Matches in SemOpenAlex for { <https://semopenalex.org/work/W2595387134> ?p ?o ?g. }
- W2595387134 endingPage "426" @default.
- W2595387134 startingPage "416" @default.
- W2595387134 abstract "Horizontal oil-water two-phase flows present complex temporal and spatial structures. The cross-correlation analysis of the flow structures is of significance for uncovering the nonlinear dynamics of the oil-water flows. In this study, we first employ a detrended cross-correlation analysis (DCCA) method to investigate the cross-correlation characteristics of two series generated by two-component ARFIMA processes with an adjustable coupling strength. On this basis, to avoid spuriously high cross-correlations caused by noises, we conduct an anti-noise study applying a detrended partial cross-correlation analysis (DPCCA) to ARFIMA processes mixed with periodic signal, stochastic signal and chaotic signal, respectively. It’s found that the DPCCA can effectively reveal the intrinsic cross-correlations of coupled series. Through carrying out an experiment of horizontal oil-water two-phase flows, the upstream and downstream flow information is collected by a conductance cross-correlation velocity probe. The DPCCA algorithm is used to calculate the multi-scale cross-correlation coefficient of the upstream and downstream flow structures. The results indicate that the DPCCA cross-correlation coefficient is very sensitive to the dynamics of the oil-water interfacial wave and the entrained droplets, and can serve as an effective indicator of horizontal oil-water two-phase flow structures." @default.
- W2595387134 created "2017-03-23" @default.
- W2595387134 creator A5028903449 @default.
- W2595387134 creator A5034296209 @default.
- W2595387134 creator A5034297632 @default.
- W2595387134 creator A5058125661 @default.
- W2595387134 creator A5087361329 @default.
- W2595387134 date "2017-07-01" @default.
- W2595387134 modified "2023-09-23" @default.
- W2595387134 title "Cross-correlation analysis of interfacial wave and droplet entrainment in horizontal liquid-liquid two-phase flows" @default.
- W2595387134 cites W1562608595 @default.
- W2595387134 cites W1580532505 @default.
- W2595387134 cites W1969361665 @default.
- W2595387134 cites W1975839788 @default.
- W2595387134 cites W1983423327 @default.
- W2595387134 cites W1984536837 @default.
- W2595387134 cites W1985758640 @default.
- W2595387134 cites W1992196873 @default.
- W2595387134 cites W1994529101 @default.
- W2595387134 cites W1996143601 @default.
- W2595387134 cites W1996476093 @default.
- W2595387134 cites W2000095219 @default.
- W2595387134 cites W2001787006 @default.
- W2595387134 cites W2006376811 @default.
- W2595387134 cites W2013454735 @default.
- W2595387134 cites W2016030275 @default.
- W2595387134 cites W2018509194 @default.
- W2595387134 cites W2020741274 @default.
- W2595387134 cites W2032757757 @default.
- W2595387134 cites W2036280280 @default.
- W2595387134 cites W2041782669 @default.
- W2595387134 cites W2044401944 @default.
- W2595387134 cites W2049359114 @default.
- W2595387134 cites W2050955621 @default.
- W2595387134 cites W2061550223 @default.
- W2595387134 cites W2064704855 @default.
- W2595387134 cites W2071044018 @default.
- W2595387134 cites W2071602085 @default.
- W2595387134 cites W2074845166 @default.
- W2595387134 cites W2079790369 @default.
- W2595387134 cites W2083278075 @default.
- W2595387134 cites W2086239189 @default.
- W2595387134 cites W2087829439 @default.
- W2595387134 cites W2088510049 @default.
- W2595387134 cites W2089409887 @default.
- W2595387134 cites W2093446113 @default.
- W2595387134 cites W2096023955 @default.
- W2595387134 cites W2103484453 @default.
- W2595387134 cites W2112119637 @default.
- W2595387134 cites W2113114335 @default.
- W2595387134 cites W2150415890 @default.
- W2595387134 cites W2166186596 @default.
- W2595387134 cites W2169283584 @default.
- W2595387134 cites W2169581378 @default.
- W2595387134 cites W2221831393 @default.
- W2595387134 cites W2224635927 @default.
- W2595387134 cites W2266274788 @default.
- W2595387134 cites W2275590662 @default.
- W2595387134 cites W2296605199 @default.
- W2595387134 cites W2399753402 @default.
- W2595387134 cites W2509776346 @default.
- W2595387134 cites W2548527114 @default.
- W2595387134 cites W2552875454 @default.
- W2595387134 cites W3101912922 @default.
- W2595387134 cites W3103696671 @default.
- W2595387134 cites W3121341136 @default.
- W2595387134 cites W4242671632 @default.
- W2595387134 cites W960438465 @default.
- W2595387134 doi "https://doi.org/10.1016/j.cej.2017.03.044" @default.
- W2595387134 hasPublicationYear "2017" @default.
- W2595387134 type Work @default.
- W2595387134 sameAs 2595387134 @default.
- W2595387134 citedByCount "26" @default.
- W2595387134 countsByYear W25953871342018 @default.
- W2595387134 countsByYear W25953871342019 @default.
- W2595387134 countsByYear W25953871342020 @default.
- W2595387134 countsByYear W25953871342021 @default.
- W2595387134 countsByYear W25953871342022 @default.
- W2595387134 countsByYear W25953871342023 @default.
- W2595387134 crossrefType "journal-article" @default.
- W2595387134 hasAuthorship W2595387134A5028903449 @default.
- W2595387134 hasAuthorship W2595387134A5034296209 @default.
- W2595387134 hasAuthorship W2595387134A5034297632 @default.
- W2595387134 hasAuthorship W2595387134A5058125661 @default.
- W2595387134 hasAuthorship W2595387134A5087361329 @default.
- W2595387134 hasConcept C105795698 @default.
- W2595387134 hasConcept C121332964 @default.
- W2595387134 hasConcept C121864883 @default.
- W2595387134 hasConcept C134306372 @default.
- W2595387134 hasConcept C144308804 @default.
- W2595387134 hasConcept C163018871 @default.
- W2595387134 hasConcept C2780092901 @default.
- W2595387134 hasConcept C33923547 @default.
- W2595387134 hasConcept C38349280 @default.
- W2595387134 hasConcept C5297727 @default.
- W2595387134 hasConcept C57879066 @default.
- W2595387134 hasConceptScore W2595387134C105795698 @default.
- W2595387134 hasConceptScore W2595387134C121332964 @default.