D'ALESSANDRO, GIAMPAOLO
 Distribuzione geografica
Continente #
NA - Nord America 952
EU - Europa 581
AS - Asia 125
Continente sconosciuto - Info sul continente non disponibili 2
AF - Africa 1
OC - Oceania 1
SA - Sud America 1
Totale 1.663
Nazione #
US - Stati Uniti d'America 937
IE - Irlanda 267
CN - Cina 69
SE - Svezia 67
DE - Germania 60
IT - Italia 51
FR - Francia 44
TR - Turchia 37
UA - Ucraina 36
GB - Regno Unito 24
FI - Finlandia 15
CA - Canada 14
BE - Belgio 12
SG - Singapore 9
KR - Corea 4
VN - Vietnam 4
EU - Europa 2
IN - India 2
RU - Federazione Russa 2
AU - Australia 1
BR - Brasile 1
CZ - Repubblica Ceca 1
DK - Danimarca 1
DM - Dominica 1
EG - Egitto 1
SI - Slovenia 1
Totale 1.663
Città #
Dublin 263
Chandler 248
Jacksonville 156
Boardman 45
New York 44
Ann Arbor 39
Izmir 28
Lawrence 28
Princeton 28
Ashburn 27
Wilmington 25
West Jordan 20
Nanjing 17
Berlin 16
Los Angeles 15
Des Moines 14
San Mateo 13
Seattle 13
Brussels 12
Nanterre 12
Beauharnois 10
Kitzingen 10
Beijing 8
L’Aquila 8
Woodbridge 8
Rome 7
Andover 6
Hangzhou 6
Nanchang 6
Redwood City 6
Kunming 5
Lappeenranta 5
Ningbo 5
Dearborn 4
Dong Ket 4
Falls Church 4
L'aquila 4
Norwalk 4
Shenyang 4
Singapore 4
Changsha 3
Fremont 3
Helsinki 3
Jiaxing 3
Menlo Park 3
Milan 3
Aquila 2
Auburn Hills 2
Bengaluru 2
Frankfurt am Main 2
Hefei 2
La Rochelle 2
Montecorvino Rovella 2
Mountain View 2
Ottawa 2
Santa Maria Imbaro 2
Southampton 2
Verona 2
Washington 2
Albinea 1
Bellante 1
Cairo 1
Cambridge 1
Carlow 1
Cedar Knolls 1
Copenhagen 1
Edinburgh 1
Glasgow 1
Grafing 1
Guangzhou 1
Hanover 1
Hebei 1
Houston 1
Metz 1
Montréal 1
Olomouc 1
Roseau 1
Salerno 1
Sant'Anastasia 1
Slough 1
Sovizzo 1
Sydney 1
Taizhou 1
Tianjin 1
Wuhan 1
Totale 1.251
Nome #
X42B10T00 Slab in perfect contact with a high-conductivity surface layer with zero initial temperature and subject to a jump in boundary heat flux, initially at zero temperature and zero heat flux on the back side 106
X62B10T00 Slab in imperfect contact with a high-conductivity surface layer with zero initial temperature and subject to a jump in boundary heat flux, initially at zero temperature and zero heat flux on the back side 97
Intrinsic Verification of an Exact Analytical Solution in Transient Heat Conduction 96
Sensitivity Coefficients for Thermal Properties Measurements Using a Boundary Condition of the 4th Kind 68
X22B20T0 Slab subject to a linearly-in-time variable heat flux at one boundary, initially at zero temperature and thermally insulated at the other boundary 68
Intrinsic Verification of an Exact Analytical Solution in Transient Heat Conduction for Numerical Codes Verification 66
R33B10q10 Hollow cylinder exchanging heat by convection with a fluid at temperature other than zero while transferring a net radiant heat flux at inner boundary, and exchanging heat by convection with another fluid at zero temperature at other boundary 65
X33B10q10U1 Moving slab exchanging heat by convection with a fluid at temperature other than zero while transferring a net radiant heat flux at one boundary, and exchanging heat by convection with another fluid at zero temperature at other boundary 64
R33B01q01 Hollow cylinder exchanging heat by convection with a fluid at temperature other than zero while transferring a net radiant heat flux at outer boundary, and exchanging heat by convection with another fluid at zero temperature at inner boundary 64
R33B00G5 Hollow cylinder with piecewise constant internal heating and exchanging heat by convection with a fluid at zero temperature at both boundaries 63
An analytical development of the hyperbolic behaviour of micro thermoelectric coolers 62
An analytical solution for the hyperbolic unsteady thermal behaviour of micro-thermoelectric coolers with a suddenly time-dependent heat generation 62
