Capacity Estimation of Circulating Water-Cooling Systems Equipped with Polymeric Fills under Film Flow Conditions
A calculation method is presented for determining the capacity of small-scale cooling towers equipped with polymeric fills under film flow conditions, for establishing the geometric dimensions and relative position of polymeric fibers comprising the mesh frame, as well as ascertaining the specific f...
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Veröffentlicht in: | Chemical and petroleum engineering 2022-07, Vol.58 (3-4), p.323-327 |
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description | A calculation method is presented for determining the capacity of small-scale cooling towers equipped with polymeric fills under film flow conditions, for establishing the geometric dimensions and relative position of polymeric fibers comprising the mesh frame, as well as ascertaining the specific flow rate and the cooling tower capacity at which film flow conditions are provided. The presented dependences indicate that a smaller cell size in the fill pack improves the mass flow rate of the liquid to be cooled, which, however, increases the mass of the fill per unit volume of the cooling tower. In addition, it is noted that the reduced size of individual fill cells leads to a rise in the aerodynamic drag coefficient that is proportional to the specific flow rate. |
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In addition, it is noted that the reduced size of individual fill cells leads to a rise in the aerodynamic drag coefficient that is proportional to the specific flow rate.</description><subject>Aerodynamic drag</subject><subject>Chemistry</subject><subject>Chemistry and Materials Science</subject><subject>Cooling systems</subject><subject>Cooling towers</subject><subject>Drag coefficients</subject><subject>Geotechnical Engineering & Applied Earth Sciences</subject><subject>Industrial Chemistry/Chemical Engineering</subject><subject>Industrial Pollution Prevention</subject><subject>Mass flow rate</subject><subject>Mineral Resources</subject><subject>Polymer films</subject><subject>Size reduction</subject><subject>Water circulation</subject><issn>0009-2355</issn><issn>1573-8329</issn><fulltext>true</fulltext><rsrctype>article</rsrctype><creationdate>2022</creationdate><recordtype>article</recordtype><recordid>eNp9kU9r3DAQxUVJoZs0X6AnQU45KBnJf7R7DGY3DQRampYchSKPtgq25ZVkkv32leNCyaUn6Q2_NzPSI-QLhysOIK8jh6qqGQjBgMOmZPCBrHglC7YuxOaErABgw0RRVZ_IaYzPs5RCrMih0aM2Lh3pNibX6-T8QL2ljQtm6rIc9vRRJwys8b6b1cMxJuwj3R4mN47Y0heXftPvvjv2GJyhO9d1kU5Di2G-93TX-Rfa-KF1c_P4mXy0uot4_vc8I79225_NV3b_7fauublnRsgisQ1IwNZaNGtttOW2yg_BvDRa0fISeGUNWMufeFlDRviTKdvaQCFhzevaFmfkYuk7Bn-YMCb17Kcw5JFKSKgFrOuSZ-pqofa6Q-UG61PI84xusXfGD2hdrt9IXnFZylJkw-U7Q2YSvqa9nmJUdw8_3rNiYU3wMQa0agz5j8NRcVBzbmrJTeXc1FtuCrKpWEwxw8Mew7-9_-P6A8lDmx0</recordid><startdate>20220701</startdate><enddate>20220701</enddate><creator>Bondar, K. 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subjects | Aerodynamic drag Chemistry Chemistry and Materials Science Cooling systems Cooling towers Drag coefficients Geotechnical Engineering & Applied Earth Sciences Industrial Chemistry/Chemical Engineering Industrial Pollution Prevention Mass flow rate Mineral Resources Polymer films Size reduction Water circulation |
title | Capacity Estimation of Circulating Water-Cooling Systems Equipped with Polymeric Fills under Film Flow Conditions |
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