• 제목/요약/키워드: Pool water

검색결과 544건 처리시간 0.026초

2019년 여름철 제주해협에서 관측된 중층 저온수의 분포와 기원 (Distribution and Origin of the Mid-depth Cold Water Pools Observed in the Jeju Strait in the Summer of 2019)

  • 유도협;김종규;최병주
    • 한국해양학회지:바다
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    • 제28권1호
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    • pp.19-40
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    • 2023
  • 여름철 제주해협 물성 분포의 특성과 제주해협 수괴가 연안에 미치는 영향을 확인하기 위하여 2019년 6월, 7월, 8월에 완도와 제주도 사이에서 수온과 염분을 관측하였다. 여름철 계절 수온약층 아래에서 15℃의 저온수가 관측되었으며, 이 저온수는 관측시기에 따라 다르지만 수심이 깊은 제주해협 남쪽 골보다는 주로 제주해협 중앙의 중층과 북쪽 사면에 분포하였다. 이 저온수를 구성하는 근원 수괴를 알아보기 위하여 제주해협에서 관측된 해수를 구성하는 주변 근원 수괴들의 혼합비(mixing ratio)를 계산하였다. 여름철 제주해협 중앙 중층과 북쪽 사면에 나타나는 저온수는 평균적으로 쿠로시오 아표층수가 54% 그리고 황해저층냉수가 33% 비율로 혼합된 해수였다. 이 중층 저온수는 제주해협 전 수층에서 가장 낮은 수온을 갖는 해수임에도 상대적으로 고온고염인 쿠로시오아표층수가 큰 구성비율을 갖고 있다. 중층 저온수가 제주해협에서 가장 낮은 수온의 분포를 갖게 된 이유는 다른 제주해협 해수에 비해 황해저층냉수의 기여도가 높기 때문이다. 제주해협 중층 저온수의 기원을 살펴보기 위하여 황해, 동중국해, 대한해협에서 2019년 여름철에 관측한 광역 수온과 염분 자료를 분석하였다. 제주도 남서쪽 동중국해 계절 수온약층 아래에서 쿠로시오 기원의 해수와 황해저층냉수가 열염전선을 형성하였고, 이 열염전선을 가로지르는 수괴의 관입에 의해 해수의 혼합이 발생하였다. 동중국해에서 형성된 이 혼합수는 제주해협에서 관측된 중층 저온수와 거의 같은 혼합비율을 가졌다. 이런 결과들을 종합하였을 때 제주해협에서 여름철에 관측된 중층 저온수는 동중국해에서 쿠로시오 아표층수와 황해저층냉수의 혼합으로 만들어진 저온수가 해류를 따라 이동한 것이다. 제주해협 중앙과 북쪽 사면으로 이동한 중층 저온수는 제주해협 중앙의 중층에서 수온역전을 만들고, 한국 남해안 연안의 표층 수온 변동에도 큰 영향을 미친다.

지리산 주변 산지하천의 step-pool 구조 특성 (Characteristics of step-pool structure in the mountain streams around Mt. Jiri)

  • 김기흥;정혜련
    • 한국수자원학회논문집
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    • 제51권4호
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    • pp.313-322
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    • 2018
  • Step의 높이는 하상재료 입경의 크기와 거의 같은 상관관계가 있으며, 하도경사에 따라 증가하고, 하도 폭과 step 파장은 거의 같은 크기로서 하도경사가 증가하면 step 파장은 감소하는 것으로 분석되었다. 하도 폭과 step 폭은 뚜렷한 상관관계가 있으며, 하도 폭의 증가에 따라 step 폭도 증가하는 것으로 분석되었다. 또한, step 파장은 하도 폭에 의하여 규모가 정해지고, step 높이는 step을 형성하는 암석의 크기에 의해 지배되기 때문에 step-pool의 종단면의 하상구조는 하도경사에 따라 변화하는 것으로 판단된다. Pool의 규모는 하도 폭, 입경 및 하도경사와 상관성이 큰 것을 확인하였다. 따라서 하천의 step-pool 구조 특성은 다양한 인자들의 영향을 받지만 대표적으로 입경, 하도 폭 및 하도경사로서 설명할 수 있는 것으로 분석되었다.

알칼리 금속염을 함유한 미분무수의 헵탄 Pool Fire 소화 (Extinguishment of n-heptane Pool Fire by Water Mist Containing Alkali Metal Agent)

  • 박재만;신창섭
    • 한국안전학회지
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    • 제20권3호
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    • pp.105-111
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    • 2005
  • An experimental study is performed for extinguishing of n-heptane pool fire by water mist containing potassium acetate as a fire suppression additive. Water mist was generated by a single pressure nozzle in a small-scale chamber. The drop size distribution of water mist was measured using laser diffraction(Malvern particle sizer). The flame temperature, oxygen concentration and carbon monoxide concentration were measured. In case of using additives, the fire extinguishing time was shorter than that of pure water at a given discharge pressure and it was because the momentum of a water droplet containing additives was increased. And also dissociated metal atoms, potassium, were reacted as a scavenger of the major radical species OH, H which were generated for combustion process. Moreover, at a high pressure of 4MPa, the fire was extinguished through blowing effect as well as primary extinguishing mechanisms.

