• Title/Summary/Keyword: Cooling Towers Water

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Long-term Relative Humidity Changes on High Temperature Days of Major Cities in Korea for the Recent 37 Years (최근 37년간 우리나라 주요도시의 고온일을 대상으로 한 상대습도의 경년변화)

  • Park, Myung-Hee;Lee, Joon-Soo;Suh, Young-Sang;Han, In-Seng;Hae, Hyun-Gun;Kim, Hae-Dong
    • Journal of Environmental Science International
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    • v.22 no.12
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    • pp.1671-1681
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    • 2013
  • The study selected 10 regions among major Korean cities. Then the study classified the yearly change of relative humidity of those regions for 37 years based on 1996 (from 1974 to 2011) aimed at high temperature days, and examined them by stage regarding daily maximum temperature. For large cities and small cities, in general relative humidity had been likely to increase at high temperatures of $30^{\circ}C$ or over before 1996, whereas it has decreased since 1996. For suburban areas, relative humidity had been prone to diminish before 1996, whereas it has been likely to either increase since 1996 or rarely some of the cities have not shown any change. The increasing tendency of relative humidity before 1996 in large cities and small cities is believed to be because of an increase of the latent heat of vaporization by the supply of steam from cooling towers established in downtown areas. Meanwhile, the decreasing tendency from 1996 is concluded to be caused by the change from counter-current circular cooling towers, which produce a great quantity of steam including arsenic acid, to cross-flow cooling towers, which produce hardly any steam containing arsenic acid. This change was in accordance with the modification and pursuit of an urban planning law that ordered cooling towers that had been installed on rooftops be installed in the basement of buildings in consideration of a "Green network creation" project by the Ministry of Environment, urban beautification, concerns since 1996 over building collapses, and according to an argument that steam containing arsenic acid could be harmful to human health owing to chemicals contained in the water in the cooling tower in summer.

Isolation of the Legionella Species from Specimens of Cooling Tower Water (환경수(냉각탑수)로 부터 Legionella속 균의 분리)

  • Chung, Jong-Hak;Kang, Pock-Soo;Kim, Seok-Bhum;SaKong, Jun
    • Journal of Yeungnam Medical Science
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    • v.5 no.1
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    • pp.77-84
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    • 1988
  • The principal mode of the transmission of Legionnaires disease is a inthalation of the cooling tower water droplets in which Legionellae exist. As a central cooling system is popularized in many public buildings and large buildings nowadays, the number of cooling towers is rapidly increasing. Therefore the possibility of an outbreak of Legionnaires disease is likely increased. To determine the presence of Legionella in cooling tower water as the first step for the prevention of Legionnaires disease, 48 samples of cooling tower water were taken from 24 buildings in Taegu city in july and september 1987. Three samples out of 24 water samples In September yielded Legionella but it was not isolated in the samples of July. Isolated 3 Legionellas were identified as Legionella peumophila. It seems that Legionella from the cooling tower will be isolated more frequently in late summer than early because central cooling system is stopped operation during winter season which is cool. As based on our survey, Legionnaires disease can occur in Taegu city and if it happens it is most likely due to L. pneumophila.

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A Basic Study on the District Cooling System of LNG Cold Thermal Energy (LNG 냉열 에너지의 지역 냉방 시스템에 관한 기반 연구)

  • Kim Chung Kyun
    • Journal of the Korean Institute of Gas
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    • v.7 no.4 s.21
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    • pp.36-43
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    • 2003
  • This paper provides the possibility of the district cooling system by using a LNG cold thermal energy. A liquefied natural gas provides a plenty of cooling source energy during a gasification of a liquefied natural gas. In recent, an ice thermal storage system is used for cooling a building, and a deep water source cooling system has been introduced as a district cooling system in which is used to cool the office towers and other large buildings in old and new downtown. LNG cooling energy refers to the reuse of a large body of naturally cold fluids as a heat sink for process and comfort space cooling as an alternative of conventional, refrigerant based cooling systems. Coincident with significant clean energy and operating cost savings, LNG cold energy cooling system offers radical reductions in air-borne pollutants and the release of environmentally harmful refrigerants in comparison to the conventional air-conditioning system. This study provides useful information on the basic design concepts, environmental considerations and performance related to the application of LNG cold thermal energy.

