• 제목/요약/키워드: non-uniform inflow

검색결과 26건 처리시간 0.025초

The Generative Mechanism of Cloud Streets

  • Sung-Dae Kang;Fujio Kimura
    • 한국환경과학회지
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    • 제1권2호
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    • pp.119-124
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    • 1992
  • Cloud streets were successfully simulated by numerical model (RAMS) including an Isolated mountain near the coast, large sensible heat flux from the sea surface, uniform stratification and wind velocity with low Froude number (0.25) in the inflow boundary The well developed cloud streets between a pair of convective rolls are simulated at a level of 1 km over the sea. The following five results were obtained: 1) port the formation of the pair of convective rolls, both strong static instability and a topographically induced mechanical disturbance are strongly required at the same time. 2) Strong sensible heat flux from the sea surface is the main energy source of the pair of convective rolls, and the buoyancy caused by condensation in the cloud is negligibly small. 3) The pair o( convective rolls is a complex of two sub-rolls. One is the outer roll, which has a large radius, but weak circulation, and the other is the inner roll, which has a small radius, but strong circulation. The outer roll gathers a large amount of moisture by convergence in the lower marine boundary, and the inner roll transfers the convergent moisture to the upper boundary layer by strong upward motion between them. 4) The pair of inner rolls form the line-shaped cloud streets, and keep them narrow along the center-line of the domain. 5) Both by non-hydrostatic and by hydrostatic assumptions, cloud streets can be simulated. In our case, non-hydrostatic processes enhanced somewhat the formation of cloud streets. The horizontal size of the topography does not seem to be restricted to within the small scale where non-hydrostatic effects are important.

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Optimization of the Propeller Steady Performance Behind Wake Field

  • Lee, Wang-Soo;Choi, Young-Dal;Kim, Gun-Do;Moon, Il-Sung;Lee, Chang-Sup
    • Journal of Ship and Ocean Technology
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    • 제11권2호
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    • pp.10-25
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    • 2007
  • With the sharp increase of the oil price, the issue of the energy saving requires even higher propulsive efficiency of the propellers. Traditionally the propellers have been designed with the criteria such as that of Lerbs optimum based on the lifting line theory and the empirical formulae of Lerbs and van Manen giving relations of the wake pitch with the wake non-uniformity. With the aid of the high speed computer, it is now possible to apply the time-consuming iterative approaches for the solution of the lifting surface problems. In this paper we formulate the variational problem to optimize the efficiency of the propeller operating in the given ship wake using the lifting surface method. The variational formulation relating the spanwise circulation distribution with the propulsive efficiency to be maximized is however non-linear in circulation distribution functions, thus the iterative method is applied to the quasi-linearized equations. The blade shape design also requires the iterative procedures, because the shape of the blade which is represented by the lifting surface is unknown a priori. The numerical code was validated with the DTNSRDC propeller 4119 which is well-known to be optimum in uniform inflow condition. In addition existing (well-designed) commercial propellers were selected and compared with the results of the open water tests and the self-propulsion tests.

부가수 질량을 고려한 외팔판의 고유진동 해석 (Natural Frequency Analysis of Cantilever Plates with Added Mass)

  • 장현길;노인식;홍창호;이창섭
    • 대한조선학회논문집
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    • 제50권1호
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    • pp.1-7
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    • 2013
  • The high-skewed and/or composite propellers of current interests to reduce the ship vibration and to increase the acoustic performance are likely to be exposed to the unexpected structural problems. One typical example is that the added mass effect on the propellers working in the non-uniform wake field reduces the natural frequency of the propeller leading to the resonance with the low-frequency excitation of the external forces. To avoid this resonance problem during the design stage, the technique of fluid-structure interaction has been developed, but the higher-order effect of the blade geometry deformation is not yet considered in evaluating the added mass effects. In this paper the fluid boundary-value problem is formulated by the potential-based panel method in the inviscid fluid region with the velocity inflow due to the body deformation, and the structural response of the solid body under the hydrodynamic loading is solved by applying the finite element method which implements the 20-node iso-parametric element model. The fluid-structure problem is solved iteratively. A basic fluid-sturcture interaction study is performed with the simple rectangular plates of thin thickness with various planform submerged in the water of infinite extent. The computations show good correlation with the experimental results of Linholm, et al. (1965).

