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A1
A1
2024
Impact Factor
Qualis CAPES
(Eng II/ III)
F.J.C. Pena, M.J.S. de Lemos, Numerical investigation of an
innovative through-tubing solution to thermal plug and abandonment
of oil wells with thermite reactions, Applied Thermal Engineering
(2024) Vol. 254, 1 Oct. 2024, 123874
6.4
A1
Kesiany
M. de Souza, Marcelo J.S. de Lemos, Roberta R. Ribeiro, Paulo G.C.
Martins, Leonardo H. Gouvêa, Mathematical modeling and experimental
study of aluminothermic reaction applied to thermal plug and abandoment
of oil wells, International Communications in Heat and Mass Transfer,
Volume 156, August 2024, 107654
7.0
A1
De Andrade, G.S., Pena, F.J.C, de Lemos, M.J.S., A new analytical method
for transient heat conduction in composite disks applied to thermal plug
and abandonment of oil wells, International Communications in Heat and
Mass Transfer Vol.155, June 2024, 107465
7.0
A1
De Souza, K.M, de Lemos, M.J.S., Ribeiro, R.R., Martins, P.G.C., Gouvea, L.H.,
Experimental and numerical investigation of the effect of alumina on
thermite reation propagation for thermal plug and abandonment of oil
wells,
Int. J. Heat & Mass Transfer, vol. 224, June,
125327, 2024.
5.431
A1
De Souza, K.M, de Lemos, M.J.S., Ribeiro, R.R., Marin,
A.M.G., Martins, P.G.C., Gouvea, L.H., Experimental investigation
of AL-Fe2O3 thermite reactions for thermal plug and abandonment of oil
wells,
Geoenergy Science and Engineering,
vol. 234, 212620, 2024.
5.168
A1
DE ANDRADE, G.S., NASCIMENTO, E.J.G, de Lemos, M.J.S., Finite
integral transform with homogenized boundary conditions solution of
transient heat conduction applied to thermal plug and abandonment of oil
wells, Geoenergy Science and Engineering, vol. 233, p. 212530, 2024
5.168
A1
DE ANDRADE, G.S., NASCIMENTO, E.J.G. ; de Lemos, M.J.S., Finite integral transform solution of unsteady heat conduction
applied to thermal plug and abandonment of oil wells. APPLIED THERMAL
ENGINEERING, v. 236, p. 121576, 2024
6.4
A1
DE
ANDRADE, G.S., NASCIMENTO, E.J.G., DE LEMOS, M.J.S.,
TRANSIENT
HEAT TRANSFER IN CONCENTRIC CYLINDERS USING PERIODIC BOUNDARY CONDITION
AND ASYMMETRIC HEAT GENERATION APPLIED TO THERMAL PLUG AND ABANDONMENT
OF OIL WELLS,
Intern. J. Thermal
Sciences, v. 196C, p. 108689,
2024
4.5
A1
Pena, F.J.C., de Lemos M.J.S.,
NUMERICAL SOLUTION OF COUPLED HEAT TRANSFER WITH PHASE-CHANGE AND
THERMITE REACTION, International Journal of Energy for a Clean
Environment, v. 25 (4), p. 53–65, 2024.
de Lemos, M.J.S., Hodierne, A., A Fully-Implict Enthalpy-Porosity
Model for Phase-Change, ASME
J. Heat Mass Transfer
v. 146(1), p. 011005,
2024
2.1
A3
- Topo
-
2023
PENA, F. J. C. ; SOUZA, K. M. ; DE LEMOS MJS
.
THERMAL BEHAVIOR OF ALUMINOTHERMIC THERMITE REACTION FOR APPLICATION IN
THERMAL SEALING OF OIL WELLS. INTERNATIONAL COMMUNICATIONS IN HEAT AND
MASS TRANSFER, vol. 149, December 2023, 107113.
7.0
A1
Souza, K M, de Lemos, M.J.S.,
FULL FACTORIAL DESIGN ANALYSIS OF THERMODYNAMIC AND KINETIC PARAMETERS
IN SIMULATED THERMITE REACTION PROPAGATION,
Continuum Mechanics and Thermodynamics,.v.
35, p. 2219-2238, 2023.
