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SCI-Expanded JCR Q2 Özgün Makale Scopus
Effect of spark plug position and ignition timing on performance, exergy, exergoeconomic, environmental, and enviro-cost in a hydrogen-SI engine
Applied Thermal Engineering 2025 Cilt 278 Sayı 127400
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278
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Özet
Hydrogen is considered the fuel of the future due to its high energy density, flammability, and carbon-free nature. Enhancing the use of hydrogen in internal combustion engines can contribute to reducing carbon-based emissions originating from fossil fuels. Previous studies on hydrogen-powered engines have predominantly focused on the effects of fuel mixture properties on performance and emissions, while the number of studies addressing engine modifications remains quite limited. In this study, the combined effects of different spark plug positions and ignition timings on performance, emissions, exergy, exergoeconomic, environmental, and enviroeconomic parameters in a hydrogen-fueled SI engine are investigated. In this respect, the present study addresses a significant research gap in the literature by comprehensively assessing the performance aspects from a novel perspective involving engine modification in hydrogen-powered SI engines. Three different spark plug positions (SPP) are used in the experiments: SPP1 (near the intake port), SPP2 (equidistant from the intake and exhaust ports), and SPP3 (near the exhaust port). Additionally, the study is conducted at different ignition timings, a constant engine speed, and an equivalence ratio of 0.6. The results show that moving the SPP closer to the exhaust port improves performance, exergy efficiency, and exergoeconomic effect, but also increases environmental and enviroeconomic effect. For example, in the SPP3 condition, compared to SPP1, brake power, brake specific fuel consumption (BSFC), and exergy efficiency improve by an average of 7.5 %, 6.9 %, and 7.5 %, respectively. Additionally, it reduces exergy destruction by an average of 2.2 % and the specific exergy cost of shaft work by an average of 7.4 %. However, the significant increase in NOx emissions in SPP3 compared to SPP1 leads to an average increase of 2.8 % in the total cost rate.
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Article
Belge Türü
Kaynak: APPLIED THERMAL ENGINEERING
Anahtar Kelimeler (WoS)

Havuzumuzdaki Atıflar 0

Bu makaleye, sistemimizdeki Scopus veritabanında bulunan 0 makale atıf yapmıştır. Scopus genel atıf sayısı: 14.

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Scimago Dergi Bilgisi Otomatik ISSN Eşleştirmesi 2025 yılı verileri
Applied Thermal Engineering
Q1
SJR Quartile
1,556
SJR Skoru
238
H-Index
Kategoriler: Energy Engineering and Power Technology (Q1) · Fluid Flow and Transfer Processes (Q1) · Industrial and Manufacturing Engineering (Q1) · Mechanical Engineering (Q1)
Alanlar: Chemical Engineering · Energy · Engineering
Ülke: United Kingdom · Elsevier Ltd
Bu bilgiler makale yılına göre Scimago veritabanından ISSN eşleştirmesiyle otomatik getirilmektedir. Dergi sıralama verileri Scimago'nun ilgili yılı baz alınmaktadır.

Anahtar Kelimeler

WoS | Bir kelimeye tıklayıp ilgili kaynaktaki yayınları görün.

Makale Bilgileri

Dergi Applied Thermal Engineering
ISSN 1359-4311
Yıl 2025 / 1. ay
Cilt / Sayı 278 / 127400
Sayfalar 1 – 12
Makale Türü Özgün Makale
Hakemlik Hakemli
Endeks SCI-Expanded
JCR Quartile Q2
Teşvik Puanı 11,52 · YÖKSİS Akademik Teşvik
Yayın Dili İngilizce
Kapsam Uluslararası
Toplam Yazar 2 kişi
Erişim Türü Elektronik
Alan Mühendislik Temel Alanı Makine Mühendisliği İçten Yanmalı Motorlar Yakıtlar ve Yanma

YÖKSİS Yazar Kaydı

Yazar Adı GÜLCAN HALİL ERDİ,GÜRBÜZ HABİB
YÖKSİS ID 8869653

Metrikler

Scopus Atıf 14
Havuz Atıfları 0
JCR Quartile Q2
Teşvik Puanı 11,52
Yazar Sayısı 2