Bingöl, Ekin

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E.,Bingol
E., Bingol
Ekin, Bingöl
E.,Bingöl
Ekin, Bingol
Bingöl, Ekin
Bingol,E.
Bingol, Ekin
B., Ekin
Bingöl,E.
B.,Ekin
Job Title
Doktor Öğretim Üyesi
Email Address
Main Affiliation
Department of Mechanical Engineering
Status
Former Staff
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Scopus Author ID
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Google Scholar ID
WoS Researcher ID

Sustainable Development Goals

2

ZERO HUNGER
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0

Research Products

11

SUSTAINABLE CITIES AND COMMUNITIES
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0

Research Products

14

LIFE BELOW WATER
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0

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6

CLEAN WATER AND SANITATION
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0

Research Products

1

NO POVERTY
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0

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5

GENDER EQUALITY
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0

Research Products

9

INDUSTRY, INNOVATION AND INFRASTRUCTURE
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1

Research Products

16

PEACE, JUSTICE AND STRONG INSTITUTIONS
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0

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17

PARTNERSHIPS FOR THE GOALS
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0

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15

LIFE ON LAND
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0

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10

REDUCED INEQUALITIES
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0

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7

AFFORDABLE AND CLEAN ENERGY
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2

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8

DECENT WORK AND ECONOMIC GROWTH
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1

Research Products

4

QUALITY EDUCATION
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0

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12

RESPONSIBLE CONSUMPTION AND PRODUCTION
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1

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3

GOOD HEALTH AND WELL-BEING
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0

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13

CLIMATE ACTION
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1

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Scholarly Output

2

Articles

1

Views / Downloads

13/0

Supervised MSc Theses

0

Supervised PhD Theses

0

WoS Citation Count

86

Scopus Citation Count

99

WoS h-index

2

Scopus h-index

2

Patents

0

Projects

0

WoS Citations per Publication

43.00

Scopus Citations per Publication

49.50

Open Access Source

0

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0

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JournalCount
3rd International Conference on Nuclear and Renewable Energy Resources (NURER) -- MAY 20-23, 2012 -- Istanbul, TURKEY1
Energy and Buildings1
Current Page: 1 / 1

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  • Article
    Citation - WoS: 21
    Citation - Scopus: 22
    Exergy Based Performance Analysis of High Efficiency Poly-Generation Systems for Sustainable Building Applications
    (Elsevier Science Sa, 2011) Bingol, Ekin; Bingöl, Ekin; Kilkis, Birol; Eralp, Cahit; Bingöl, Ekin; Department of Mechanical Engineering; Department of Mechanical Engineering
    In this study, first and second laws of thermodynamics, accompanying with Rational Exergy Management Method (REMM) were employed in developing a MATLAB based algorithm for natural gas fired, internal combustion engine (ICE) driven poly-generation systems. Two systems were studied based on a tri-generation plant built within the framework of the EU-FP6 HEGEL Project, tested at METU MATPUM (RICBED) building. This study introduces a better set of metrics for rating, evaluating, and optimizing poly-generation systems in order to minimize emissions, maximize fuel savings, and thus to accomplish an optimum sustainability metric among the factors of environment, energy, human needs and economics. Results show that with ICE poly-generation systems, exergy efficiency may increase beyond 60%. Even at part loads, minimum values of Primary energy savings (PES) are 12.4% for Case-1 and 17.7% for Case-2 (compared to minimum allowed 10%). REMM efficiency and Exergy Embedded PES (PES(R)) evaluated by REMM are proven to be better indicators of the performance. When exergy destruction is lower, (waste heat is recovered) PES(R) increases significantly. PES(R) values are minimum 18.2% for Case-1 and 42.4% for Case-2, which reveals that both systems provide high performance energy generation and considerably lower emissions. (C) 2011 Elsevier B.V. All rights reserved.