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1.
Rev Sci Instrum ; 89(7): 075103, 2018 Jul.
Artigo em Inglês | MEDLINE | ID: mdl-30068123

RESUMO

A new experimental facility has been designed and constructed to study driven granular media in a low-gravity environment. This versatile instrument, fully automatized, with a modular design based on several interchangeable experimental cells, allows us to investigate research topics ranging from dilute to dense regimes of granular media such as granular gas, segregation, convection, sound propagation, jamming, and rheology-all without the disturbance by gravitational stresses active on Earth. Here, we present the main parameters, protocols, and performance characteristics of the instrument. The current scientific objectives are then briefly described and, as a proof of concept, some first selected results obtained in low gravity during parabolic flight campaigns are presented.

2.
Phys Rev E ; 97(2-1): 020101, 2018 Feb.
Artigo em Inglês | MEDLINE | ID: mdl-29548230

RESUMO

In the modern theory of critical phenomena, the liquid-vapor density diameter in simple fluids is generally expected to deviate from a rectilinear law approaching the critical point. However, by performing precise scannerlike optical measurements of the position of the SF_{6} liquid-vapor meniscus, in an approach much closer to criticality in temperature and density than earlier measurements, no deviation from a rectilinear diameter can be detected. The observed meniscus position from far (10K) to extremely close (1mK) to the critical temperature is analyzed using recent theoretical models to predict the complete scaling consequences of a fluid asymmetry. The temperature dependence of the meniscus position appears consistent with the law of rectilinear diameter. The apparent absence of the critical hook in SF_{6} therefore seemingly rules out the need for the pressure scaling field contribution in the complete scaling theoretical framework in this SF_{6} analysis. More generally, this work suggests a way to clarify the experimental ambiguities in the simple fluids for the near-critical singularities in the density diameter.

3.
Phys Rev E ; 95(1-1): 013105, 2017 Jan.
Artigo em Inglês | MEDLINE | ID: mdl-28208391

RESUMO

Periodical patterns (bands) developing at the interface of two immiscible fluids under vibration parallel to interface are observed under zero-gravity conditions. Fluids are slightly below their liquid-vapor critical point where they behave in a scaled, universal manner. In addition, liquid and vapor densities are close and surface tension is very low. Linear stability analyses and direct numerical simulation show that this instability, although comparable to the frozen wave instability observed in a gravity field, is nonetheless noticeably different when gravity becomes zero. In particular, the neutral curve minimum corresponds to the long-wave perturbations with k=0 and zero dimensionless vibrational parameter, corresponding to no instability threshold. The pattern wavelength thus corresponds to the wavelength of the perturbations with maximal growth rate. This wavelength differs substantially from the neutral perturbations wavelength at the same vibrational parameter value. The role of viscosity is highlighted in the pattern formation, with a critical wavelength dependence on vibration parameters that strongly depends on viscosity. These results compare well with experimental observations performed in the liquid-vapor phases near the critical point of CO_{2} (in weightlessness) and H_{2} (under magnetic levitation).

4.
Lab Chip ; 16(18): 3493-502, 2016 09 21.
Artigo em Inglês | MEDLINE | ID: mdl-27494277

RESUMO

In order to investigate at the pore scale the mechanisms involved during CO2 injection in a water saturated pore network, a series of displacement experiments is reported using high pressure micromodels (geological labs on chip - GLoCs) working under real geological conditions (25 < T (°C) < 75 and 4.5 < p (MPa) < 8). The experiments were focused on the influence of three experimental parameters: (i) the p, T conditions, (ii) the injection flow rates and (iii) the pore network characteristics. By using on-chip optical characterization and imaging approaches, the CO2 saturation curves as a function of either time or the number of pore volume injected were determined. Three main mechanisms were observed during CO2 injection, namely, invasion, percolation and drying, which are discussed in this paper. Interestingly, besides conventional mechanisms, two counterintuitive situations were observed during the invasion and drying processes.

