Procurement Summary
Country : Czech Republic
Summary : Bio Ccsu: Module for Measuring and Regulating the Parameters of Separation Processes, Repeated Input
Deadline : 15 Jul 2020
Other Information
Notice Type : Tender
TOT Ref.No.: 43505784
Document Ref. No. : 281154-2020
Competition : ICB
Financier : Self Financed
Purchaser Ownership : -
Tender Value : Refer Document
Purchaser's Detail
Purchaser : INSTITUTE OF THERMOMECHANICS AS CR, V.V.I.
Address: Dolejškova 1402/5
Town: Prague
NUTS-Code: CZ010 - Capital City of Prague
Postal Code: 182 00
Contact Point: Otidea avz, s.r.o., IČ: 04682378, with its registered office at Thámova 681/32, 186 00 Prague 8, CZECH REPUBLIC
Phone: +420 732181247
Czech Republic
Email :miroslav.knob@otidea.cz
URL :https://www.it.cas.cz/
Tender Details
Document Type: Contract notice
Title: Bio CCSu: Module for measuring and regulating the parameters of separation processes, repeated input
Reference Number: 2020 / S 116-281154
Contract Type: Supplies
Estimated Value: 1315970.00 - CZK
Description: "Module for measuring and regulating the parameters of separation processes".
Equipment within the module for measuring and regulating the parameters of separation processes is needed for the design and implementation of experimental research of condensation processes in expansion mist chambers and for the development of a prototype condensing separator. When implementing condensation processes, it is necessary to accurately measure the parameters of the experiment so that the resulting experimental data are reliably comparable with theoretical models. The main monitored variables include accurate measurement and regulation of flow rates of individual fluids through experimental apparatus (eg argon, nitrogen, supercritical CO2, or liquid water and water vapor). The composition of a given gas mixture can be defined from the precise measurement of flows as well as temperatures and pressures. Gas flows will be measured and regulated using Corriolis flow meters and proportional valves. Flow meters will be used both for control measurements of flow rate, but mainly in conjunction with control ...
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