3.822
A1
Pena, F.J.C., de Lemos M.J.S. Simulation of multidimensional
unsteady heat transfer with aluminothermic reaction and phase
transition, NTERNATIONAL JOURNAL OF HEAT AND MASS TRANSFER, v. 213,
p.124365, 2023
5.431
A1
Turner,
I, Pansino, C., de Lemos, M.J.S, LAND-ENERGY-FOOD NEXUS: COMPETITION AND
SOCIETAL IMPACT OF LAND USE FOR SUSTAINABLE ENERGY AND FOOD PRODUCTION -
A REVIEW, J. Energy Resour. Technol. vol. 145(Nov), 110802-1, 2023.
3.070
A2
De Andrade, G.S.; Nascimento, E.J G,; de Lemos, M.J.S.,
Analytical Solution of Two-Dimensional Unsteady Heat Conduction in
Multi-Layered Cylindrical Sectors Applied To Thermal Plug And
Abandonment of Oil Wells, INTERNATIONAL JOURNAL OF THERMAL SCIENCES,
v. 188, p.108180, 2023.
4.779
A1
Souza, K M, de Lemos, M.J.S., Advanced One-Dimensional
Modeling of Thermite Reaction For Thermal Plug and Abandonment of Oil
Wells, INTERNATIONAL JOURNAL OF HEAT AND MASS TRANSFER, v. 205,
p.123913, 2023
5.431
A1
Souza, K.M.,
de Lemos, M..J.S. ;
RIBEIRO, R.R., MARIN, A.M.G., Advanced isoconversional kinetic analysis
of Fe2O3-2Al thermite reaction for plug and abandonment of oil wells.
CHEMICAL ENGINEERING JOURNAL, v. 455, p.140725, 2023.
16.774
A1
- Topo
-
2022
Tobisawa,
R.Y.I,
de Lemos, M.J.S,
FILTRATION EFFICIENCY
OF PARTICLE-LADEN FLOWS FOR THERMAL PLUG AND ABANDONMENT OF OIL WELLS
USING TURBULENCE MODELING IN POROUS MEDIA, Inter. Comm. in Heat and Mass
Transfer, vol. 135, 106108, 2022.
5.683
A1
Rodrigues, F. A.; De Lemos MJS., Discharge effectiveness of thermal
energy storage systems, Applied Thermal Engineering, Vol. 209, 118232,
2022.
4.026
A1
de Lemos, M.J.S. MODELING TURBULENCE IN
PERMEABLE MEDIA: THE DOUBLE-DECOMPOSITION CONCEPT REVISITED, Physics,
4(1), 124-131,
2022.
Kesiany M. de Souza;
Marcelo J. S. de Lemos & Elizabete Yoshie Kawashi. Thermodynamics of
Thermite reactions for a new thermal plug and abandonment process.
Continuum Mechanics and Thermodynamics, 34, 259-271, 2022.
3.822
A1
- Topo
-
2021
3.476
A1
Andrade, G. S.; de Lemos M.J.S.; Colombo, D. A New Hybrid
Analytical/Numerical Method for Transient Heat Conduction in Composite
Hollow Cylinders Applied to Plug and Abadonment Oil Wells, INTERNATIONAL
JOURNAL OF THERMAL SCIENCES, Vol. 168, 106981, 2021.
3.476
A1
Rodrigues, F. A.; de Lemos MJS. Turbulent Flow and Heat Transfer in a Partially
Filled Ventilated Cavity Using the Local Thermal Non-Equilibrium Method.
INTERNATIONAL JOURNAL OF THERMAL SCIENCES, Vol. 164, pp 106844, 2021.
3.476
A1
De Lemos MJS; Ribeiro, R. R. Thermal Efficiency of Solar Volumetric Receivers
Using Constant and Variable Fluid Properties. International Journal of Energy
for a Clean Environment, 2021.
Rodrigues, F. A.; de Lemos MJS . Stratification and Energy Losses in a Standby
Cycle of a Thermal Energy Storage System. International Journal of Energy for a
Clean Environment, 2021.
Souza, K. M.; de Lemos MJS. Detailed Numerical Modeling and Simulation of
FE2O3-Al Thermite Reaction. PROPELLANTS EXPLOSIVES PYROTECHNICS, Vol. 46, Issue
5, pp
806-824, 2021.
1.544
B1
Brondani, L. M.; de Lemos MJS. Friction Factor for Ducts of Sinusoidal
Walls With a Layer of Porous Material. International Journal of Energy for a
Clean Environment, 22(2), pp 51-63, 2021.
