Novel experimental technique for 3D investigation of high-speed cavitating diesel fuel flows by X-ray micro computed tomography

scientific article published in March 2017

Novel experimental technique for 3D investigation of high-speed cavitating diesel fuel flows by X-ray micro computed tomography is …
instance of (P31):
scholarly articleQ13442814

External links are
P356DOI10.1063/1.4978795
P698PubMed publication ID28372445

P50authorManolis GavaisesQ50615511
Maurizio SantiniQ86844937
P2093author name stringM Lorenzi
N Mitroglou
P2860cites workA Method to Determine the Density of Foods using X-ray ImagingQ35255873
A novel technique for investigation of complete and partial anisotropic wetting on structured surface by X-ray microtomography.Q35569428
Technical Note: spektr 3.0-A computational tool for x-ray spectrum modeling and analysisQ36094116
X-ray detectors for digital radiographyQ39439600
X-ray computed microtomography for drop shape analysis and contact angle measurement.Q46202707
X-Ray Measurements in a Cavitating Centrifugal Pump During Fast Start-UpsQ56932124
Time-resolved X-ray Tomography of Gasoline Direct Injection SpraysQ57601744
EFFECTS OF NONCONDENSABLE GAS ON CAVITATING NOZZLESQ57601748
X-ray Imaging of Cavitation in Diesel InjectorsQ57601756
X-RAY RADIOGRAPHY MEASUREMENTS OF CAVITATING NOZZLE FLOWQ57601760
P433issue3
P304page(s)033706
P577publication date2017-03-01
P1433published inReview of Scientific InstrumentsQ2364002
P1476titleNovel experimental technique for 3D investigation of high-speed cavitating diesel fuel flows by X-ray micro computed tomography
P478volume88

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cites work (P2860)
Q91845341Influence of Diesel Fuel Viscosity on Cavitating Throttle Flow Simulations under Erosive Operation Conditions
Q55002219Turbulence and Cavitation Suppression by Quaternary Ammonium Salt Additives.
Q90374472X-ray Computed Tomography for Flame-Structure Analysis of Laminar Premixed Flames

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