• Title/Summary/Keyword: piezometric head

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Waterhammer Analysis for Low Head Irrigation Pipeline Systems (저압 농용 관수로 시스템의 수격압 해석)

  • 강민구
    • Magazine of the Korean Society of Agricultural Engineers
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    • v.41 no.5
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    • pp.77-85
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    • 1999
  • Irrigation pipeline systems have been recently adopted for irrigation purposes, which was thought to improve irrigation efficiencies. However, if hydraulic characteristics are not evaluated in designing , overpressure due to waterhammer may occur and result in serious problems. Therefore, in this study a model was formulated to simulate unsteady motion of water in a pipeline resulting from valve closure, the applicability of the model owas tested with fiedld data, and the results showed good agreement in maximum piezometric head. Also, simulated maximum piezometric head was compared with designed piezometric head computed by empirical method, and maximum piezometric head in a pipeline resulting from valve closure was simulated and analyzed with varing surge tank's position and diameter.

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An Analysis of the Relationships between Quantity and Drawdown at the Onyang Hot Spring Area (온양온천지구에서의 양수량-수위강하 관계 해석)

  • Jeong, Ji-Gon;Lee, Chol-Woo
    • The Journal of Engineering Geology
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    • v.17 no.2 s.52
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    • pp.177-185
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    • 2007
  • Most of hot springs don't spring out naturally but are pumped by submersible pumps in Korea. When pumped piezometric head in a well is dropped with proportion to quantity. This research investigates relationships between quantity and drawdown at the Onyang hot spring area. There are 38 wells at this area and the depths of wells range from 124 m to 303 m. Piezometric heads of 4 wells were observed for about 10 months. Fluctuation patterns of piezometric heads seem to be a sine curve with a you period by a high demand and a slack season. Drawdowns of fluctuations were about 98-139 m depth to water table when wells were pumped at $2,300-4,800m^3/day$. A equation was made through analyzing quantity and drawdown.

Analysis of Monitoring Data Obtained from Three Boreholes in Haengbok (Sejong) City for Geothermal Resources Develoment (지열자원 이용을 위한 행정중심복합도시내 3개 지하수공 모니터링 해석)

  • Lee, Chol-Woo
    • 한국신재생에너지학회:학술대회논문집
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    • 2007.06a
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    • pp.445-448
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    • 2007
  • Three boreholes (BE-1, BE-2 and BE-3) were drilled for geothermal resources development in Haengbok (Sejong) city. Monitoring of temperature, electric conductivity (EC) and piezometric head were carried out at each borehole. Temperatures were measured at 10 m depth, it ranges from 13.22$^{\cdot}C$ to 14.4$^{\cdot}C$. EC of BE-1 and BE-3 declined with time because groundwater flowed in boreholes. Barometric efficiency was analysed by piezometric head of groundwater and atmospheric pressure, it ranges from 44.8% to 71.5%. These parameters can be used for a geothermal modeling.

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Quantity Evaluation of Hot Spring at Onyang Spa Area (온양온천지구에서의 온천수 수량평가)

  • Lee, Chol-Woo
    • 한국신재생에너지학회:학술대회논문집
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    • 2006.06a
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    • pp.438-441
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    • 2006
  • The groundwater level was originally above the surface at the Onyang spa area. However, it is now 98-138m depth below the surface deu to the artificial pumping from boreholes. The fluctuations of the piezometric head were observed in 4 boreholes. Transmissivity estimated from the pumping rate and the drawdown is about $577.51 m^2/day$ The transmissivity of Onyang spa area is much larger than common values of fractured aqui for the drawdown of the piezometric head by artificial pumping is widely spreaded out in that area. The drawdown related to each pumping rate was analyzed and the formula between drawdown and pumping rate was made by a regression analysis. The formula can be applied for the condition of enough groundwater flowing into the Onyang spa area

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Relation between Hydraulic Properties and Growth of Rice in Poorly Drained Paddy Soils (습답(濕畓)에서 수리특성(水理特性)과 수도생육(水稻生育)과의 관계(關係))

  • Park, Chang-Seo;Im, Jeong-Nam;Ryu, Kwan-Sik
    • Korean Journal of Soil Science and Fertilizer
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    • v.14 no.4
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    • pp.185-189
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    • 1982
  • Piezometric head, soil temperature, and redox potential were investigated to identify the factors causing the poor growth of rice in poorly drained paddy soils. 1. In local valleys the variegated piezometric head difference was observed place to place and resulted in uneven growth of rice while nearly uniform head difference was observed in alluvial plains. 2. Direction of water flow in paddy soils seemed to develop a significant difference in soil temperature and plant growth. 3. Negative correlation between piezometric head and rice growth and/or yiled was observed, and yield was decreased with the increase of upward flow of water. 4. There was a positive correlation between soil temperature and rice growth and/or yield. Cold temperature below $20^{\circ}C$ retarded significantly the plant growth and rice plant, at $16^{\circ}C$, could not grow.