Optimal Experiment Design for Thermal Property Estimation Using a Boundary Condition of the Fourth Kind with a Time-Limited Heating Period 62
Sensitivity Coefficients for Thermal Properties Measurements Using a Boundary Condition of the Sixth Kind 59
RS33B10q10 Hollow sphere exchanging heat by convection with a fluid at temperature other than zero while transferring a net radiant heat flux at inner boundary, and exchanging heat by convection with another fluid at zero temperature at other boundary 58
Effect of heat source and imperfect contact on simultaneous estimation of thermal properties of high-conductivity materials 55
On the optimum experiment and heating times when estimating thermal properties through the plane source method 55
X33B00G5 Steady slab with piecewise constant internal heating and exchanging heat by convection with a fluid at zero temperature at both boundaries 54
Finite heating duration based-sensitivity analysis in transient heat conduction 53
RS33B01q01 Hollow sphere exchanging heat by convection with a fluid at temperature other than zero while transferring a net radiant heat flux at outer boundary, and exchanging heat by convection with another fluid at zero temperature at inner boundary 48
Parameter estimation for high-conductivity materials using boundary conditions of high even kind 45
Multi-layer transient heat conduction involving perfectly-conducting solids 45
Estimation of Thermodynamic and Transport Properties of Metallic Materials 45
Verification of ANSYS and Matlab Heat Conduction Results Using an Intrinsically-Verified Exact Analytical Solution 41
Optimum experiment design for simultaneous estimation of thermal properties of high-conductivity materials 37
One-Dimensional Analytical Solution for Transient Thermal Conduction a Hollow Cylinder 36
Continuum Models of Drug Transport to Multiple Cell−Type Population 36
Verification of ANSYS and Matlab Conduction Results Using Analytical Solutions 34
Comparison of uniform and piecewise-uniform heatings when estimating thermal properties of high-conductivity materials 25
Modeling and Measuring Thermodynamic and Transport Thermophysical Properties: A Review 17
Erratum to ‘Optimal experiment design for thermal property estimation using a boundary condition of the fourth kind with a time-limited heating period’ [Int. J. Heat Mass Transfer 134 (2019) 1268–1282] 15
An optimal experiment for thermal conductivities measurement of composite materials using a heating contact technique and IR thermography 13
The Effect of Biot Number on a Generalized Heat Conduction Solution 13
Optimal experimental design for the assessment of thermophysical properties in existing building walls 11
Numerical and experimental analysis for flaw detection in composite structures of wind turbine blades using active infrared thermography 10
Analytical Solution for One-Dimensional Transient Thermal Conduction in a Hollow Cylinder 9
Optimal Experiment Design for Thermal Property Measurement of Orthotropic Materials using Infrared Thermography 9
A Review of Techniques and Bio-Heat Transfer Models Supporting Infrared Thermal Imaging for Diagnosis of Malignancy 6
Simultaneous estimation of thermodynamic and transport thermal properties of composite materials using a contact-heating technique: an optimum experimental set-up design 3
Totale 1.775
Categoria #
all - tutte 7.272
article - articoli 0
book - libri 0
conference - conferenze 0
curatela - curatele 0
other - altro 0
patent - brevetti 0
selected - selezionate 0
volume - volumi 0
Totale 7.272


Totale Lug Ago Sett Ott Nov Dic Gen Feb Mar Apr Mag Giu
2019/2020167 30 4 18 5 0 20 38 3 20 10 1 18
2020/2021233 2 21 2 27 26 24 35 4 36 10 37 9
2021/2022186 5 1 19 9 21 3 4 10 21 4 10 79
2022/2023645 39 53 13 78 27 92 9 34 267 13 11 9
2023/2024322 21 12 18 19 16 122 9 6 0 28 9 62
2024/20254 4 0 0 0 0 0 0 0 0 0 0 0
Totale 1.775