See the notice on TED website
1. Beschaffer
1.1.
Beschaffer
Offizielle Bezeichnung: Aarhus Universitet
2. Verfahren
2.1.
Verfahren
Titel: Turnkey Filtered Rayleigh Scattering (FRS) System for the combined measurement of pressure, temperature and three-component velocity field in gaseous flows
Beschreibung: Aarhus University intends to award a contract without prior publication pursuant to section 80(3)(2) and section 80(4) of the Danish Public Procurement Act, cf. Article 32(2)(b)(ii) of Directive 2014/24/EU, on the basis that the required supplies and services can only be provided by one particular economic operator due to an absence of competition for technical reasons. Aarhus University has assessed that no reasonable alternative or substitute exists, and that the absence of competition is not the result of an artificial narrowing of the parameters of the procurement. The intended contract concerns the delivery of a complete turnkey Filtered Rayleigh Scattering (FRS) system for laser-based diagnostics in gaseous flows. The system is required for quantitative planar measurements of pressure, temperature and three-component velocity information in a measurement region of up to 100 mm × 100 mm. The required system must comprise, as one integrated measurement chain, a frequency-tunable narrow-linewidth laser source at approximately 532 nm, high-precision wavelength measurement and stabilisation, iodine-based molecular filtering, beam delivery and light-sheet optics, multi-perspective imaging from nine viewing directions, perspective calibration, control and data acquisition functionality, installation, commissioning, documentation, training and acceptance testing. The decisive requirement is not the supply of individual optical, laser, imaging or software components, but the delivery of a complete and operational FRS measurement system where one supplier assumes responsibility for the integration, calibration, commissioning and verified performance of the complete measurement chain. FRS measurements depend on the combined and synchronised performance of laser frequency control, molecular filter transmission, optical alignment, light-sheet formation, imaging geometry, calibration and data acquisition. These elements are technically interdependent and jointly determine whether the system can produce usable calibrated data for pressure, temperature and three-component velocity evaluation. In Aarhus University’s assessment, procuring individual components from several suppliers would not constitute a reasonable alternative or substitute, as it would not provide a supplier with overall responsibility for the integration, calibration, commissioning and verified performance of the required operational FRS functionality. Based on Aarhus University’s technical and market assessment, ILA R&D GmbH is the only economic operator identified as capable of delivering the required complete turnkey FRS system and assuming responsibility for its overall functionality. Other suppliers considered may be able to provide individual components or related optical flow-diagnostic systems, such as lasers, wavelength meters, cameras, optical components, PIV/PTV, LDV, LIF, BOS, Rayleigh/scalar imaging or software interfaces. However, Aarhus University has not identified a reasonable alternative or substitute capable of delivering the specific integrated FRS solution required, including iodine-filtered FRS, frequency-scanning and single-frequency operation, nine-perspective imaging, perspective calibration and acceptance testing of the complete system. Aarhus University therefore considers that the intended direct award is justified by the absence of competition for technical reasons. The absence of competition results from the technical requirements of the intended FRS measurement concept and the need for one supplier to deliver and take responsibility for the complete integrated system, and not from an artificial narrowing of the parameters of the procurement.
Kennung des Verfahrens: 2a70b216-7eb6-4f96-b673-f79135dcfcb1
Interne Kennung: b60d573f-5f3b-44a5-bdcf-b70af651cf95
Verfahrensart: Sonstiges einstufiges Verfahren
2.1.1.
Zweck
Art des Auftrags: Lieferleistungen
Zusätzliche Art des Auftrags: Dienstleistungen
Haupteinstufung (cpv): 38000000 Laborgeräte, optische Geräte und Präzisionsgeräte (außer Gläser)
2.1.2.
Erfüllungsort
Land, Gliederung (NUTS): Østjylland (DK042)
Land: Dänemark
2.1.4.
Allgemeine Informationen
Rechtsgrundlage:
Richtlinie 2014/24/EU
5. Los
5.1.
