BRACCO, GIOVANNI
 Distribuzione geografica
Continente #
EU - Europa 15.327
NA - Nord America 12.331
AS - Asia 10.144
SA - Sud America 816
AF - Africa 205
OC - Oceania 45
Continente sconosciuto - Info sul continente non disponibili 16
Totale 38.884
Nazione #
US - Stati Uniti d'America 12.123
IT - Italia 6.876
SG - Singapore 2.655
VN - Vietnam 2.544
CN - Cina 1.873
DE - Germania 1.716
GB - Regno Unito 1.598
FR - Francia 1.471
RU - Federazione Russa 1.017
KR - Corea 636
BR - Brasile 606
HK - Hong Kong 446
IN - India 446
UA - Ucraina 418
IE - Irlanda 404
TR - Turchia 333
FI - Finlandia 290
NL - Olanda 262
SE - Svezia 199
BE - Belgio 181
JP - Giappone 175
ES - Italia 168
AT - Austria 153
CA - Canada 135
ID - Indonesia 135
CH - Svizzera 126
PH - Filippine 115
MY - Malesia 109
IR - Iran 94
TH - Thailandia 81
AR - Argentina 80
TW - Taiwan 79
AP - ???statistics.table.value.countryCode.AP??? 66
BG - Bulgaria 66
PT - Portogallo 66
IQ - Iraq 60
PL - Polonia 57
BD - Bangladesh 56
RO - Romania 52
JO - Giordania 44
IL - Israele 43
MX - Messico 43
NO - Norvegia 42
AU - Australia 41
ZA - Sudafrica 38
PK - Pakistan 34
EG - Egitto 33
CL - Cile 25
EC - Ecuador 25
MA - Marocco 25
VE - Venezuela 25
SA - Arabia Saudita 24
CO - Colombia 23
EU - Europa 23
UZ - Uzbekistan 23
CI - Costa d'Avorio 22
DZ - Algeria 21
GR - Grecia 18
DK - Danimarca 17
LU - Lussemburgo 14
PE - Perù 14
LT - Lituania 13
AE - Emirati Arabi Uniti 12
KE - Kenya 12
LB - Libano 12
SN - Senegal 12
SY - Repubblica araba siriana 12
TN - Tunisia 12
EE - Estonia 11
NG - Nigeria 11
NP - Nepal 10
CZ - Repubblica Ceca 9
HR - Croazia 8
BH - Bahrain 7
BY - Bielorussia 7
PY - Paraguay 7
UY - Uruguay 7
AL - Albania 6
ET - Etiopia 6
HU - Ungheria 6
JM - Giamaica 6
LK - Sri Lanka 6
A1 - Anonimo 5
CR - Costa Rica 5
KZ - Kazakistan 5
MD - Moldavia 5
SK - Slovacchia (Repubblica Slovacca) 5
AZ - Azerbaigian 4
BO - Bolivia 4
HN - Honduras 4
MZ - Mozambico 4
NZ - Nuova Zelanda 4
PA - Panama 4
GE - Georgia 3
LV - Lettonia 3
NI - Nicaragua 3
OM - Oman 3
PS - Palestinian Territory 3
RS - Serbia 3
A2 - ???statistics.table.value.countryCode.A2??? 2
Totale 38.845
Città #
Ashburn 2.130
Singapore 1.578
Turin 1.110
Southend 1.087
Chandler 820
Torino 757
Ho Chi Minh City 684
San Jose 644
Hanoi 616
Seattle 590
Milan 507
Dallas 482
Santa Clara 446
Beijing 404
Princeton 386
Fairfield 352
Rome 335
Hong Kong 325
Seoul 321
Dublin 309
Houston 260
Berlin 249
Council Bluffs 246
Los Angeles 242
Woodbridge 238
Ann Arbor 220
Helsinki 214
Boardman 211
Wilmington 196
Jacksonville 188
Munich 168
Brussels 153
San Ramon 152
Lauterbourg 147
Izmir 141
Cambridge 137
Istanbul 134
Dearborn 130
Fremont 130
Da Nang 128
New York 123
San Donato Milanese 120
Vienna 114
Haiphong 104
Guangzhou 103
Hefei 101
Moscow 96
Tokyo 96
Bern 94
Hangzhou 93
Shanghai 89
Zhengzhou 88
The Dalles 84
Buffalo 79
Chicago 79
Frankfurt am Main 72
Chennai 69
Bremen 67
Jakarta 67
Atlanta 66
Amsterdam 62
São Paulo 61
Frankfurt 60
Paris 60
Sofia 60
London 54
Nanjing 54
Palermo 50
Saint Petersburg 50
Zaporozhye 50
San Mauro Torinese 48
San Francisco 45
Baltimore 44
Mountain View 44
Orem 44
Redwood City 44
Toronto 44
Grafing 43
Padua 43
Lappeenranta 42
Shenzhen 42
Redmond 41
Naples 40
North Bergen 39
Falls Church 38
Bologna 37
Maynooth 34
Redondo Beach 34
Nuremberg 33
Bangkok 32
Bari 32
Genoa 32
Genova 32
Andover 31
Columbus 31
Florence 31
Hải Dương 31
Catania 30
Pennsylvania Furnace 30
Varese 30
Totale 21.053
Nome #
ISWEC: a Gyroscopic Wave Energy Converter 1.479
Modeling and optimization of a Wave Energy Converter using ANSYS AQWA 1.419
ISWEC (Inertial Sea Wave Energy Converter): Modellazione, Controllo ed Analisi di Produttività 718
Wave Tank Testing of a Pendulum Wave Energy Converter 1:12 Scale Model 489
ISWEC: A gyroscopic mechanism for wave power exploitation 485
Productivity analysis of the full scale inertial sea wave energy converter prototype: A test case in Pantelleria Island 467
Hardware-In-the-Loop test rig for the ISWEC wave energy system 464
