Akay, Hasan Umur

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Akay, Hasan
Hasan, Akay
Akay,Hasan
Hasan Akay
A.,Hasan
H., Akay
A., Hasan
Akay,H.
Akay H.
H.,Akay
Akay, Hasan U.
Akay, H. U.
Akay, Hasan U. U.
Job Title
Profesör Doktor
Email Address
hasan.akay@atilim.edu.tr
Main Affiliation
Automotive Engineering
Status
Scopus Author ID
Turkish CoHE Profile ID
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WoS Researcher ID

Sustainable Development Goals

2

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0

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11

SUSTAINABLE CITIES AND COMMUNITIES
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14

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1

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6

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1

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0

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5

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9

INDUSTRY, INNOVATION AND INFRASTRUCTURE
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16

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17

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15

LIFE ON LAND
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10

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7

AFFORDABLE AND CLEAN ENERGY
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Documents

131

Citations

1286

h-index

18

Documents

71

Citations

705

Scholarly Output

15

Articles

9

Views / Downloads

82/282

Supervised MSc Theses

0

Supervised PhD Theses

1

WoS Citation Count

85

Scopus Citation Count

109

WoS h-index

4

Scopus h-index

5

Patents

0

Projects

0

WoS Citations per Publication

5.67

Scopus Citations per Publication

7.27

Open Access Source

3

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1

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JournalCount
8th International Conference on Education and New Learning Technologies (EDULEARN) -- JUL 04-06, 2016 -- Barcelona, SPAIN2
Proceedings of the Institution of Mechanical Engineers, Part G: Journal of Aerospace Engineering2
International Journal of Computational Fluid Dynamics2
ARPN Journal of Engineering and Applied Sciences1
Computers & Fluids1
Current Page: 1 / 2

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  • Article
    Citation - WoS: 6
    Flows Around Moving Bodies Using a Dynamic Unstructured Overset-Grid Method
    (Taylor & Francis Ltd, 2010) Liu, Jingxin; Akay, Hasan U.; Ecer, Akin; Payli, Resat U.
    In this article, a computational fluid dynamics algorithm is presented for simulations of complex unsteady flows around rigid moving bodies using an unstructured overset-grid method. For this purpose, a highly automated, three-dimensional, tetrahedral, unstructured overset-grid method is developed with one-cell-width overlapping zone in order to model the arbitrary geometries for steady and unsteady flow simulations. A method has been described to obtain the inter-grid boundaries of the one-cell-wide overlapping zone shared by a background grid and a minor grid. In the overset-grid methodology, vector intersection algorithm and bounding box techniques have been utilised. The mesh refinement and overset-scheme conservation studies proved the accuracy and efficiency of the method developed here. The applications of the developed algorithms were also performed through simulations that included complex internal flows around a flow-control butterfly valve as well as flows in an internal combustion engine with a moving piston. Lastly, validations with experimental data were conducted for both steady and unsteady flows around rigid bodies with relative motions.