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Heat transfer and pressure drop analysis in shell and tube heat exchangers : segmental baffles design / Ahmed Adel Hamza Mostafa ; Supervised Essam E. Khalil , Gamal Elhariry , Waleed Abdelsamea

By: Contributor(s): Material type: TextTextLanguage: English Publication details: Cairo : Ahmed Adel Hamza Mostafa , 2017Description: 82 P. : charts , facsimiles ; 30cmOther title:
  • تحليل انتقال الحراره وفقد الضغط في مبادلات حراريه ذات الغلاف والانبوب : تصميم الحواجز القطعية [Added title page title]
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  • Issued also as CD
Dissertation note: Thesis (Ph.D.) - Cairo University - Faculty of Engineering - Department of Mechanical Power Engineering Summary: The shell side design of a shell-and-tube heat exchanger; in particular the baffle spacing, baffle cut and baffle orientation dependencies of the heat transfer coefficient and the pressure drop are investigated by numerically modeling a heat exchanger. The flow and temperature fields inside the shell are resolved using a commercial CFD package. A set of CFD simulations is performed for a single shell and single tube pass heat exchanger with a variable number of baffles and turbulent flow. The best turbulence model among the ones considered is determined by comparing the CFD results of heat transfer coefficient, outlet temperature and pressure drop with the Literature method results
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Item type Current library Home library Call number Copy number Status Date due Barcode
Thesis Thesis قاعة الرسائل الجامعية - الدور الاول المكتبة المركزبة الجديدة - جامعة القاهرة Cai01.13.11.Ph.D.2017.Ah.H (Browse shelf(Opens below)) Not for loan 01010110073337000
CD - Rom CD - Rom مخـــزن الرســائل الجـــامعية - البدروم المكتبة المركزبة الجديدة - جامعة القاهرة Cai01.13.11.Ph.D.2017.Ah.H (Browse shelf(Opens below)) 73337.CD Not for loan 01020110073337000

Thesis (Ph.D.) - Cairo University - Faculty of Engineering - Department of Mechanical Power Engineering

The shell side design of a shell-and-tube heat exchanger; in particular the baffle spacing, baffle cut and baffle orientation dependencies of the heat transfer coefficient and the pressure drop are investigated by numerically modeling a heat exchanger. The flow and temperature fields inside the shell are resolved using a commercial CFD package. A set of CFD simulations is performed for a single shell and single tube pass heat exchanger with a variable number of baffles and turbulent flow. The best turbulence model among the ones considered is determined by comparing the CFD results of heat transfer coefficient, outlet temperature and pressure drop with the Literature method results

Issued also as CD

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