Statistics for Numerical modeling of turbulent flows in arbitrarily complex natural streams.

Total visits

views
Numerical modeling of turbulent flows in arbitrarily complex natural streams. 360

Total visits per month

views
August 2024 2
September 2024 0
October 2024 0
November 2024 0
December 2024 0
January 2025 0
February 2025 0

File Visits

views
Kang_umn_0130E_11401.pdf 260
bankfull.wmv 49

Top country views

views
United States 89
Germany 73
China 70
South Korea 24
Iran 18
France 16
United Kingdom 7
Greece 4
Ireland 4
India 4
South Africa 4
Canada 3
Singapore 3
Austria 2
Chile 2
Finland 2
Hong Kong SAR China 2
Italy 2
Netherlands 2
Romania 2
Tunisia 2
Australia 1
Côte d’Ivoire 1
Czechia 1
Estonia 1
Indonesia 1
Luxembourg 1
Morocco 1
Mongolia 1
Mexico 1
Malaysia 1
Qatar 1
Russia 1
Senegal 1
Turkey 1
Taiwan 1
Uzbekistan 1

Top city views

views
Minneapolis 17
Beijing 16
Redmond 16
Shenyang 12
Dalian 11
Seoul 8
Ashburn 5
Athens 4
Port Jefferson Station 4
Bengaluru 3
Cranston 3
Dublin 3
Framingham 3
Hangyang 3
Mashhad 3
Nuremberg 3
Singapore 3
Brooklyn 2
Changsha 2
Los Angeles 2
Newark 2
Nürnberg 2
Rolla 2
Santiago 2
Shanghai 2
Tianjin 2
Tokyo 2
University Park 2
Wuhan 2
Abidjan 1
Austin 1
Bad Homburg 1
Buffalo 1
Burlington 1
Central 1
Chicago 1
Chongqing 1
Dakar 1
De Pere 1
Des Moines 1
Dongguan 1
Empangeni 1
Fremont 1
Hangzhou 1
Hefei 1
Jakarta 1
Jharsuguda 1
Juarez 1
Kaifeng 1
Kelowna 1
Khorasan 1
King of Prussia 1
Kuala Lumpur 1
Lenexa 1
London 1
Louisville 1
Lowell 1
Melbourne 1
Miller Place 1
Montréal 1
Mount Sinai 1
Mountain View 1
Munich 1
Newcastle Upon Tyne 1
Overland Park 1
Paris 1
Pensacola 1
Prague 1
Providence 1
Pusan 1
Saint Paul 1
Seattle 1
Shenzhen 1
Songpa-dong 1
Southend 1
Staten Island 1
Taichung 1
Tallinn 1
Tehran 1
Trumansburg 1
Vienna 1
Waco 1
Walnut 1
Washington 1
Wilson 1