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Indoor and Outdoor Distribution of Legionella sup and Microbes on Cooling Towers Water of Central Air Conditioning Facilities (중앙집중식 냉방시설의 냉각탑수중 레지오넬라균과 실내외 미생물 분포에 관한 연구)

  • 방선재;이철민;김윤신;선우영
    • Proceedings of the Korea Air Pollution Research Association Conference
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    • 2002.11a
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    • pp.209-211
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    • 2002
  • 실내공기오염을 일으키는 오염물질은 SO$_2$, NOx, 흡연, 먼지 등 여러 종류가 있고, 이것들에 대한 연구는 계속 연구가 진행되고 있으나, 호흡기성 감염을 일으키는 레지오넬라균(Legionella spp), 세균(Bacteria), 진균(Fungus) 등에 대해 실내공기오염 측면에서 다른 연구는 찾아보기 어려운 실정이다. (중략)

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Analyses of Fouling Mechanism using Visualization Techniques in a Lab-scale Plate-Type Heat Exchanging System (실험실용 판형 열교환 시스템에서 가시화를 이용한 파울링 기구 해석)

  • 성순경;서상호;노형운
    • Korean Journal of Air-Conditioning and Refrigeration Engineering
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    • v.16 no.4
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    • pp.349-354
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    • 2004
  • Scale is formed when hard water is heated or cooled in heat transfer equipments such as heat exchangers, condensers, evaporators, cooling towers, boilers, and pipe walls. When the scale deposits in a heat exchanger surface, it is conventionally called fouling. The objective of the present study is to analyze the process of the fouling formation in a heat exchanger according to different types of water using visualization techniques. In order to experimentally investigate the formation of the fouling, this study built a lab-scaled heat exchanging system. Using the visualization techniques of Scanning Electron Microscopy (SEM) and X-Ray diffraction method, the three dimensional configurations of the fouling formation could be successfully obtained. Based on the experimental results, it was found that the configurations of the fouling formation were different when using tap water compared to river water.

Isolation of Legionella from Cooling Tower Water Samples (냉각탑 물에서의 Legionella 분리)

  • Chong, Yun-Sop;Lee, Samuel Y.;Youn, Jung-Koo;Choe, Young-Sook;Chang, Ik-Chin
    • The Journal of the Korean Society for Microbiology
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    • v.21 no.1
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    • pp.107-111
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    • 1986
  • An outbreak of Pontiac fever was reported in Seoul in 1984, but legionnaires disease was not known in Korea yet. Our knowledge on the presence or abscence of Legionella in cooling tower. which is the main source of the infection. is very limited. In this study an attempt was made to determine the presence of Legionella in cooling towers during June-September. and in the sputum specimens for routine bacteria culture, which was taken during July-August 1985. Among the 83 water samples 6 yielded L. pneumophila serogroup 1, while none of the 189 sputum samples yielded growth of Legionella. It is concluded that legionellosis can occur in Korea and if it happens it is most likely due to L. pneumophila serogroup 1.

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COD removal from industrial wastewater plants using reverse osmosis membrane

  • Madaeni, S.S.;Samieirad, S.
    • Membrane and Water Treatment
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    • v.1 no.4
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    • pp.273-282
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    • 2010
  • Treatment and reuse of industrial wastewater is becoming a major goal due to water scarcity. This may be carried out using membrane separation technology in general and reverse osmosis (RO) in particular. In the current study, polyamide (FT-30) membrane was employed for treatment of wastewater obtained from Faraman industrial zone based in Kermanshah (Iran). The effects of operating conditions such as transmembrane pressure, cross flow velocity, temperature and time on water flux and rejection of impurities including COD by the membrane were elucidated. The aim was an improvement in membrane performance. The results indicate that most of the chemical substances are removed from the wastewater. In particular COD removal was increased from 64 to around 100% as temperature increased from 15 to $45^{\circ}C$. The complete COD removal was obtained at transmembrane pressure of 20 bars and cross flow velocity of 1.5 m/s. The treated wastewater may be reused for various applications including makeup water for cooling towers.