수영장 활동공간 내 유해인자 노출특성 연구 (Characteristics of Exposure Distribution to Hazard Factors in Indoor Swimming Pool Activity Areas in Gwangju)

  • 이윤국;김난희;최영섭;김선정;박주현;강유미;배석진;서계원;김종민
    • 한국환경보건학회지
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    • 제46권2호
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    • pp.150-158
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    • 2020
  • Objective: This study is designed to measure the concentration of DBPs (disinfection by-products) in pool water and in air and to estimate the carcinogenic potential through the evaluation of inhalation exposure. Methods: The subjects were six indoor swimming pools with many users in Gwangju. Samples of pool water and indoor air were taken every one month from August 2018 to August 2019 and analyzed for eight swimming pool standards. Three-liter air samples were collected and the VOCs were analyzed using GC/MS directly connected to thermal desorption. Results: pH was 6.8-7.5 and the concentration of free residual chlorine in pool water was 0.40-0.96 ?/ℓ. Physicochemical test items such as KMnO4 consumption and heavy metal items such as Aluminum met existing pool hygiene standards. No VOC materials were detected except for the DBPs. The concentration of THMs in the pool water was 11.05-41.77 ㎍/L and the THMs mainly consist of Chloroform (63-97%) and BDCM (3-31%). The concentration of indoor air THMs is 13.24-32.48 ㎍/㎥ and consists of Chloroform. The results of carcinogenic assessment of chloroform in the indoor swimming pool via inhalation exposure were 2.0 to 6.4 times higher than the 'acceptable risk level' suggested by the US EPA. Conclusions: The concentration of THMs in the pool water is 11.05-41.77 ㎍/L, most of which is chloroform. In addition, the concentration of indoor air THMs is 13.24-32.48 ㎍/㎥. The result of carcinogenic assessment of chloroform was 2.0 to 6.4 times higher than the 'acceptable risk level' suggested by the US EPA.

CFD ANALYSIS OF TURBULENT JET BEHAVIOR INDUCED BY A STEAM JET DISCHARGED THROUGH A VERTICAL UPWARD SINGLE HOLE IN A SUBCOOLED WATER POOL

  • Kang, Hyung-Seok;Song, Chul-Hwa
    • Nuclear Engineering and Technology
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    • 제42권4호
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    • pp.382-393
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    • 2010
  • Thermal mixing by steam jets in a pool is dominantly influenced by a turbulent water jet generated by the condensing steam jets, and the proper prediction of this turbulent jet behavior is critical for the pool mixing analysis. A turbulent jet flow induced by a steam jet discharged through a vertical upward single hole into a subcooled water pool was subjected to computational fluid dynamics (CFD) analysis. Based on the small-scale test data derived under a horizontal steam discharging condition, this analysis was performed to validate a CFD method of analysis previously developed for condensing jet-induced pool mixing phenomena. In previous validation work, the CFD results and the test data for a limited range of radial and axial directions were compared in terms of profiles of the turbulent jet velocity and temperature. Furthermore, the behavior of the turbulent jet induced by the steam jet through a horizontal single hole in a subcooled water pool failed to show the exact axisymmetric flow pattern with regards to an overall pool mixing, whereas the CFD analysis was done with an axisymmetric grid model. Therefore, another new small-scale test was conducted under a vertical upward steam discharging condition. The purpose of this test was to generate the velocity and temperature profiles of the turbulent jet by expanding the measurement ranges from the jet center to a location at about 5% of $U_m$ and 10 cm to 30 cm from the exit of the discharge nozzle. The results of the new CFD analysis show that the recommended CFD model of the high turbulent intensity of 40% for the turbulent jet and the fine mesh grid model can accurately predict the test results within an error rate of about 10%. In this work, the turbulent jet model, which is used to simply predict the temperature and velocity profiles along the axial and radial directions by means of the empirical correlations and Tollmien's theory was improved on the basis of the new test data. The results validate the CFD model of analysis. Furthermore, the turbulent jet model developed in this study can be used to analyze pool thermal mixing when an ellipsoidal steam jet is discharged under a high steam mass flux in a subcooled water pool.

