The use of non-metal materials in the filler units of cooling towers with circulating water supply system
The design of cooling tower`s filler unit, consisting of inclined-corrugated contact elements, and made of polymer material, is developed and described in this research paper. The experimental studies were conducted to determine the efficiency of cooling the circulating water in the proposed cooling...
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Published in: | MATEC web of conferences Vol. 315; p. 3002 |
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Abstract | The design of cooling tower`s filler unit, consisting of inclined-corrugated contact elements, and made of polymer material, is developed and described in this research paper. The experimental studies were conducted to determine the efficiency of cooling the circulating water in the proposed cooling tower. The authors obtained the results of evaluating the heat-mass transfer efficiency coefficient of cooling tower, when changing the mass flow rates of liquid and gas phases. The research results showed that the highest efficiency of cooling the circulating water is observed at relatively low irrigation densities equal to 15-25 m
3
/(m
2
·h), while the heat-mass transfer efficiency of cooling tower achieves 72%.The use of non-metal materials as the main elements of cooling tower allows to abandon the use of chemical reagents against bacteria and microorganisms in favor of circulating water ozonation method. |
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AbstractList | The design of cooling tower`s filler unit, consisting of inclined-corrugated contact elements, and made of polymer material, is developed and described in this research paper. The experimental studies were conducted to determine the efficiency of cooling the circulating water in the proposed cooling tower. The authors obtained the results of evaluating the heat-mass transfer efficiency coefficient of cooling tower, when changing the mass flow rates of liquid and gas phases. The research results showed that the highest efficiency of cooling the circulating water is observed at relatively low irrigation densities equal to 15-25 m3/(m2·h), while the heat-mass transfer efficiency of cooling tower achieves 72%.The use of non-metal materials as the main elements of cooling tower allows to abandon the use of chemical reagents against bacteria and microorganisms in favor of circulating water ozonation method. The design of cooling tower`s filler unit, consisting of inclined-corrugated contact elements, and made of polymer material, is developed and described in this research paper. The experimental studies were conducted to determine the efficiency of cooling the circulating water in the proposed cooling tower. The authors obtained the results of evaluating the heat-mass transfer efficiency coefficient of cooling tower, when changing the mass flow rates of liquid and gas phases. The research results showed that the highest efficiency of cooling the circulating water is observed at relatively low irrigation densities equal to 15-25 m 3 /(m 2 ·h), while the heat-mass transfer efficiency of cooling tower achieves 72%.The use of non-metal materials as the main elements of cooling tower allows to abandon the use of chemical reagents against bacteria and microorganisms in favor of circulating water ozonation method. |
Author | Dmitriev, Andrey V. Madyshev, Ilnur N. Khafizova, Aliya I. |
Author_xml | – sequence: 1 givenname: Andrey V. surname: Dmitriev fullname: Dmitriev, Andrey V. – sequence: 2 givenname: Ilnur N. surname: Madyshev fullname: Madyshev, Ilnur N. – sequence: 3 givenname: Aliya I. surname: Khafizova fullname: Khafizova, Aliya I. |
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Cites_doi | 10.1016/j.ijheatmasstransfer.2018.05.040 10.1088/1755-1315/288/1/012110 10.1007/s10556-010-9230-z 10.1007/978-3-030-19868-8_54 10.1088/1755-1315/288/1/012089 10.1007/s10556-017-0288-8 10.1051/matecconf/201824300011 10.1007/s10891-017-1612-z 10.1007/s10556-014-9889-7 10.1007/978-3-030-19868-8_53 10.1007/s10556-017-0358-y 10.1007/s10556-009-9209-9 10.1007/978-3-030-19868-8_61 10.1088/1755-1315/115/1/012017 10.1007/s10556-007-0116-7 10.1007/s10556-017-0285-y 10.1007/s10556-013-9663-2 10.1051/e3sconf/201912600031 10.1007/s10556-017-0371-1 10.1007/s10556-016-0189-2 10.1088/1755-1315/288/1/012106 10.1051/matecconf/201711508006 |
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References | Merentsov (R11) 2019; 983 Merentsov (R17) 2019; 1278 Dmitrieva (R20) 2017; 90 Golovanchikov (R26) 2019; 983 Moshkarin (R23) 2006; 2 Madyshev (R22) 2019; 126 Dmitriev (R14) 2017; 53 Merentsov (R3) 2019; 983 Ivanov (R5) 2009; 45 R27 Boev (R1) 2009; 45 Kuznetsov (R10) 2018; 126 Merentsov (R16) 2018; 243 R28 Merentsov (R18) 2018; 115 R2 Shilyaev (R9) 2017; 115 Afanasenko (R21) 2007; 43 Laptev (R29) 2004; 51 Golovanchikov (R7) 2019; 288 Golovanchikov (R19) 2017; 53 Sokolov (R25) 2017; 53 Madyshev (R15) 2016; 52 Iskandarova (R4) 2014; 165 Chizh (R24) 2014; 50 Persidskiy (R12) 2019; 288 Merentsov (R6) 2019; 288 Dmitriev (R13) 2017; 53 Golovanchikov (R8) 2013; 48 |
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SubjectTerms | Cooling Cooling rate Cooling towers Efficiency Mass flow rate Mass transfer Microorganisms Reagents Scientific papers Vapor phases Water circulation Water supply |
Title | The use of non-metal materials in the filler units of cooling towers with circulating water supply system |
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