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51.
In this work we use in the simulation of a viscoelastic turbulent channel flow a modification of the finitely extensible of non-linear elastic dumbbells with the Peterlin approximation (FENE-P) constitutive model for dilute polymer solutions, applicable to high extensional deformations. The new feature introduced by this modification is that the free energy of the polymer (since it is assumed to be entirely entropically driven) remains always bounded (FENE-PB). The characteristics of the model under steady shear flow, pure elongational flow and transient extensional behavior are presented. It is found that the FENE-PB model is more shear thinning than FENE-P. Most importantly, it also shows a higher extensional viscosity than the FENE-P model. Although the steady-state Trouton ratio asymptotically reaches at high extensional rates the same limit as the FENE-P model, the transition from the Newtonian value is sharper and faster. We use the FENE-PB model in direct numerical simulations (DNS) of viscoelastic turbulent channel flow using spectral approximations. The results for various statistics of the flow and the polymer conformation, when compared against those obtained with the original FENE-P model and the same rheological parameters, show an enhanced polymer-induced drag reduction effect and enhanced deformation of the polymer molecules. This indicates that it is not only the asymptotic but also details from the extensional rheological behavior that matter in quantitatively specifying turbulent viscoelastic flow behavior. 相似文献
52.
53.
Gaurab Samanta Geoffrey Oxberry Antony N. Beris Robert Handler Kostas Housiadas 《PAMM》2007,7(1):2100085-2100086
Earlier work [1, 2], using Karhunen-Loeve (K-L) analysis, demonstrated a dramatic enhancement of the importance of large scale motions with increased viscoelasticity and an equally dramatic decrease in the K-L dimension of the flow (an order of magnitude) as viscoelasticity increases versus similar Newtonian results. In this work we look into dynamics of viscoelastic turbulent flows by projecting the DNS data in time into a selected set of K-L modes. The dynamics of the coherent structures embedded in turbulent flows were investigated through calculations of mode auto and cross correlations. This allows for a more systematic examination of the role of large-scale structures in turbulence and drag reduction. (© 2008 WILEY-VCH Verlag GmbH & Co. KGaA, Weinheim) 相似文献
54.
We identify a novel phenomenon in distinct (namely non-identical) coupled chaotic systems, which we term dynamical hysteresis.
This behavior, which appears to be universal, is defined in terms of the system dynamics (quantified for example through the
Lyapunov exponents), and arises from the presence of at least two coexisting stable attractors over a finite range of coupling,
with a change of stability outside this range. Further characterization via mutual synchronization indices reveals that one
attractor corresponds to spatially synchronized oscillators, while the other corresponds to desynchronized oscillators. Dynamical
hysteresis may thus help to understand critical aspects of the dynamical behavior of complex biological systems, e.g. seizures
in the epileptic brain can be viewed as transitions between different dynamical phases caused by time dependence in the brain’s
internal coupling. 相似文献
55.
56.
In this paper new symplectic-schemes for the numerical solution of the radial Shrödinger equation are proposed. In particular, symplectic integrators for Hamiltonian systems have been developed. Based on this approach, second- and third-order methods are proposed. These methods are more accurate than the existing ones. We compare these methods not only with the existing symplectic methods, but also with a classical Runge–Kutta–Nyström method. 相似文献
57.
Pappa-Louisi A Nikitas P Zisi C Papachristos K 《Journal of separation science》2008,31(16-17):2953-2961
The combined effect of temperature, T, and organic modifier concentration, phi, on the retention under gradient conditions in RPLC is studied by considering, both theoretically and experimentally gradients, of phi at constant T and gradients of T at constant phi. Two approaches are examined: in the first approach the prediction of the elution time of a sample solute is based on the isocratic/isothermal properties of this solute. The second approach is based on a direct fitting procedure of a proper retention model to 2-D isocratic/T-gradient or isothermal/phi-gradient retention data. These approaches were tested using alkylbenzes in eluting systems modified by ACN. We found that both approaches can give excellent predictions under certain prerequisites. However, the first approach exhibits the notable advantage that it can be used effectively to predict retention times under any kind of phi-gradients at constant T or T-gradients at constant phi. The second approach has the advantage that it is relatively simple but its applicability is very restricted since its predictions are satisfactory only if the gradients are of the same kind with those used in the fitting procedure and the conditions lie within those used for fitting. 相似文献
58.