- Topo
-
2020
Moreira, L.M., Mesquita, M.S., de Lemos, M.J.S., Numerical Analysis of
Free Convection flow in Square Enclosure Partially Heated from below
using the Multigrid Method. International Journal of Advanced
Engineering Research and Science, 7(3), pp.352-364, 2020.
B4
Fernando A. Rodrigues, Marcelo J. S. de Lemos, Effect of Porous material
properties on thermal efficiencies of a thermocline storage tank.
Applied Thermal Engineering, vol 173,
115194, 2020.
4.026
A1
Fernando A. Rodrigues, Marcelo J.
S. de Lemos, Transient performance of a thermocline energy storage
system using the two-energy equation model. International
Journal of Heat and Mass Transfer,
vol. 150, 119323, 2020.
3.458
A1
Roberta R. Ribeiro, Marcelo J.
S. de Lemos, Transient behavior and thermal efficiency of volumetric
heat receivers, International
Journal of Heat and Mass Transfer,
vol. 149, 119128, 2020.
3.458
A1
- Topo
-
2019
Marcelo J.
S. de Lemos, Marcelo Assato, Turbulence Structure and Heat Transfer in a
Sudden Expension with a Porous Insert using Linear and Non-Linear
Turbulence Models, International Journal of Thermal Sciences, vol. 141,
pg 1-13, 2019.
3.476
A1
Gustavo A. R. Rivas, Caroline F. Farias, Roberta R. Ribeiro, Marcelo J.
S. de Lemos, Thermal Performance of a Solar Volumetric Receiver, using
the two-energy equation model and radiantion boundary condition, International
Communications in Heat and Mass Transfer,
vol. 104, pg 101-108, 2019.
4.463
A2
Carvalho, P.H.S., de Lemos M.J.S., Role of Porosity and Solid-to-Fluid
Thermal Conductivity Ratio On Turbulent Combined Heat and Mass Transfer
in a Porous Cavity, International Journal of Heat and Mass Transfer,
vol. 132, pg 221-237, 2019.
3.458
A1
DE LEMOS MJS; CARVALHO, P. H. S. . Modified Lewis Number and
Buoyancy Ratio Effects on Turbulent Double-Diffusive Convection in
Porous Media Using the Thermal Non-Equilibrium Model. Journal of Heat
Transfer-Transactions of the ASME, vol. 141 (1), pg. 012502, 2019.
1.866
A2
Valeri Binovich, Pedro San Martin, Luis Henriquez & Marcelo de Lemos
(2019)
Filtration Gas Combustion in a Porous Ceramic Annular Burner for
Thermoelectric Power Conversion, Heat Transfer Engineering, 40:13-14,
1196-1210.
1.235
A2
- Topo
-
2018
Masciarelli,Caio B. and de Lemos,Marcelo J.S. A New Numerical
Scheme for Using the Two-Energy Equation Model for Turbulent Buoyant
Flow In a Composite Enclosure. Numerical Heat
Transfer, Part B: Fundamentals, vol. 74, pg 578-602, Issue 3, 2018.
1.663
B1
de Lemos, Marcelo; CARVALHO, PAULO . The Effects of Porosity and
Mass-to-Thermal Drive Ratio on aiding and Opposing Convection in Porous
Enclosures. Journal of Enhanced Heat Transfer, v. 25, p. 399-419, 2018.
0.239
B1
Marcelo J.S. de Lemos,
Edimilson J. Braga, Use of porous-continuum and continuum models for
determining the permeability of porous cavities under turbulent free
convection, Numerical Heat Transfer, Part B: Fundamentals, vol. 73, pg
78-93, Issue 2, 2018.
1.663
B1
- Topo
-
2017
Marcelo J.S. de Lemos, José E.A. Coutinho, Turbulent flow in porous
combustor using the thermal non-equilibrium hypothesis and radiation
boundary condition. International Journal of Heat and Mass Transfer,
Volume 115, Part A, Pages 1043–1054,
2017.
3.458
A1
Marcelo J.S. de Lemos,Caio B. Masciarelli,
Turbulent
natural convection in a composite annulus using a novel numerical scheme
and the thermal nonequilibrium hypothesis. Numerical Heat Transfer, Part
A: Applications,
Volume: 71, Issue: 08, pages 837 - 854, 2017.
2.259
A1
Paulo H.S. Carvalho, Marcelo J.S. de Lemos, Double-diffusive laminar
free convection in a porous cavity simulated with the two-energy
equation model. International Communications in Heat and Mass Transfer,
v. 82, p. 89-96, 2017.
