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Sizing of an Annular Type Combustor For Small Gas Turbine Engine

المصدر: مجلة جامعة الزيتونة
الناشر: جامعة الزيتونة
المؤلف الرئيسي: Elhasnawi, Mohamed H. (Author)
مؤلفين آخرين: Mohamed, Saleh B. (Co-Author) , Salem, Mesbah M. (Co-Author)
المجلد/العدد: ع7
محكمة: نعم
الدولة: ليبيا
التاريخ الميلادي: 2013
الشهر: صيف
الصفحات: 9 - 28
DOI: 10.35778/1742-000-007-025
ISSN: 2523-1006
رقم MD: 839341
نوع المحتوى: بحوث ومقالات
اللغة: الإنجليزية
قواعد المعلومات: EduSearch, EcoLink, IslamicInfo, HumanIndex
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LEADER 02579nam a22002777a 4500
001 1595537
024 |3 10.35778/1742-000-007-025 
041 |a eng 
044 |b ليبيا 
100 |9 451034  |a Elhasnawi, Mohamed H.  |e Author 
245 |a Sizing of an Annular Type Combustor For Small Gas Turbine Engine 
260 |b جامعة الزيتونة  |c 2013  |g صيف 
300 |a 9 - 28 
336 |a بحوث ومقالات 
520 |b Current and future applications of small gas turbine engines annular type combustors have requirements presenting difficult disputes to the combustor designer. Reduced cost and fuel consumption and improved durability and reliability as well as higher temperatures and pressures for such application are forecast. Coupled with these performance requirements; irrespective of the engine size; is the demand to control the pollutant emissions, namely the oxides of nitrogen, carbon monoxide, smoke and unburned hydrocarbons. These technical and environmental challenges have made the design of small size combustion system a very hard task. Thus, the main target of this work is to generalize a calculation method of annular type combustors for small gas turbine engines that enables to understand the fundamental concepts of the coupled processes and to identify the proper procedure that formulate and solve the problems in combustion fields in as much simplified and accurate manner as possible. The combustion chamber in task is designed with central vaporizing unit and to deliver 516.3 KW of power. The geometrical constraints are 142 mm & 140 mm overall length and casing diameter, respectively, while the airflow rate is 0.8 kg/sec and the fuel flow rate is 0.012 kg/sec. The relevant design equations are programmed by using MathCAD language for ease and speed up of the calculation process. 
653 |a الهندسة الميكانيكية  |a المحركات التوربينية 
700 |9 451036  |a Mohamed, Saleh B.  |e Co-Author  |g Mohamed, Saleh B. 
700 |9 451038  |a Salem, Mesbah M.  |e Co-Author 
773 |4 العلوم الإنسانية ، متعددة التخصصات  |4 العلوم الاجتماعية ، متعددة التخصصات  |6 Humanities, Multidisciplinary  |6 Social Sciences, Interdisciplinary  |c 025  |e Azzaytuna University Journal  |f Mağallaẗ ğāmiʿaẗ al-Zaytūnaẗ  |l 007  |m ع7  |o 1742  |s مجلة جامعة الزيتونة  |v 000  |x 2523-1006 
856 |u 1742-000-007-025.pdf 
930 |d y  |p y 
995 |a EduSearch 
995 |a EcoLink 
995 |a IslamicInfo 
995 |a HumanIndex 
999 |c 839341  |d 839341 

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