• Title/Summary/Keyword: Inner water pressure

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파일럿 집광로봇 박스형 압력보상용기 구조설계식 (Structural Design Equation for a Box-shape Pressure Compensated Chamber of Pilot Mining Robot)

  • 이민욱;홍섭;임우철;이태희;최종수
    • 한국해양공학회지
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    • 제26권6호
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    • pp.66-73
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    • 2012
  • A pressure compensated chamber of a pilot mining robot isolates and protects an electrical-electronic system from the ambient highly pressured water. Since the inner pressure of the chamber is compensated with outer water pressure using hydraulic oil and pressure compensator, there exists a pressure difference, less than 1 bar, between outer and inner surface. The structural safety of the chamber is obtained relatively easier than the canister type which inner pressure is kept as the atmospheric pressure. However, due to the adoption of box shape for space efficiency and usage of the transparent engineering plastic viewport for checking inner circumstance, the viewport can be largely deformed. This large deformation can cause an additional tensile force, called the prying force, to the bolt-flange connection parts of the viewport. In this paper, we suggest the structural design equation considering the prying action for designing the structure of a box-shape pressure compensated chamber.

다층구조 Water Gel Barrier의 농도변화에 따른 폭발특성에 대한 실험적 연구 (Experimental Studies of the Explosion Characteristics by Varying Concentrations of a Multi Layered Water Gel Barrier)

  • 하대일;박달재
    • 한국안전학회지
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    • 제34권1호
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    • pp.40-44
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    • 2019
  • Experimental studies have been carried out to investigate characteristics of gas explosion using a multi layered water gel barrier in a vented explosion chamber. The chamber is consisted of 1600 mm in length, with a square cross-section of $100{\times}100mm^2$. The gel concentration of inner layer of MLWGB ranged from 10% to 90% with intervals of 10% by weight of gel. Displacement of the MLWGB was photographed with a measured using a high-speed video camera, and pressure development was measured using a data acquisition system. It was found that MLWGBs with 10 ~ 20% inner layer concentrations were ruptured during the explosions. As the concentrations of inner layer increased from 30% to 90%, the barriers were not ruptured. As the gel concentrations of the inner layer increased, the displacement increased toward the chamber exit and the pressure decreased for the ruptured barriers. It was found that the pressure attenuation obtained from the MLWGB was higher than that of the single water gel barrier. For the cases of non-ruptured barriers, the pressure inside the chamber less increased with increasing gel concentrations of the inner layer. It was also found that the displacement moved back into the chamber for non-ruptured MLWGBs, and it was sensitive to the gel concentrations.

동요하는 탱크의 내부 변동압력 추정에 관한 연구 (On the Prediction of Inner Pressure for the Tank in Rolling Motion)

  • 이승건;서영석
    • 한국항해항만학회지
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    • 제27권5호
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    • pp.459-464
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    • 2003
  • 강제 횡동요 실험을 통하여 동요하는 탱크의 내부압력을 폭정하고, 탱크의 내부압력을 추정하는 간단한 이론식을 제시하였다. 청수로 채워진 사각 탱크를 동요실험에 사용하였으며, 탱크의 안쪽 벽과 바닥에 압력게이지를 설치하여 내부압력의 시간변화량을 측정하였다. 측정된 탱크의 내부압력의 실험값과 이론식을 이용한 계산값을 비교하였다. 횡동요 하는 탱크내부의 압력을 구하기 위해 압력중심을 고려하여 추정하는 방법을 연구하였다.

Influence of burial conditions on the seepage characteristics of uranium bearing loose sandstone

  • Quan Jiang;Mingtao Jia;Yihan Yang;Qi Xu;Chuanfei Zhang;Xiangxue Zhang;Meifang Chen
    • Nuclear Engineering and Technology
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    • 제56권4호
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    • pp.1357-1371
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    • 2024
  • To investigate the influence of different burial conditions on the seepage characteristics of loose sandstone in the leaching mining of sandstone uranium ore, this study applied different ground pressures and water pressures to rock samples at different burial depths to alter the rock's seepage characteristics. The permeability, pore distribution, and particle distribution characteristic parameters were determined, and the results showed that at the same burial depth, ground pressure had a greater effect on the reduction in permeability than water pressure. The patterns and mechanisms are as follows: under the influence of ground pressure, increasing the burial depth compresses the pores in the rock samples, decreases the proportion of effective permeable pores, and causes particle fragmentation, which blocks pore channels, resulting in a decrease in permeability. Under the influence of water pressure, increasing the burial depth expands the pores but also causes hard clay particles to decompose and block pore channels. As the burial depth increases, the particles eventually decompose completely, and the permeability initially decreases and then increases. In this experiment, the relationships between permeability and the proportion of pores larger than 0.15 ㎛ and the proportion of particles smaller than 59 ㎛ were found to be the most significant.