Stochastic Control of Inertial Sea Wave Energy Converter 458
Design and operation of the ISWEC full-scale plant at Pantelleria 437
Platform optimization and cost analysis in a floating offshore wind farm 431
Experimental validation of the ISWEC wave to PTO model 423
Inertial Sea Wave Energy Converter (ISWEC): scale model and wave tank test 398
ISWEC: application of linear tubular generators 396
Performance Assessment Of The Full Scale Iswec System 394
Control of an ISWEC Wave Energy Harvest System 390
Dynamic Modeling of an Offshore Floating Wind Turbine for Application in the Mediterranean Sea 387
Stochastic control applied to the ISWEC Wave Energy System 386
ISWEC Design Tool 385
Application of Linear Model Predictive Control to the ISWEC 380
Use of wave forecast for the regulation of ISWEC 378
Development of a simplified analytical model for a passive inertial system solicited by wave motion 360
Design of a gyroscopic wave energy system 358
Application of sub-optimal control techniques to a gyroscopic Wave Energy Converter 349
Assessment Of Loads And Performance Of A Wave Energy Converter For The Mediterranean Sea 347
A novel optimisation process for static structural finite element analysis of offshore wind turbine floating foundations 342
ISWEC linear quadratic regulator oscillating control 337
Performance assessment of a 2 DOF gyroscopic wave energy converter 334
ISWEC: a Gyroscopic Wave Energy Converter 333
Design of a Cost Effective Haptic Interface 328
ISWEC Design Tool 328
Experimental evaluation of different hydrodynamic modelling techniques applied to the ISWEC 325
ISWEC: progetto di un prototipo in scala 324
Floating offshore wind potential for Mediterranean countries 322
Linear Tubular Permanent-Magnet Generators for the Inertial Sea Wave Energy Converter 320
Sea-wave power converter modeling for fault conditions analysis 318
ISWEC: DESIGN OF A PROTOTYPE MODEL FOR WAVE TANK TEST 312
Analysis of a gyroscopic-stabilized floating offshore hybrid wind-wave platform 309
ISWEC: the use of gyroscopes to harvest wave power 308
A performance assessment methodology for floating pitching WEC arrays 308
EXPERIMENTAL TESTING ON A ONE DEGREE OF FREEDOM WAVE ENERGY CONVERTER CONCEIVED FOR THE MEDITERRANEAN SEA 306
Fast nonlinear Froude–Krylov force calculation for prismatic floating platforms: a wave energy conversion application case 303
Integration of renewable energy to power public transport at the Island of Pantelleria 300
Identification of the hydrodynamic parameters of a wave energy converter 300
Controllore, metodo e sistema WEC 300
A two-way coupling CFD method to simulate the dynamics of a wave energy converter 299
ISWEC: design of a prototype model withgyroscope 297
ISWEC control tuning: lessons learned 296
ONE DEGREE OF FREEDOM GYROSCOPIC MECHANISM FOR WAVE ENERGY CONVERTERS 295
Supporting decarbonization strategies of local energy systems by de-risking investments in renewables: a case study on Pantelleria island 295
Testing of a gyroscopic Wave Energy System 294
PeWEC: Preliminary Design of a Full-Scale Plant for the Mediterranean Sea 294
Convertitore di Energia Marina 293
PeWEC: Experimental validation of wave to PTO numerical model 293
Wind Turbines and Rooftop Photovoltaic Technical Potential Assessment: Application to Sicilian Minor Islands 288
Energia dalle onde 288
Convertitore di energia marina 286
Application of a Passive Control Technique to the ISWEC 285
A passive control strategy applied to the iswec device: numerical modelling and experimental tests 285
Double and single sided tubular linear Permanent Magnets generator for the Wave Energy conversion 281
Estensione PCT brevetto Convertitore di Energia Marina 280
Life Cycle Assessment for the ISWEC Wave Energy Device 277
Tuning a linear quadratic regulator for point absorber wave energy converters 276
Viscous Damping Identification for a Wave Energy Converter Using CFD-URANS Simulations 276
Techno-Economic Optimisation for a Wave Energy Converter via Genetic Algorithm 276
