며, Micro 필름은 PE 필름보다 전체 투광률이 낮았다. 온실 내 기온은 Micro 및 Nano 필름 온실이 PE 필름 온실에 비하여 약 $2^{\circ}C$정도 높았고, 광전환 필름 온실 간의 유의적인 차이는 없었다. 지온은 Nano 필름 온실이 Micro 필름과 PE 온실에 비하여 각각 1.5, 3 정도 높았다. 토마토의 수량은 PE 필름 온실에 비해 Micro 및 Nano 필름 온실에서 각각 12%, 14% 정도 유의적으로 증가하였고, 당도 차이는 없었다. 그리고 광전환 필름 간의 유의적인 차이는 없었다. 상추의 수량은 Micro 필름 온실이 Nano 필름 및 PE 필름 온실에 비하여 각각 27%, 59% 높았다. Hunter의 적색 값 a는 Nano 필름 온실에서 가장 높았다. 토마토와 같이 높은 광을 요구하는 작물은 투광률이 좋은 Nano 필름이 적합하였고, 상추와 같이 낮은 광을 요구하는 작물은 상추는 Micro 필름이 적합하다고 판단되었다.