Los: LOT-0000
Titel: Turnkey Filtered Rayleigh Scattering (FRS) System for the combined measurement of pressure, temperature and three-component velocity field in gaseous flows
Beschreibung: Aarhus University intends to award a contract without prior publication pursuant to section 80(3)(2) and section 80(4) of the Danish Public Procurement Act, cf. Article 32(2)(b)(ii) of Directive 2014/24/EU, on the basis that the required supplies and services can only be provided by one particular economic operator due to an absence of competition for technical reasons. Aarhus University has assessed that no reasonable alternative or substitute exists, and that the absence of competition is not the result of an artificial narrowing of the parameters of the procurement. The intended contract concerns the delivery of a complete turnkey Filtered Rayleigh Scattering (FRS) system for laser-based diagnostics in gaseous flows. The system is required for quantitative planar measurements of pressure, temperature and three-component velocity information in a measurement region of up to 100 mm × 100 mm. The required system must comprise, as one integrated measurement chain, a frequency-tunable narrow-linewidth laser source at approximately 532 nm, high-precision wavelength measurement and stabilisation, iodine-based molecular filtering, beam delivery and light-sheet optics, multi-perspective imaging from nine viewing directions, perspective calibration, control and data acquisition functionality, installation, commissioning, documentation, training and acceptance testing. The decisive requirement is not the supply of individual optical, laser, imaging or software components, but the delivery of a complete and operational FRS measurement system where one supplier assumes responsibility for the integration, calibration, commissioning and verified performance of the complete measurement chain. FRS measurements depend on the combined and synchronised performance of laser frequency control, molecular filter transmission, optical alignment, light-sheet formation, imaging geometry, calibration and data acquisition. These elements are technically interdependent and jointly determine whether the system can produce usable calibrated data for pressure, temperature and three-component velocity evaluation. In Aarhus University’s assessment, procuring individual components from several suppliers would not constitute a reasonable alternative or substitute, as it would not provide a supplier with overall responsibility for the integration, calibration, commissioning and verified performance of the required operational FRS functionality. Based on Aarhus University’s technical and market assessment, ILA R&D GmbH is the only economic operator identified as capable of delivering the required complete turnkey FRS system and assuming responsibility for its overall functionality. Other suppliers considered may be able to provide individual components or related optical flow-diagnostic systems, such as lasers, wavelength meters, cameras, optical components, PIV/PTV, LDV, LIF, BOS, Rayleigh/scalar imaging or software interfaces. However, Aarhus University has not identified a reasonable alternative or substitute capable of delivering the specific integrated FRS solution required, including iodine-filtered FRS, frequency-scanning and single-frequency operation, nine-perspective imaging, perspective calibration and acceptance testing of the complete system. Aarhus University therefore considers that the intended direct award is justified by the absence of competition for technical reasons. The absence of competition results from the technical requirements of the intended FRS measurement concept and the need for one supplier to deliver and take responsibility for the complete integrated system, and not from an artificial narrowing of the parameters of the procurement.
Interne Kennung: c12b72ec-1b7c-41fd-9e0a-27381da894d3
5.1.1.
Zweck
Art des Auftrags: Lieferleistungen
Zusätzliche Art des Auftrags: Dienstleistungen
Haupteinstufung (cpv): 38000000 Laborgeräte, optische Geräte und Präzisionsgeräte (außer Gläser)
Menge: 1
5.1.2.
Erfüllungsort
Land, Gliederung (NUTS): Østjylland (DK042)
Land: Dänemark
5.1.6.
Allgemeine Informationen
Auftragsvergabeprojekt nicht aus EU-Mitteln finanziert
Die Beschaffung fällt unter das Übereinkommen über das öffentliche Beschaffungswesen: ja
5.1.15.
Techniken
Rahmenvereinbarung:
Keine Rahmenvereinbarung
Informationen über das dynamische Beschaffungssystem:
Kein dynamisches Beschaffungssystem
5.1.16.
Weitere Informationen, Schlichtung und Nachprüfung
Überprüfungsstelle: Klagenævnet for udbud
Organisation, die weitere Informationen für die Nachprüfungsverfahren bereitstellt: Konkurrence- og Forbrugerstyrelsen
6. Ergebnisse
6.1.