3.718
A1
GALUPPO, W. C., DE LEMOS MJS, Turbulent Heat Transfer Past a Sudden
Expansion With a Porous Insert Using a Non-Linear Model, Numerical Heat
Transfer, Part A: Applications, v. 71, Issue: 03, p. 290-310, 2017.
2.259
A1
Paulo H.S. Carvalho, Marcelo J.S. de Lemos, Effect of Thermal
Conductivity Ratio on Laminar Double-Diffusive Free Convection in a
Porous Cavity. Journal of Heat Transfer, v. 139, Issue: 10, p. 104506 -
104506-4, ASME, 2017.
1.866
A1
- Topo
-
2016
SILVA R.A.; ASSATO M. ; DE LEMOS MJS. Mathematical
modeling and numerical results of power-law fluid flow over a finite
porous medium. International Journal of Thermal Sciences, v. 100
, p. 126–137,
2016.
3.615
A1
- Topo
-
2015
3.458
A1
POKRAJAC,
D. ; DE LEMOS MJS, Spatial averaging over a variable volume and its
application to boundary layer flows over permeable walls, Journal of
Hydraulic Engeneering, 141 (4), p. 04014087, 2015
2.183
A1
- Topo
-
2014
POKRAJAC, D. ; DE
LEMOS MJS.
Double Averaging
Methodology and Double - Decomposition: description of
intermediate scales between a fluid particle and a catchment, Hydrological
Processes, v. 28 (8), p.3356 - 3360,
2014.
3.014
A1
DE LEMOS MJS ; PIVEM, A.C .
TURBULENT HEAT TRANSFER IN A COUNTERFLOW MOVING POROUS BED USING A TWO-ENERGY
EQUATION MODEL. International Journal of Heat and Mass Transfer, v. 72,
p.98-113, 2014.
3.458
A1
DE LEMOS MJS . Analysis of
turbulent double-diffusive free convection in porous media using the two-energy
equation model. International Communications in Heat and Mass Transfer,
vol. 52, p. 132-139, 2014.
3.718
A1
DE LEMOS MJS . A Thermo-Mechanical Model for a Counterflow
Biomass Gasifier. Defect and Diffusion Forum, v. 354, p.
227-235, 2014.
0.343
B2
CARVALHO, P.H.S., DE LEMOS MJS. PASSIVE LAMINAR HEAT TRANSFER ACROSS POROUS CAVITIES USING THE THERMAL NON-EQUILIBRIUM MODEL. Numerical Heat
Transfer. Part A, Applications, v. 66 (11), pag. 1173 - 1194, 2014.
2.259
A1
CARVALHO, P.H.S.; DE LEMOS MJS, TURBULENT FREE CONVECTION IN A POROUS CAVITY
USING THE TWO-TEMPERATURE MODEL AND THE HIGH REYNOLDS CLOSURE.
International Journal of Heat and Mass Transfer, v. 79, p. 105-115,
2014.
3.458
A1
- Topo
-
2013
CARVALHO, P.H.S. ; DE LEMOS M.J.S.,Turbulent
free convection in a porous square cavity using the thermal equilibirum model.
International Communications in Heat and Mass Transfer, vol. 49, December
, p. 10-16.
3.718
A1
PIVEM, A.C.; DE LEMOS, M.J.S; TURBULENCE
MODELING IN A PARALLEL FLOW MOVING POROUS BED,
International Communications in Heat and Mass Transfer, vol. 48 , November, p.
1-7,
2013.
3.718
A1
PIVEM, A.C.; DE LEMOS, M.J.S;
NUMERICAL SIMULATION OF A
CROSSFLOW MOVING POROUS BED USING A THERMAL NON-EQUILIBRIUM MODEL.
International Journal of Heat and Mass Transfer, vol. 67, p. 311-325,
2013.
3.458
A1
- Topo
-
2012
COUTINHO, J.E.A.
; DE LEMOS, M.J.S. . LAMINAR
FLOW WITH COMBUSTION IN INERT POROUS MEDIAInternational Communications in
Heat and Mass Transfer, v. 39, p. 896-903, 2012.
3.718
A1
PIVEM,
A.C.; DE LEMOS, M.J.S; LAMINAR
HEAT TRANSFER IN A MOVING POROUS BED REACTOR SIMULATED WITH A MACROSCOPIC
TWO-ENERGY EQUATION MODEL. International Journal of Heat and Mass Transfer,
vol. 55, n. 7-8, pp. 1922-1930, 2012.