Response of Millet and Sorghum to Water Stress in Converted Poorly Drained Paddy Soil

  • Jung, Ki-Yuol;Yun, Eul-Soo;Park, Chang-Young;Hwang, Jae-Bok;Choi, Young-Dae;Oh, In-Seok
    • 한국토양비료학회지
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    • 제46권6호
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    • pp.409-416
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    • 2013
  • Millet and sorghum are major dryland cereal crops, however their growth and productivity is limited by soil water stress with varying intensity. The major objective of this study was to evaluate water stress of millet and sorghum yield under drainage classes of poorly drained soil and to test the effect of the installed pipe drainage in poorly drained paddy soil to minimize crop stress. The research was carried out in poorly drained paddy fields located at alluvial slopping area resulting in non-uniform water content distribution by the inflow of ground water from the upper part of the field. Stress Day Index (SDI) was determined from a stress day factor (SD) and a crop susceptibility factor (CS). SD is a degree of measurement by calculating the daily sum of excess water in the profile above 30cm soil depth ($SEW_{30}$). CS depends on a given excess water on crop stage. The results showed that sum of excess water day ($SWD_{30}$) used to represent the moisture stress index was lower on somewhat poorly drained soil compared with poorly drained soil on 117 days. CS values for sorghum were 57% on $3^{rd}$ leaf stage, 44% on $5^{th}$ leaf stage, 37% on panicle initiation, 23% on boot stage, and 16% on soft dough stage. For proso millet CS values were 84% on $3^{rd}$ leaf stage, 70% on $5^{th}$ leaf Stage, 65% on panicle initiation, 53% on boot stage, and 28% on soft dough stage. And for foxtail millet the values were 73% on $3^{rd}$ leaf stage, 61% on $5^{th}$ leaf stage, 50% on panicle initiation, 29% on boot stage, and 15% on soft dough stage. SDI of sorghum and millet was more susceptible to excess soil water during panicle initation stage more poorly drained soil than somewhat poorly drained soil. Grain yield was reduced especially in proso millet and Foxtail millet compared to Sorghum.

배수불량 경사지 논 토양의 배수방법에 따른 토양 물리성 변화 (Variation of Soil Physical Characteristics by Drainage Improvement in Poorly Drained Sloping Paddy Field)

  • 정기열;윤을수;박창영;황재복;최영대;전승호;이황아
    • 한국토양비료학회지
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    • 제45권5호
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    • pp.704-710
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    • 2012
  • 경사지 배수불량 논에서 밭작물의 안정적인 재배를 위한 배수개선 방법을 개발하기 위하여 논둑아래 기저부에 1열로 명거 (겉도랑 배수), 비닐차단막, 암거 (속도랑 배수), 관다발 등 네 가지 종류의 배수시설을 설치하여 배수개선 방법에 따른 토양의 물리적 특성변화를 비교 분석한 결과 다음과 같은 결론을 얻었다. 배수방법별 토양의 용적밀도는 배수방법 간에 큰 차이가 없었으나 집적층 (B층)의 투수력은 암거배수구가 $2.67cm\;hr^{-1}$로 가장 높았고 다음은 관다발배수 $1.53cm\;hr^{-1}$이었으며, 명거배수, 비닐차단막은 $0.8cm\;hr^{-1}$내외로 낮은 경향을 보였다. 경작층 (Ap)의 액상은 명거배수, 비닐차단막 처리구가 35% 내외로 높은 경향을 보였으나 암거배수구에서는 수분함량이 크게 감소되었다. 또한 암거배수구의 기상은 32 ~ 35% 내외로 명거배수, 비닐차단막, 관다발 처리구 17 ~ 20% 보다 상대적으로 높아 공극률이 증가하는 것으로 나타났다. 명거배수 처리구의 토색은 수분과다와 높은 지하수위로 환원작용이 일어나 회색을 보인 반면 암거배수구에서는 투수성 및 통기성이 증가하여 회색층의 토색이 명갈색을 변화되었고 환원층의 출현 깊이가 깊어지고 점차 층위분화가 진행됨을 확인할 수 있었다. 강우 후 토양 깊이별 수분함량 변화를 분석한 결과 명거배수 처리구의 표토에서는 7일이 경과하여야 토양수분이 30 mm이하로 감소되었으나 20 cm 이하의 깊이에서는 항상 수분이 과잉된 상태로 지속되는 경향을 보였다. 반면 암거 배수 처리구에서는 강우 후 5 일이 경과 후에 토양 30 cm 깊이까지 수분함량이 30 mm 이하로 감소되어 배수개선 효과가 가장 높았다. 따라서 "배수불량"인 경사지 논에서 논둑 밑 1열의 암거배수 시설 설치가 명거배수, 비닐차단막, 관다발 배수방법에 비해 토양의 물리성 개선효과가 높아 밭작물의 안정적인 생산과 농지자원의 이용전환 즉 논을 밭으로 이용해야 하는 범용농지 기반 조성을 위한 저비용의 실용적인 배수개선 방법으로 이용성이 높은 것으로 판단되었다.