Dr. Christos K. Nitsos Dr. Polykarpos A. Lazaridis Prof. Astrid Mach-Aigner Prof. Kostas A. Matis Prof. Konstantinos S. Triantafyllidis 《ChemSusChem》2019,12(6):1179-1195
Acetone and ethanol extraction of lignin deposits from the surface of hydrothermally (liquid hot water) pretreated beech wood biomass alleviates the lignin inhibitory effects during enzymatic hydrolysis of cellulose to glucose and boosts the enzymatic digestibility to high values (≈70 %). Characterization of the extracted lignins (FTIR, pyrolysis/GC–MS, differential thermogravimetry, gel permeation chromatography) indicated high purity, low molecular weight, and features that suggest that it consists mainly of fragments of the native wood lignin partially depolymerized and recondensed on the biomass surface during the hydrothermal pretreatment. The pyrolysis products of the extracted surface lignins suggest their high potential as a feedstock for the production of high added value phenolic compounds. When the enzymatic hydrolysis of the pretreated and extracted biomass solids was assisted by mild wet milling, near complete cellulose digestibility (≥95 %) could be achieved. In the context of the biorefinery and whole-biomass valorization concept, it was also shown that the hydrothermally (hemicellulose-deficient) pretreated and delignified biomass solids could be also successfully used for the production of crude cellulase from Trichoderma reesei cultures, providing a simple and low-cost method for the complementary production of cellulases by utilizing fractions of the integrated hydrolysis process. 相似文献
59.
George Z. Kyzas Eleni A. Deliyanni Kostas A. Matis Nikolaos K. Lazaridis Dimitrios N. Bikiaris Athanasios C. Mitropoulos 《Composite Interfaces》2018,25(5-7):415-454
AbstractBiomedicine and pharmacy identify highly important scientific fields within the present time. However, increased advancements in these sciences have influenced the identification of increased levels in environmental degradation through pollution. Pharmaceutical production has influenced increased scientific and public concern regarding the increasing rate of pollution attributed to high levels of toxicological properties within the products. Pharmaceutical compounds are not fully removed through the integration of wastewater treatment plants (WWTP). This renders pharmaceutical compounds, municipal effluents together with hospitals as the major culprits in the development of the majority of the sources that enhance environmental degradation. A wide range of the compounds have been the identified within WWTP effluents, surface water together with ground and drinking water on a global scale. All above has influenced the research development in technological field developing new ways for efficient removal of pharmaceuticals from wastewater produced from the pharmaceuticals or biomedical industries. This situation may be altered through the utilization of adsorbents. Therefore more studies have been published investigating the use of nanocomposite biomaterials for removing the pharmaceutical compounds existing in biomedical effluents. 相似文献
60.
Sophia Mitkidou Evagelia Dimitrakoudi Dushka Urem-Kotsou Despina Papadopoulou Kostas Kotsakis John A. Stratis Ioulia Stephanidou-Stephanatou 《Mikrochimica acta》2008,160(4):493-498
Organic residues associated with Neolithic pottery from two Late Neolithic sites, Paliambela and Makriyalos (Northern Greece),
were analyzed by gas chromatography-mass spectrometry. The study aimed at identifying the origin of the tar used for waterproofing
and gluing broken pots. Reference tars were prepared in laboratory conditions by pyrolysis of the bark from three tree species,
namely from Betula pendula (silver birch), Ostrya carpinifolia (hop hornbeam) and Carpinus orientalis (Eastern hornbeam). The results suggest that mostly birch bark tar was used as glue for fixing broken pieces of the pots
as well as for waterproofing close-shaped vessels. None of the archaeological tars derived from the two hornbeams. The analysis
shows certain variability in the composition of birch bark tar, which is related to the production technique and to the re-use
of tar. Of particular interest is the presence of characteristic diterpenoid biomarkers in several samples, which indicates
that pine pitch was used for gluing and pine resin for waterproofing vessels for liquids.
Correspondence: Sophia Mitkidou, Department of Science, School of Technological Applications, Technological Institute of Kavala,
Greece 相似文献