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Dive into the research topics where Yousri M. A. Welaya is active.

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Featured researches published by Yousri M. A. Welaya.


International Journal of Naval Architecture and Ocean Engineering | 2011

A comparison between fuel cells and other alternatives for marine electric power generation

Yousri M. A. Welaya; M. Morsy El Gohary; Nader R. Ammar

ABSTRACT The world is facing a challenge in meeting its needs for energy. Global energy consumption in the last halfcentury has increased very rapidly and is expected to continue to grow over the next 50 years. However, it is expected to see significant differences between the last 50 years and the next. This paper aims at introducing a good solution to replace or work with conventional marine power plants. This includes the use of fuel cell power plant operated with hydrogen produced through water electrolysis or hydrogen produced from natural gas, gasoline, or diesel fuels through steam reforming processes to mitigate air pollution from ships.


International Journal of Naval Architecture and Ocean Engineering | 2015

Investigation of jack-up leg extension for deep water operations

Yousri M. A. Welaya; Ahmed M.H. Elhewy; Mohamed Hegazy

ABSTRACT Since the first jack-up was built, jackups have become the most popular type of mobile offshore drilling unit (MODU) for offshore exploration and development purposes in shallow water. The most pivotal component of the jack-up unit is the leg, which can directly affect the global performance of the unit. In this paper, an investigation into extending the length of the jack up leg is carried out in order to study the enhancement of the rig capability to drill in deeper water approaching the range of the Semisubmersible Drilling Unit (SSDU) (300-1000ft). A study of the performance of a deep-water jack-up unit is performed with different leg lengths. Typical leg scantling dimensions and identical external loads are assigned, and then a detailed Finite Element Analysis (FEA) model is created in order to simulate the jack-up leg unit’s structural behavior. A Multi-point Constraint (MPC) element together with the spring element is used to deal with the boundary conditions. Finally, a comparative analysis for five leg lengths is carried out to illustrate their performance, including the ultimate static strength, and weight.


alexandria engineering journal | 2012

Steam and partial oxidation reforming options for hydrogen production from fossil fuels for PEM fuel cells

Yousri M. A. Welaya; Mohamed M. El Gohary; Nader R. Ammar


International Journal of Naval Architecture and Ocean Engineering | 2013

Thermodynamic analysis of a combined gas turbine power plant with a solid oxide fuel cell for marine applications

Yousri M. A. Welaya; M. Mosleh; Nader R. Ammar


Journal of Marine Science and Application | 2014

The use of hydrogen as a fuel for inland waterway units

M. Morsy El Gohary; Yousri M. A. Welaya; Amr Abdelwahab Saad


Journal of Marine Science and Application | 2013

Energy analysis of a combined solid oxide fuel cell with a steam turbine power plant for marine applications

Yousri M. A. Welaya; M. Mosleh; Nader R. Ammar


Ocean Engineering | 2017

The hydrodynamic performance of a novel float-over installation

Khaled A. Geba; Yousri M. A. Welaya; Heba Wael Leheta; Yehia Abdel-Nasser


Brodogradnja : Teorija i praksa brodogradnje i pomorske tehnike | 2014

THERMODYNAMIC ANALYSIS OF A COMBINED SOLID OXIDE FUEL CELL WITH A STEAM TURBINE POWER PLANT FOR MARINE APPLICATIONS

Yousri M. A. Welaya; M. Mosleh; Nader R. Ammar


ASME 2017 36th International Conference on Ocean, Offshore and Arctic Engineering | 2017

Numerical Modeling of the Hydrodynamic Performance of Hydrofoils for Auxiliary Propulsion of Ships in Regular Head-Waves

Tamer M. Ahmed; Yousri M. A. Welaya; Serag M. Abdulmotaleb


The Twenty-fourth International Ocean and Polar Engineering Conference | 2014

Motion and Structural Analysis of Floaters Float-over during the Mating Operation

Khaled A. Geba; Yousri M. A. Welaya; Heba Wael Leheta; Yehia Abdel-Nasser

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M. Mosleh

Alexandria University

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