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Title: | MODELING AND DESIGN OF FLUIDIZED CATALYTIC CRACKING RISER |
Other Titles: | نمذجة وتصميم مفاعل وحدة التكسير الحفزي |
Authors: | Abdalla, Alfadel Ali Saeed Elnour, Hamza Mohammed Sayed, Kamal El-din Fayez |
Keywords: | FLUIDIZED CATALYTIC CRACKING MODELING AND DESIGN |
Issue Date: | 1-Sep-2016 |
Publisher: | Sudan University of Science & Technology |
Citation: | Abdalla,Alfadel Ali Saeed.MODELING AND DESIGN OF FLUIDIZED CATALYTIC CRACKING RISER /Alfadel Ali Saeed Abdalla,Hamza Mohammed Elnour ,Kamal El-din Fayez Sayed;Nihad Omer Hassan .-khartoum: Sudan University of Science & Technology, College of Petroleum Engineering and Technology, 2016.-43P:ill; 28cm.-Bachalore. |
Abstract: | In the present research, Material and Energy balance, and modeling for the fluid catalytic cracking was developed to obtain conversion 92% by using Runge-kutta order implemented in MATLAB with suitable zeolite weight. And also, comparison between them in the yield of gasoline, light gases, and coke was made. The riser of the fluid catalytic cracking was considered as a plug flow reactor incorporating the four lumps model for kinetics of cracking reactions. The model which consisted of ordinary differential equations was solved in order to get the yield patterns. Also, partial design of FCC take into account. في هذا البحث المقدم, تم عمل موازنة مادة وطاقة ونمذجة لوحدة التكسير الحفزي لهدف الوصول الي تحويل 92% بإستخدام أمر رانج-كوتا المطبق في الماتلاب. وأيضا تم عمل مقارنة بينهم بالنسبة لمنتوج البنزين ,الغازات الخفيفة, والفحم. كما تم إعتبار المفاعل مثالي (plug flow reactor) وأن التفاعل يكون بين هذه المكونات فقط وهي التغذية (Feed) , الغازات الخفيفة (Light Gases) , البنزين (Gasoline) ,والفحم (Coke). يحتوي النموذج على معادلات تفاضلية من الدرجة الأولى تم حلها لإيجاد المنتوج. كما تم عمل تصميم جزئي لوحدة التكسير الحفزي. |
Description: | Bachelor Research |
URI: | http://repository.sustech.edu/handle/123456789/15113 |
Appears in Collections: | Bachelor of Petroleum Engineering & Technology |
Files in This Item:
File | Description | Size | Format | |
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MODELING AND DESIGN OF FLUIDIZED CATALYTIC CRACKING RISER.pdf | Research | 5.48 MB | Adobe PDF | View/Open |
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