Characteristics of wind loading on internal surface and its effect on wind-induced responses of a super-large natural-draught cooling tower

  • Zou, Yun-feng;Fu, Zheng-yi;He, Xu-hui;Jing, Hai-quan;Li, Ling-yao;Niu, Hua-wei;Chen, Zheng-qing
    • Wind and Structures
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    • v.29 no.4
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    • pp.235-246
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    • 2019
  • Wind loading is one of important loadings that should be considered in the design of large hyperbolic natural-draught cooling towers. Both external and internal surfaces of cooling tower are under the action of wind loading for cooling circulating water. In the previous studies, the wind loads on the external surface attracted concernedly attention, while the study on the internal surface was relatively ware. In the present study, the wind pressure on the internal surface of a 220 m high cooling tower is measured through wind tunnel testing, and the effect of ventilation rate of the packing layer on internal pressure is a major concern. The characteristics of internal wind pressure distribution and its effect on wind-induced responses calculated by finite element method are investigated. The results indicate that the wind loading on internal surface of the cooling tower behaves remarkable three-dimensional effect, and the pressure coefficient varies along both of height and circumferential directions. The non-uniformity is particularly strong during the construction stage. Analysis results of the effect of internal pressure on wind-induced responses show that the size and distribution characteristics of internal pressure will have some influence on wind-induced response, however, the outer pressure plays a dominant role in the wind-induced response of cooling tower, and the contribution of internal pressure to the response is small.

Soil Adsorption and Desorption of SKYBIO

  • Chang, Hee-Ra;Kim, Kyun;Kim, Yong-Hwa
    • Proceedings of the Korea Society of Environmental Toocicology Conference
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    • 2003.10a
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    • pp.152-152
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    • 2003
  • The majority of the SKYBIO will be used in the treatment of water in food processing plants, swimming pools and cooling towers, in the manufacture fabric softeners in Australia. Most will eventually be released into domestic sewage system as a consequence of product use. The SKYBIO is not readily biodegradable (0% over 28 days), and is expected to have a low partition coefficient and high water solubility (285 g/L), all indicating that the material would be mobile in both aquatic and terrestrial compartment. The PEC/PNEC ratio for the aquatic environment is 56. This value is significantly greater than 1, indicating an immediate concern to the aquatic compartment. However as a consequence of it's cationic character, the SKYBIO will be expected to associate to negatively charged organic matter in soil and sediment.

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A Comparative Study on the Fouling Characteristics of River and Tap Water in a Heat Exchanging Model (열교환기 모델내 하천수와 시수의 Fouling 특성 비교)

  • Sung, Sun-Kyung;Suh, Sang-Ho;Roh, Hyung-Woon
    • Proceedings of the KSME Conference
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    • 2003.11a
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    • pp.49-54
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    • 2003
  • Scale is formed when hard water is heated or cooled in heat transfer equipments such as heat exchangers, condensers, evaporators, cooling towers, boilers, and pipe walls. When scale deposits in a heat exchanging surface, it is traditionally called fouling. The objective of the present study was to compare the fouling characteristics of river and tap water in a heat exchanging model. FromtheSEM analyses for tap water the $calciteformofCaCO3_{3}$ was formed. For river water, however, the $aragoniteCaCO_{3}$ wasformed.In order to investigate velocity effects on the fouling characteristics in the heat exchanging model, the inlet velocity was varied with 0.5, 1.0 and 1.5 m/s, respectively. The fouling characteristics of river water were quite different from those of tap water. For the case of the 'velocity of 1.5m/s', the overall heat transfer coefficient was reduced up to 26% than that of the 'velocity of 0.5m/s'

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