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Experiment on Piping in Pervious Foundation (투수성(透水性) 기초지반(基礎地盤)의 Piping에 관(關)한 실험(實驗))

  • Kwon, Moo Nam;Lee, Sang Ho
    • Current Research on Agriculture and Life Sciences
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    • v.3
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    • pp.44-54
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    • 1985
  • In order to determine the critical head values of boiling and piping, several experiments were performed for 3 cases of model dykes on 7 kinds of pervious foundations. The results obtained are as follows : 1. It appears that the coarser and the denser the foundation material, the higher the critical heads of boiling and piping, and that the lower the permeability of the foundation, the higher the critical heads of boiling and piping. 2. A difference in head between the moments of boiling and piping is greater in the case 2 or case 3 than in the case 1 because of the additional hydraulic resistance. And it is found that the coarser the foundation material, the greater the head difference. 3. The critical heads of boiling and piping is directly prortional to the seepage length. 4. The piezometric heads close to the singular point are of the same magnitude, provided that the geometry of the model dyke and foundation material are the same. 5. Variations of the weight of model dyke can not affect the critical head. According to the conclusions shown above, the critical head of piping can be more practically predicted for prototype using the results from laboratory tests on scale model.

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Analysis of Seepage Behavior of Bottom Protection Layer by Filed Monitoring (계측관리를 통한 방조제 바닥보호공의 침투거동분석)

  • Kang, Byung-Yoon;Oh, Young-In;Kim, Ki-Nyeon;Kim, Hyun-Tae
    • Proceedings of the Korean Geotechical Society Conference
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    • 2008.10a
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    • pp.806-813
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    • 2008
  • In this research, mainly research about the structural and functional stability of sea dyke with variation of seepage condition after final closure. The piezometric head (water head in embankment) monitoring system was installed at two representative final closure section. The dredged fine sand filling condition was evaluated by in-situ test results. Also, the numerical analysis was performed to determine the permeability of bottom protection layer filled with dredged fine sand by monitoring results. According to numerical back analysis results, the coefficient of permeability of bottom protection section of is $7.6{\times}10^{-6}$ m/sec. These results are noted that the bottom protection layer of sea dyke was strong and intensively filled with dredged sand. Also, based on the seepage analysis, the seepage flux of this sea dyke was calculated about $2.42m^3$/day/m which is 29% decreased value compare with adjacent sea dyke.

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Return flow analysis of paddy field by water balance method (물수지분석 기법에 의한 논에서의 회귀율 조사분석)

  • 정상옥;손성호
    • Magazine of the Korean Society of Agricultural Engineers
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    • v.43 no.2
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    • pp.59-68
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    • 2001
  • A water balance analysis was performed for a paddy field neighboring the Dongchang stream, downstream of the Unmun reservoir, which is constructed for the urban water supply. Daily rainfall data were collected and irrigation water flow rate, drainage flow rate, evaportranspiration, infiltration, and piezometeric head were measured in the field. The flow rates were continuously observed by water level logger during the growing season. The evaportranspiration and the infiltration were measured by N-type depletion meter and cylindrical infiltrometer, respectively. PVC pipes with 12mm diameter were used for piezometric head measurement. Total Irrigation and drainage flows were 3,608mm and 1,170mm in 1999, and 3,971mm and 1,548mm in 2000, respectively. The mean and range of the daily infiltration rate were 4.4mm/d and 3.4mm/d to 5.5mm/d in 1999 and 5.1mm/d and 4.1mm/d to 6.5mm/d in 2000, respectively. The net ground water flow including the change of soil water storage was 2,855mm in 1999 and 2,540mm in 2000. The evapotranspiration was 458.3mm in 1999 and 553.5mm in 2000. The range of daily evapotranspiration rate was from 1.6 to 8.7mm/d. The return flow ratio was about 32% in 1999 and 39% in 2000 and three year average was 35% including previous study in 1997. The amount of irrigation water was much higher than design standards or references in this study, This was caused by the inadequate water management practice in the area where water was oversupplied on farmers’ request rather than following sound water management principles.

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Experimental and numerical investigation of closure time during artificial ground freezing with vertical flow

  • Jin, Hyunwoo;Go, Gyu-Hyun;Ryu, Byung Hyun;Lee, Jangguen
    • Geomechanics and Engineering
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    • v.27 no.5
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    • pp.433-445
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    • 2021
  • Artificial ground freezing (AGF) is a commonly used geotechnical support technique that can be applied in any soil type and has low environmental impact. Experimental and numerical investigations have been conducted to optimize AGF for application in diverse scenarios. Precise simulation of groundwater flow is crucial to improving the reliability these investigations' results. Previous experimental research has mostly considered horizontal seepage flow, which does not allow accurate calculation of the groundwater flow velocity due to spatial variation of the piezometric head. This study adopted vertical seepage flow-which can maintain a constant cross-sectional area-to eliminate the limitations of using horizontal seepage flow. The closure time is a measure of the time taken for an impermeable layer to begin to form, this being the time for a frozen soil-ice wall to start forming adjacent to the freeze pipes; this is of great importance to applied AGF. This study reports verification of the reliability of our experimental apparatus and measurement system using only water, because temperature data could be measured while freezing was observed visually. Subsequent experimental AFG tests with saturated sandy soil were also performed. From the experimental results, a method of estimating closure time is proposed using the inflection point in the thermal conductivity difference between pore water and pore ice. It is expected that this estimation method will be highly applicable in the field. A further parametric study assessed factors influencing the closure time using a two-dimensional coupled thermo-hydraulic numerical analysis model that can simulate the AGF of saturated sandy soil considering groundwater flow. It shows that the closure time is affected by factors such as hydraulic gradient, unfrozen permeability, particle thermal conductivity, and freezing temperature. Among these factors, changes in the unfrozen permeability and particle thermal conductivity have less effect on the formation of frozen soil-ice walls when the freezing temperature is sufficiently low.