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MCC-T closed circuit evaporative tower allows to keep process fluids unaltered even in large plants. Some examples of applications: oil & gas, food industries, large paper mills. Easy transport of modules over long distances with reduced costs.
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Some industries need to keep the chemical-physical characteristics of the process fluids unchanged: in these cases, MCC closed-circuit evaporative cooling tower joins the game. Possibility to work in free-cooling mode. MCC-EC version available with electronically controlled fans.
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Orifice plate is installed on pipe line to ensure evolution of fluid cross flow section (by 1 orifice) in order to create calibrated differential pressure loss. The measurement of if by 1 or x pressure taps pair(s) allow to define fluid flow rate. Process norm: NF EN ISO 5167-2, ASME MFC-14M, ASME MFC-3M, ASME PTC 19.5 Construction code: NF EN 13480, RCC-M, ASME, CODETI SPM capability: DN15 to DN1000
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Venturi tube is installed on pipe line to ensure evolution of fluid cross flow section (by convergent, throat, divergent) in order to create calibrated differential pressure loss. The measurement of if by 1 or x pressure taps pair(s) allow to define fluid flow rate. Process norm: NF EN ISO 5167-4, ASME MFC-3M Construction code: NF EN 13480, RCC-M, ASME, CODETI SPM capability: DN25 to DN800
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Flow nozzle is installed on pipe line to ensure evolution of fluid cross flow section (by elliptic profile) in order to create calibrated differential pressure loss. The measurement of if by 1 or x pressure taps pair(s) allow to define fluid flow rate. Process norm: NF EN ISO 5167-3, ASME PTC 6, ASME MFC-3M Construction code: NF EN 13480, RCC-M, ASME, CODETI SPM capability: DN25 to DN1000
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