Procurement Summary
Country : Canada
Summary : Water Tunnel Facility
Deadline : 25 Apr 2025
Other Information
Notice Type : Tender
TOT Ref.No.: 116726758
Document Ref. No. : AE 02-25-1046
Financier : Self Financed
Purchaser Ownership : Public
Tender Value : Refer Document
Purchaser's Detail
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Login to see detailsTender Details
McMaster University invites qualified bidders to submit responses for the supply of a water tunnel facility in accordance with the terms of this Request for Proposals.This experimental research grade water tunnel facility will be dedicated to investigating the interaction of unsteady and turbulentflows with energy systems. In particular, investigation of unsteady loading and flow physics pertaining to bluff bodies and compliant structures in unsteady turbulent flows; development of dynamical models for unsteady turbulent flow which leverage data driven approaches; novel investigation ofphysics-inspired methods for adaptive control which integrate model reduction techniques for system health sensor training (smart systems).The essential capabilities of the water tunnel infrastructure supporting the research activities encompass the capacity to experimentally generate incoming flowunsteadiness/turbulence, achieving of flow speeds relevant to industrial applications, and interfacing a testing section with optically clear access for measurement techniques such as Particle Image Velocimetry (PIV) enabling direct velocity measurements in the flow.Bidders must quote the entire bid.Partial bids will not be accepted.
Solicitation Type : RFP - Request for Proposal (Formal)
Reference Number : 0000289971
Location : Canada, Ontario, Hamilton-Niagara Peninsula
Description : McMaster University invites qualified bidders to submit responses for the supply of a water tunnel facility in accordance with the terms of thisRequest for Proposals.This experimental research grade water tunnel facility will be dedicated to investigating the interaction of unsteady and turbulent flows with energy systems. In particular, investigation of unsteady loading and flow physics pertaining to bluff bodies and compliant structures inunsteady turbulent flows; development of dynamical models for unsteady turbulent flow which leverage data driven approaches; novel investigation of physics-inspired methods for adaptive control which integrate model reduction techniques for system health sensor training (smart systems).The essentialcapabilities of the water tunnel infrastructure supporting the research activities encompass the capacity to experimentally generate incoming flow unsteadiness/turbulence, achieving of flow speeds relevant to industrial applications, and interfacing a testing section with optically clear access formeasurement techniques such as Particle Image Velocimetry (PIV) enabling direct velocity measurements in the flow.Bidders must quote the entire bid. Partial bids will not beaccepted.
Documents
Tender Notice