5.
Artigo em Inglês | MEDLINE | ID: mdl-26172640

RESUMO

Near the critical point of fluids, critical opalescence results in light attenuation, or turbidity increase, that can be used to probe the universality of critical behavior. Turbidity measurements in SF6 under weightlessness conditions on board the International Space Station are performed to appraise such behavior in terms of both temperature and density distances from the critical point. Data are obtained in a temperature range, far (1 K) from and extremely close (a few µK) to the phase transition, unattainable from previous experiments on Earth. Data are analyzed with renormalization-group matching classical-to-critical crossover models of the universal equation of state. It results that the data in the unexplored region, which is a minute deviant from the critical density value, still show adverse effects for testing the true asymptotic nature of the critical point phenomena.

6.
Phys Rev E Stat Nonlin Soft Matter Phys ; 75(5 Pt 2): 056317, 2007 May.
Artigo em Inglês | MEDLINE | ID: mdl-17677174

RESUMO

The effect of a linear harmonic vibration on heat propagation is investigated in near-critical SF6 under weightlessness conditions in space. Heat was issued from a pointlike source (thermistor), a situation representative of an industrial use of pressurized supercritical fluid storage. Two kinds of vibrations were used, large amplitude (64 mm) at 0.2 Hz and low amplitude (0.8 mm) at 1.6 Hz, with temperatures from 5 K to 20 mK from the critical temperature. The vibrations are seen to strongly affect the evolution and shape of the hot boundary layer (HBL), the heat exchange between the heat source and the fluid, and the bulk thermalization process by the adiabatic piston-effect process. The HBL is initially convected as symmetrical plumes over a distance that only depends on the vibration velocity and which corresponds to a Rayleigh-Bénard-like instability where the vibration acceleration acts as the earth gravity. Then the extremities of the plumes are convected perpendicularly to the direction of oscillation as two "pancakes," a process encountered in the vibrational Rayleigh-Bénard instability. When the vibration velocity is small, only one pancake centered at the hot source is observed. Temperature evolutions of the hot source and the fluid are studied in different locations. Convection flows and adiabatic piston effect compete to determine the thermal dynamics, with the latter being the most efficient near the critical point. The experimental results are compared with a two-dimensional numerical simulation that highlights the similarities and differences between the very compressible van der Waals gas and an ideal gas.

7.
Rev Stomatol Chir Maxillofac ; 91(5): 357-61, 1990.
Artigo em Francês | MEDLINE | ID: mdl-2218385

RESUMO

Surgical exeresis and radiation therapy are effective means of treatment for facial carcinomas. In some areas that are difficult to manage (nose, ears, periorbital region), the respective importance of both approaches is discussed. We report on the retrospective study of 309 patients seen after a skin carcinology consultation in which a dermatologist, a surgeon and a radiotherapist were associated. These 309 patients, with a mean age of 73 years, presented with 375 carcinomas, i.e. 246 basal-cell (BC) and 119 epidermoid (EC) carcinomas. The most frequent sites were the nose (33.8% of BC), the inner canthus (12.7% of BC), the lower lip (23.8% of EC) and the ear (15.6% of EC). Management mainly consisted of surgery (50.8%) then Curie therapy (37%). The rate of recurrence was the same (10.5%) after surgery and radiation therapy. The study of the results leads us to advocating surgery for carcinomas of the ear (due to the occurrence of radiation necrosis in every third case after radiation therapy) and Curie therapy for carcinomas of the lower lid (except the inner canthus) because of recurrence in every second case treated with surgery. We currently prefer surgery for carcinomas of the lower lip (radiodermatitis in 11.8% of cases) and Curie therapy for the nose (lower rate of recurrence than with surgery). However, in the last two cases, the proposals for treatment should be confirmed by randomized studies. Thus facial carcinomas of the skin surrounding the orifices of the face and/or those that affect patients who are difficult to treat must be seen during a skin carcinology consultation by a dermatologist, a surgeon and a radiotherapist working together.(ABSTRACT TRUNCATED AT 250 WORDS)


Assuntos
Carcinoma Basocelular/radioterapia , Carcinoma Basocelular/cirurgia , Carcinoma de Células Escamosas/radioterapia , Carcinoma de Células Escamosas/cirurgia , Neoplasias Faciais/radioterapia , Neoplasias Faciais/cirurgia , Adulto , Idoso , Idoso de 80 Anos ou mais , Feminino , Humanos , Masculino , Pessoa de Meia-Idade , Recidiva Local de Neoplasia , Complicações Pós-Operatórias , Prognóstico , Radiodermite/etiologia , Estudos Retrospectivos
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