3.458
A1
PIVEM,
A.C.; DE LEMOS, M.J.S; TEMPERATURE
DISTRIBUTION IN A COUNTERFLOW MOVING BED UNDER A THERMAL
NONEQUILIBRIUMCONDITION. Numerical
Heat Transfer, vol.61, p.1-17, 2012
2.259
A1
DE
LEMOS, M.J.S; PIVEM, A.C.; TURBULENT
FLOW WITH COMBUSTION IN A MOVING BED. International Communications in Heat
and Mass Transfer vol. 39, n. 1, p. 1-7, 2012.
3.718
A1
2011
SILVA R.A.; DE LEMOS M.J.S.;
TURBULENT FLOW IN A COMPOSITE
CHANNEL. International Communications in Heat and Mass Transfer, v. 38, n.
8, p. 1019-1023, 2011.
3.718
A1
DE LEMOS M.J.S; DOREA F.T.;
SIMULATION OF TURBULENT
IMPIGING JET INTO A LAYER OF POROUS MATERIAL USING A TWO-ENERGY EQUATION
MODEL. Numerical Heat Transfer, v.59, n. 10, p.769-798, 2011.
2.259
A1
ASSATO, Marcelo ; DE LEMOS M.J.S.;
A NOVEL IMPLICIT
NUMERICAL TREATMENT FOR NON-LINEAR TURBULENCE MODELS USING HIGH AND LOW
REYNOLDS NUMBER FORMULATIONS. International Journal for Numerical Methods in
Fluids, v. 66, n. 12, p. 1475-1494, 2011.
1.652
B1
2010
FISCHER C.; DE LEMOS M.J.S.;
Turbulent Impinging Jet on a
Plate Covered With a Porous Layer. Numerical Heat Transfer. Part A,
Applications, v.58, n. 6, p. 429-456, 2010.
2.259
A1
DOREA F.T.; DE LEMOS M.J.S.;
SIMULATION OF LAMINAR
IMPINGING JET ON A POROUS MEDIUM WITH A THERMAL NON-EQUILIBRIUM MODEL.
International Journal of Heat and Mass Transfer, v.53, n. 23-24, p.
5089-5101, 2010.
3.458
A1
DE LEMOS M.J.S.; MESQUITA, M. S.;
Comparison of Four
Thermo-Mechanical Models for Simulating Reactive Flow in Porous Materials.
Diffusion and Defect Data, Solid State Data. Part A, Defect and Diffusion
Forum, v. 297-301, p. 1493-150, 2010.
0.343
B2
DE LEMOS M.J.S.;
Analysis of turbulent combustion in
inert porous media. International Communications of Heat and Mass Transfer,
v. 37, n. 4, p. 331-336, 2010.
3.718
A1
SAITO, Marcelo B. ; DE LEMOS M.J.S.;
A macroscopic
two-energy equation model for turbulent flow and heat transfer in highly
porous media. International Journal of Heat and Mass Transfer, v. 53 n.
11-12, p. 2424-2433, 2010.
3.458
A1
- Topo
-
2009
DE LEMOS M.J.S.
Numerical simulation of turbulent
combustion in porous materials. International Communications in Heat and
Mass Transfer, v. 36, n. 10, p. 996-1001, 2009.
3.718
A1
SAITO, Marcelo B. ; DE LEMOS M.J.S.
Laminar heat transfer
in a porous channel simulated with a two-energy equation model.
International Communications in Heat and Mass Transfer, v. 36, n. 10, p.
1002-1007, 2009.
3.718
A1
TOFANELI, Luzia A. ; DE LEMOS M.J.S.
Double-diffusive
turbulent natural convection in a porous square cavity with opposing
temperature and concentration gradients. International Communications in
Heat and Mass Transfer, v. 36, n. 10, p. 991-995, 2009.
3.718
A1
ASSATO, Marcelo ; DE LEMOS M.J.S.
Turbulent Flow in Wavy
Channels Simulated with Nonlinear Models and a New Implicit Formulation.
Numerical Heat Transfer. Part A, Applications, v. 56, n.4, p. 301-324, 2009.
2.259
A1
DE LEMOS M.J.S ; SAITO, Marcelo B.;
Heat-Transfer
Coefficient for Cellular Materials Modelled as an Array of Elliptic Rods.
Advanced Engineering Materials, v. 11, n. 10, p. 837-842, 2009.