나노유체 이용한 풀비등 임계열유속 증가에서 나노입자 유착물의 영향에 관한 실험적 연구 (Experimental study on the role of nanoparticle deposition in pool boiling CHF enhancement using nanofluids)

  • 김형대;김선태;안호선;김무환
    • 대한기계학회:학술대회논문집
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    • 대한기계학회 2007년도 춘계학술대회B
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    • pp.1906-1911
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    • 2007
  • It has been well known that pool boiling CHF in nanofluids compared to pure water significantly increase due to the deposition of nanoparticles on heater surface. This study concerns the characteristics of the nanoparticle deposition layer and its influence on CHF. Pool boiling experiments were carried out with 0.01vol.% water-$TiO_2$ nanofluids to obtain various nanoparticle-deposited heaters. CHF on the prepared heaters was measured during pool boiling in pure water. The heater surfaces were visualized using scanning electron microscope (SEM) and also characterized using contact angle and capillarity. The results showed that the CHF enhancement in nanofluids was completely dependent upon the structural and physicochemical characteristics of the nanoparticle deposition layer.

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초음파 측정법을 이용한 정상상태의 푸울비등 연구 (Stydy of Pool Boiling under Steady State using Ultrasonic Measurement)

  • 장길홍
    • 한국해양공학회지
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    • 제6권2호
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    • pp.35-40
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    • 1992
  • A recently developed new technique for measuring the fraction of wetted area has applied to pool boiling of water. The basis of the new applied technique of ultrasonic makes use of the reflection of ultrasonic from the vapour surface to measure the fraction of wetted area values. The results are the measured fraction of wetted area values in nucleate and transition boiling and the pool boiling curve for water under steady state conditions. The measurement of this paper shows a fraction of wetted areaf around 0.98 at the critical heat flux for water.

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CHARACTERIZATION OF POOL-RIFFLE SEQUENCES IN SOLUTE TRANSPORT MODELING OF STREAMS

  • Seo, Il-Won;Yu, Dae-young
    • Water Engineering Research
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    • 제1권3호
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    • pp.171-185
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    • 2000
  • A mathematical model to adequately predict complex mixing characteristics of sorptive polluants in natural streams with pools-and-riffes has been developed. In this model, sorption of pollutants onto the bed sediment as well as mass storage and exchange in the storage zones were incorporated into one-dimensional mass balance equatins. The geometric and hydraulic characteristics of the pool-riffle sequences were properly conceptualized. Simulations with parameters of pool-and-riffle streams better fit the measured data in overall shape and peak concentration than simulations with parameters for uniform channels. The analyses on the characteristics of the storage zone model parameters reveal that a linear relationship between the logrithm of the storage zone volume ratio and a function of the friction factor exists. A linear relatiohship might also be tenatively assumed between the logarithm of the dimensionless mass exchange coefficient and the logarithm of the aspect ratio of the storage zone if some of the high values of the dimensionless mass exchange coefficient collected on the successive bed forms are excluded.

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Pressure Wave Propagation in the Discharge Piping with Water Pool

  • Bang Young S.;Seul Kwang W.;Kim In-Goo
    • Nuclear Engineering and Technology
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    • 제36권4호
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    • pp.285-294
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    • 2004
  • Pressure wave propagation in the discharge piping with a sparger submerged in a water pool, following the opening of a safety relief valve, is analyzed. To predict the pressure transient behavior, a RELAP5/MOD3 code is used. The applicability of the RELAP5 code and the adequacy of the present modeling scheme are confirmed by simulating the applicable experiment on a water hammer with voiding. As a base case, the modeling scheme was used to calculate the wave propagation inside a vertical pipe with sparger holes and submerged within a water pool. In addition, the effects on wave propagation of geometric factors, such as the loss coefficient, the pipe configuration, and the subdivision of sparger pipe, are investigated. The effects of inflow conditions, such as water slug inflow and the slow opening of a safety relief valve are also examined.

대구지역 수영장 이용자의 피부와 눈 관련증상 경험률 (Self-reported Skin and Eye Symptoms among Swimming Pool Users in Daegu, Korea)

  • 류승민;박소희;박재우;신덕용;전만중;사공준
    • 한국환경보건학회지
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    • 제38권4호
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    • pp.340-350
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    • 2012
  • Objectives: This study was conducted to investigate skin and eye symptoms according to swimming pool user characteristics and chlorine concentration at indoor swimming pools in the Daegu region. Methods: A total of 296 swimming pool users were enrolled from the eight swimming pools randomly chosen in Daegu. Each user completed a self-administered questionnaire with general, swimming related, and symptoms suffered throughout December 2008 to August 2009. The water analysis of swimming pools was substituted with the swimming pool water analysis practiced by district offices to 2008. Results: There were significant differences in experience rate of self-reported skin and eye symptoms between coaches and students except dander. The users of swimming pools having higher chlorine concentrations suffered from more frequent skin and eye symptoms. The results of multiple logistic regression analysis for experience of skin symptoms showed that coaches (OR = 6.81, 95% CI: 2.46~18.81) and pools with chlorine concentrations over 0.4 mg/l (OR = 1.75, 95% CI: 1.01~3.03) were the significant variables. For experience of eye symptoms, coaches (OR = 4.13, 95% CI: 1.25~13.69) at a swimming pool was the significant variable. Conclusions: Increased exposure to swimming pool water and exposure to swimming pool showed that higher chlorine concentration may cause more frequent skin and eye symptoms.