안쪽 축이 회전하는 환형관내 천이유동에 관한 연구 (A Study on the Transitional Flows in a Concentric Annulus with Rotating Inner Cylinder)

  • 김영주;황영규;우남섭
    • 설비공학논문집
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    • 제14권10호
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    • pp.833-843
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    • 2002
  • The present experimental and numerical investigations are performed for the characteristics of transitional flow in a concentric annulus with a diameter ratio of 0.52, whose outer cylinder is stationary and inner one rotating. The pressure losses and skin- friction coefficients have been measured for the fully developed flow of water and glycerine-water solution (44%) with the inner cylinder rotating at speed of 0∼600 nm, respectively. The transitional flow has been examined by the measurement of pressure losses to reveal the relation of the Reynolds and Rossby numbers with the skin-friction coefficients. The occurrence of transition has been checked by the gradient changes of pressure losses and skin-friction coefficients with respect to the Reynolds numbers. The increasing rate of skin-friction coefficient due to the rotation is uniform for laminar flow regime, whereas it is suddenly reduced for transitional flow regime and, then, it is gradually declined for turbulent flow regime.

안쪽축이 회전하는 환형관내 헬리컬 유동장의 실험적연구 (Experimental study on the helical flow field in a concentric annulus with rotating inner cylinders)

  • 황영규;김영주
    • 대한기계학회:학술대회논문집
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    • 대한기계학회 2000년도 춘계학술대회논문집B
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    • pp.631-636
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    • 2000
  • The experimental study concerns the characteristics of a transitional flow in a concentric annulus with a diameter ration of 0.52, whose outer cylinder is stationary and inner one rotating. The pressure drops and skin-friction coefficients have been measured for the fully developed flow of water and that of glycerine-water solution (44%) at a inner cylinder rotational speed of $0{\sim}600$ rpm, respectively. The transitional flow have been examined by the measurement of pressure drops and the visualization of flow field, to reveal the relation of the Reynolds and Rossby numbers with the skin-friction coefficients and to understand the flow instability mechanism. The present results show that the skin-friction coefficients have the significant relation with the Rossby numbers, only for laminar regime. The occurrence of transition has been checked by the gradient changes of pressure drops and skin-friction coefficients with respect to the Reynolds numbers. The increasing rate of skin-friction coefficient due to the rotation is uniform for laminar flow regime, whereas it is suddenly reduced for transitional flow regime and, then, is gradually declined for turbulent flow regime. Consequently, the critical (axial-flow) Reynolds number decreases as the rotational speed increases. Thus, the rotation of inner cylinder promotes the early occurrence of transition due to the excitation of taylor vortices.

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안쪽축이 회전하는 환형관내 헬리컬 유동장의 실험적 연구 (Experimental Study on the Helical Flow Field in a Concentric Annulus with Rotating Inner Cylinders)

  • 황영규;김영주
    • 대한기계학회논문집B
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    • 제24권6호
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    • pp.822-833
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    • 2000
  • This experimental study concerns the characteristics of a transitional flow in a concentric annulus with a diameter ratio of 0.52, whose outer cylinder is stationary and inner one rotating. The pressure drops and skin-friction coefficients have been measured for the fully developed flow of water and that of glycerine-water solution (44%) at a inner cylinder rotational speed of $0{\sim}600$ rpm, respectively. The transitional flow has been examined by the measurement of pressure drops and the visualization of flow field, to reveal the relation of the Reynolds and Rossby numbers with the skin-friction coefficients and to understand the flow instability mechanism. The present results show that the skin-friction coefficients have the significant relation with the Rossby numbers, only for laminar regime. The occurrence of transition has been checked by the gradient changes of pressure drops and skin-friction coefficients with respect to the Reynolds numbers. The increasing rate of skin-friction coefficient due to the rotation is uniform for laminar flow regime, whereas it is suddenly reduced for transitional flow regime and, then, it is gradually declined for turbulent flow regime. Consequently, the critical (axial-flow) Reynolds number decreases as the rotational speed increases. Thus, the rotation of inner cylinder promotes the early occurrence of transition due to the excitation of taylor vortices.