ISWEC: experimental tests on a small scale prototype model 271
Optimizing energy production of an Inertial Sea Wave Energy Converter via Model Predictive Control 271
Wave energy converter mooring system: Available solvers and model validation 270
ENERGIA PULITA DAL MARE 267
Mooring System Design and Analysis for a Floating Offshore Wind Turbine in Pantelleria 258
Development of a floating Vertical Axis Wind Turbine for the Mediterranean Sea 257
PIATTAFORMA IBRIDA PER L’ESTRAZIONE DI ENERGIA EOLICA ED ONDOSA 252
Techno-economic designs of hybrid wind-wave offshore energy systems and comparison with TOPSIS analysis: an Italian case study 248
Low-Cost Heaving Single-Buoy Wave-Energy Point Absorber Optimization for Sardinia West Coast 247
Expanding Operational Bandwidth and Tuning a Wave Energy Converter Using U-shaped Sloshing Tanks 241
Wind‑driven and buoyancy effects for modeling natural ventilation in buildings at urban scale 236
Application of a Passive Control Technique to the ISWEC: Experimental Tests on a 1:8 Test Rig 230
Experimental investigation of the hydrodynamic performance of the ISWEC 1:20 scaled device 230
Progettazione Verde 229
Non-linear simulation of a wave energy converter with multiple degrees of freedom using a harmonic balance method 221
Experimental Investigation of the Mooring System of a Wave Energy Converter in Operating and Extreme Wave Conditions 221
Optimal floating offshore wind farms for Mediterranean islands 220
Numerical Analysis of Two Different Hydraulic Power Take-Off Configurations for Renewable Energy Applications 216
GENERATORE DI ENERGIA 216
Conceptual design and optimisation of a novel hybrid device for capturing offshore wind and wave energy 211
Floating Vertical Axis Wind Turbines for offshore applications among potentialities and challenges: A review 211
Horizontal and Vertical axis wind turbines: Impacts on the dynamics of a floating wind system 209
Numerical and Experimental Analysis of Oscillating Fluid Tanks 209
Sistema di ormeggio adattivo per corpo galleggiante 208
The importance of aeroelasticity in estimating multiaxial fatigue behaviour of large floating offshore wind turbine blades 207
Design and Techno-Economic Analysis of a Novel Hybrid Offshore Wind and Wave Energy System 206
Modelling the hydrodynamic response of a floating offshore wind turbine – a comparative study 205
Design and experiments of linear tubular generators for the Inertial Sea Wave Energy Converter2011 IEEE Energy Conversion Congress and Exposition 205
On the Influence of Mooring in Wave Energy Converters Productivity: the PeWEC case 195
Effect of pitching motion on production in a OFWT 195
Ecological structure and mapping of Posidonia oceanica meadows in the island of Pantelleria (South Tyrrhenian): a selected site to detect sea wave energy 194
An application of model predictive control logic to inertial sea wave energy converter 194
System for generating electrical energy from the wave motion of the sea 193
Energy harvesting optimization of an Inertial Sea Wave Energy Converter through Model Predictive Control 192
Design and Analysis of a Floating Photovoltaic System for Offshore Installation: The Case Study of Lampedusa 191
Dynamic Motion Evaluation of a Novel Hybrid Wind and Wave Integrated Platform 191
Totale 32.306
Categoria #
all - tutte 97.080
article - articoli 36.625
book - libri 1.038
conference - conferenze 50.517
curatela - curatele 0
other - altro 0
patent - brevetti 6.025
selected - selezionate 0
volume - volumi 314
Totale 191.599


Totale Lug Ago Sett Ott Nov Dic Gen Feb Mar Apr Mag Giu
2020/2021871 0 0 0 0 0 0 0 0 0 548 167 156
2021/20222.843 187 142 126 123 165 201 135 152 253 345 530 484
2022/20233.378 261 471 149 370 331 433 229 203 408 91 220 212
2023/20241.893 103 160 107 229 160 175 152 121 100 123 255 208
2024/20255.324 128 564 259 504 416 453 387 468 782 341 449 573
2025/202611.451 751 547 1.004 987 792 702 1.908 992 2.617 1.151 0 0
Totale 39.411