경사지 배수불량 논에서 배수개선 효과의 지구통계적 기법을 이용한 평가 (Evaluation of Drainage Improvement Effect Using Geostatistical Analysis in Poorly Drained Sloping Paddy Soil)

  • 정기열;윤을수;박기도;박창영
    • 한국토양비료학회지
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    • 제43권6호
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    • pp.804-811
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    • 2010
  • 경사지 논토양에서 밭작물 재배확대를 위한 합리적인 배수개선 방법을 개발하기 위하여 "배수불량"인 경사지 논토양 (경사 7-15%, 지산통)을 대상으로 배수조건에 따라 "매우불량"인 논 2개 필지, "약간불량"인 논 2개 필지의 논둑아래 기저부에 1열로 명거 (겉도랑 배수), 비닐차단막, 암거 (속도랑 배수), 관다발 등 네 가지 종류의 배수시설을 설치하여 공간상의 위치에 대한 상관관계를 분석하는 지구통계적 방법 (Geostatistical methods)를 이용하여 저비용의 실용적 배수방법을 개발하기 위해 배수개선 방법에 따른 배수개선 효과를 비교 분석하여 다음과 같은 결론을 얻었다. TDR 이용하여 측정한 배수방법별 토양수분함량의 기술통계량을 분석한 결과 배수개선 방법별 평균수분함량은 명거배수 (36.17 mm), 비닐차단막 (32.87 mm), 관다발 (28.71 mm), 암거배수 (23.21 mm) 순으로 낮은 경향을 보였으며, 또한 암거배수 처리구에서의 변이계수가 13.0%로 명거배수 (23.4%), 비닐차단막 (22.2%), 관다발 (15.1%)에 비해 포장 내에서 수분함량이 균일한 것으로 나타났다. 토양수분함량의 이론적 반베리오그램을 분석한 결과 배수등급별 문턱값 (sill)은 배수가 약간불량지에 비해 매우 불량지에서 배수개선 방법별 차이가 뚜렷하였으며, 특히 배수 매우불량지의 암거배수 처리구에서 문턱값은 9.7로 명거배수 (86.2), 비닐차단막 (66.8), 관다발 (15.7)에 비해 낮아 변이가 적고 균일성이 높아 암거배수에 의한 배수개선 효과가 큰 것으로 나타났다. 따라서 "배수불량"인 경사지 논에서는 논둑 밑 1열의 암거배수시설을 설치로 논에서 밭작물의 안정적인 생산과 농지자원의 이용전환 즉 논을 밭으로 이용해야 하는 범용농지 기반조성에 조성을 위한 저비용의 실용적인 배수개선 방법개발에 기여할 것으로 본다.