Ergebnis, Los-– Kennung: LOT-0000
6.1.2.
Informationen über die Gewinner
Wettbewerbsgewinner:
Offizielle Bezeichnung: ILA R&D GmbH
Angebot:
Kennung des Angebots: 2026-0997703, 2026.06 - § 80 - Turnkey Filtered Rayleigh Scattering (FRS) System for the combined measurement of pressure, temperature and three-component velocity field in gaseous flows
Kennung des Loses oder der Gruppe von Losen: LOT-0000
Wert des Angebots: 389 432,56 EUR
Informationen zum Auftrag:
Kennung des Auftrags: 2026-0997703, 2026.06 - § 80 - Turnkey Filtered Rayleigh Scattering (FRS) System for the combined measurement of pressure, temperature and three-component velocity field in gaseous flows
8. Organisationen
8.1.
ORG-0001
Offizielle Bezeichnung: Aarhus Universitet
Registrierungsnummer: 31119103
Postanschrift: Nordre Ringgade 1
Stadt: Aarhus C
Postleitzahl: 8000
Land, Gliederung (NUTS): Østjylland (DK042)
Land: Dänemark
Kontaktperson: Kevin Lousen
Telefon: 93508932
Rollen dieser Organisation:
Beschaffer
8.1.
ORG-0002
Offizielle Bezeichnung: Klagenævnet for udbud
Registrierungsnummer: 37795526
Postanschrift: Toldboden 2
Stadt: Viborg
Postleitzahl: 8800
Land, Gliederung (NUTS): Vestjylland (DK041)
Land: Dänemark
Kontaktperson: Klagenævnet for udbud
Telefon: +45 72405708
Rollen dieser Organisation:
Überprüfungsstelle
8.1.
ORG-0003
Offizielle Bezeichnung: Konkurrence- og Forbrugerstyrelsen
Registrierungsnummer: 10294819
Postanschrift: Carl Jacobsens Vej 35
Stadt: Valby
Postleitzahl: 2500
Land, Gliederung (NUTS): Byen København (DK011)
Land: Dänemark
Kontaktperson: Konkurrence- og Forbrugerstyrelsen
Telefon: +45 41715000
Rollen dieser Organisation:
Organisation, die weitere Informationen für die Nachprüfungsverfahren bereitstellt
8.1.
ORG-0004
Offizielle Bezeichnung: ILA R&D GmbH
Registrierungsnummer: DE305230497
Postanschrift: Rudolf-Schulten-Str. 3
Stadt: Jülich
Postleitzahl: 52428
Land, Gliederung (NUTS): Düren (DEA26)
Land: Deutschland
Rollen dieser Organisation:
Bieter
Gewinner dieser Lose: LOT-0000
8.1.
ORG-0005
Offizielle Bezeichnung: Mercell Holding ASA
Registrierungsnummer: 980921565
Postanschrift: Askekroken 11
Stadt: Oslo
Postleitzahl: 0277
Land, Gliederung (NUTS): Oslo (NO081)
Land: Norwegen
Kontaktperson: eSender
Telefon: +47 21018800
Fax: +47 21018801
Rollen dieser Organisation:
TED eSender
Informationen zur Bekanntmachung
Kennung/Fassung der Bekanntmachung: dee0855d-8d7c-471a-8db5-7ac62cdb28ac - 01
Formulartyp: Vorankündigung – Direktvergabe
Art der Bekanntmachung: Freiwillige Ex-ante-Transparenzbekanntmachung
Unterart der Bekanntmachung: 25
Datum der Übermittlung der Bekanntmachung: 13/08/2026 15:33:08 (UTC+00:00) Westeuropäische Zeit, GMT
Bekanntmachung — eSender-Übermittlungsdatum: 13/08/2026 15:33:27 (UTC+00:00) Westeuropäische Zeit, GMT
Sprachen, in denen diese Bekanntmachung offiziell verfügbar ist: Englisch
Veröffentlichungsnummer der Bekanntmachung: 569289-2026
ABl. S – Nummer der Ausgabe: 157/2026
Datum der Veröffentlichung: 17/08/2026