B1
DE LEMOS M.J.S.
TURBULENT FLOW AROUND FLUID-POROUS
INTERFACES COMPUTED WITH A DIFFUSION-JUMP MODEL FOR k AND epsilon TRANSPORT
EQUATIONS. Transport in Porous Media, v. 78, n. 3, p. 331-346, 2009.
2.205
A2
GRAMINHO, Daniel Rezende ; DE LEMOS M.J.S.
Simulation of
Turbulent Impinging Jet Into a Cylindrical Chamber With and Without a Porous
Layer at the Bottom. International Journal of Heat and Mass Transfer, v. 52,
n. 3-4, p. 680-693, 2009.
3.458
A1
BRAGA, Edimilson Junqueira ; DE LEMOS M.J.S.
Larninar and
Turbulent Free Convection in a Composite Enclosure. International Journal of
Heat and Mass Transfer, v. 52, n. 3-4, p. 588-596, 2009.
3.458
A1
2008
DE LEMOS M.J.S ; SAITO, Marcelo Batista .
COMPUTATION OF
TURBULENT HEAT TRANSFER IN A MOVING POROUS BED USING A MACROSCOPIC TWO -
ENERGY EQUATION MODEL. International Communications in Heat and Mass
Transfer, v. 35, n. 10, p. 1262-1266, 2008.
3.718
DE LEMOS M.J.S; FISCHER, Cleges .
Thermal Analysis of an
Impinging Jet on a Plate With and Without a Porous Layer. Numerical Heat
Transfer. Part A, Applications, v. 54, n. 11, p. 1022-1041, 2008.
2.259
DE LEMOS M.J.S.
TURBULENT KINETIC ENERGY IN A MOVING
POROUS BED. International Communications in Heat and Mass Transfer, v. 35,
n. 9, p. 1049-1053, 2008.
3.718
A1
DE LEMOS M.J.S.
Analysis of turbulent flows in fixed and
moving permeable media. Acta Geophysica, v. 56, n. 3, p. 562-583, 2008.
1.068
B1
PEDRAS, Marcos Heinzelmann Junqueira ; DE LEMOS M.J.S.
THERMAL DISPERSION IN
POROUS MEDIA AS A FUNCTION OF THE SOLID-FLUID CONDUCTIVITY RATIO. International Journal of Heat and Mass Transfer, v. 51, p. 5359-5367, 2008.
3.458
A1
BRAGA, Edimilson Junqueira ; DE LEMOS M.J.S.
Computation
of turbulent free convection in left and right tilted porous enclosures
using a macroscopic k-eps model. International Journal of Heat and Mass
Transfer, v. 51, n. 21-22, p. 5279-5287, 2008.
3.458
A1
GRAMINHO, Daniel Rezende ; DE LEMOS M.J.S.
Laminar
Confined Impinging Jet into a Porous Layer. Numerical Heat Transfer. Part A,
Applications, v. 54, n. 2., p. 151-177, 2008.
2.259
A1
2006 | ||
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1.866 | A1 |
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1.866 | A1 |
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2.259 | A1 |
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2005 | ||
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0,4 | B1 |
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0,4 | B1 |
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0.524 | B1 |
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3.718 | A1 |
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3.458 | A1 |
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N/A | |
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3.718 | A1 |
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3.718 | A1 |
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1.144 | B1 |
- Topo - |
2004 | ||
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3.458 | A1 |
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3.458 | A1 |
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2.259 | A1 |
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1.738 | A2 |
2003 | ||
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3.718 | A1 |
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1.652 | B1 |
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2.259 | A1 |
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3.718 | A1 |
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2.35 | A2 |
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2.259 | A1 |
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3.458 | A1 |
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3.718 | A1 |
2002 | ||
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N/A |
2001 | ||
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3.458 | A1 |
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1.437 | A2 |
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1.738 | A2 |
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1.437 | A2 |
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2.259 | A1 |
2000 | ||
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3.718 | A1 |
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1.663 | A1 |
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3.718 | A1 |
1988 | ||
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N/A |
1987 | ||
DE LEMOS, M.J.S. On The Directional Sensitivity Of Hot-Wire And Hot-Film Probes. International Journal of Heat & Technology, v.5, n.3-4, p.73 - 81, 1987. | N/A |
1985 | ||
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N/A | |
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3.718 | A1 |
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3.458 | A1 |
1984 | ||
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N/A |