Water/Oil/Water 다중유화의 안정성과 약물 방출: 외부 수상에 포함된 글루코즈에 의한 삼투압 조절 효과 (Stabilization and Drug Release of Water/Oil/Water Multiple Emulsions : Effect of Glucose in the Outer Aqueous Phase on Osmotic Pressure Reduction)

  • 유영태;임은정;김태윤;김동철
    • 공업화학
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    • 제8권5호
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    • pp.715-721
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    • 1997
  • $W_1/O/W_2$ 다중유화의 내부수상($W_1$)에 전해질인 $MgSO_4$를 모델약물로 주입하여 안정성과 약물방출 거동을 현미경관찰, 점도 및 전도도의 변화를 통해 관찰하였다. 내상에 약물을 도입함으로써 내부와 외부수상간의 삼투압차를 유발하여 다중유화계의 불안정성을 초래하였으며 이를 완화하기 위하여 외부수상($W_2$)에 글루코즈를 첨가하여 효과를 살펴본 결과 글루코즈의 유효삼투압 당량이 내부에 포함된 약물의 삼투압 당량과 유사해짐에 따라 안정성이 향상되었을 뿐아니라 초기 약물방출 속도도 글루코즈 농도에 의해 조절할 수 있음을 발견하였다. 이는 삼투압차에 의한 수분 이동시 친수성 계면활성제를 동반하여 내부수상/오일상 계면을 파괴하는 것을 방지하기 때문으로 보인다. 또한 이와같은 현상은 오일상이 cetostearyl alcohol에 의하여 친수화되었을 때 뚜렷하게 나타났다.

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Hydro-mechanical interaction of reinforced concrete lining in hydraulic pressure tunnel

  • Wu, He-Gao;Zhou, Li;Su, Kai;Zhou, Ya-Feng;Wen, Xi-Yu
    • Structural Engineering and Mechanics
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    • 제71권6호
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    • pp.699-712
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    • 2019
  • The reinforced concrete lining of hydraulic pressure tunnels tends to crack under high inner water pressure (IWP), which results in the inner water exosmosis along cracks and involves typical hydro-mechanical interaction. This study aims at the development, validation and application of an indirect-coupled method to simulate the lining cracking process. Based on the concrete damage plasticity (CDP) model, the utility routine GETVRM and the user subroutine USDFLD in the finite element code ABAQUS is employed to calculate and adjust the secondary hydraulic conductivity according to the material damage and the plastic volume strain. The friction-contact method (FCM) is introduced to track the lining-rock interface behavior. Compared with the traditional node-shared method (NSM) model, the FCM model is more feasible to simulate the lining cracking process. The number of cracks and the reinforcement stress can be significantly reduced, which matches well with the observed results in engineering practices. Moreover, the damage evolution of reinforced concrete lining can be effectively slowed down. This numerical method provides an insight into the cracking process of reinforced concrete lining in hydraulic pressure tunnels.

한국산 생약제들의 혈압강하작용에 대한 연구(III) -박달수피의 혈압에 대한 작용- (Effect of Betula schmidtii Regel on Blood Pressure)

  • 이종화;김인순;김옥려;조병헌;조규철
    • 생약학회지
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    • 제10권3호
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    • pp.125-135
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    • 1979
  • This study was undertaken to search for a new antihypertensive or hypotensive agents in natural crude products in Korea. Betula schmidtii Regel, a tree belonging to the Betulaceae family, is cultivated for the most part of our country, and their cortecies or tree milk has been used as folk remedy, which exerted good antiinflammatory effect on rheumatic fever, arthritis or rheumatism. The rats were treated with several extracts from Betula schmidtii Regel, that is, extracts of water, methanol from inner cortecies, extracts of ether, methanol, hexane, chloroform or butanol from outer and total cortecies. In this experiment, we measured the blood pressure and heart rate in anesthetized rats, and atropine, diphenhydramine, phentolamine, propranolol, epinephrine, hexamethonium and hydralazine were pretreated prior to Betula extracts to clarify the mechanism of the hypotensive action. The results of the experiment were as follows; 1. BOIE(Betula outer cortex water-insoluble extract) and BICE(Betula inner cortex chloroform extract) elevated the blood pressure and heart rate. 2. BIME(Betula inner cortex methanol extract), BIBE(Betula inner cortex butanol extract) and BIWE (Betula inner cortex water extract) significantly lowered the blood pressure and heart rate. 3. With the pretreatment of hydralazine, the hypotensive effect of Betula schmidtii Regel was significantly blocked. From the above results, it is suggested that the hypotensive effect of Betula schmidtii Regel is due to the direct vasodilation of blood vessel.

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