This model is about Combined Gas/Vapor Cycle for power generation by the use of Gas Turbine Cycle (GTC) Regeneration with different working gases. Users can assign the grid needed power. The load power from the user is mainly supplied from the GTC. In order to obtain all design aspects such as:
1-Design aspects for GTC.
2-Energy, and Exergy streams are calculated.
3-Working fluid mass flow rate through the cycle.
All cycles are prepared for dynamic and fixed-point modeling. All cycles are designed for electric power generation. Users can change the working fluid by assigning the specific heat capacity of the selected gas type. The Gas cycle contains the following:
1-Low pressure compressor.
2-Intercooler.
3-High pressure compressor.
4-Heat exchanger.
5-Combustion chamber I.
6-High pressure turbine.
7-Combustion chamber II.
8-Low pressure turbine.
9-The exhaust from the Low-pressure turbine will be used as a power source for the Steam Rankine Cycle. The Steam Rankine cycle contains:
1-BHX for thermal power.
2-HP Turbine.
3-Reheat.
4-LP Turbine.
5-2 closed feed heaters.
6-1 open feed heater.
7-Condenser unit.
8-Pumps.

**Watch the tutorial video:

https://youtu.be/q4PYilXU0kw

 

**MatLab-SimuLink should be used to run the model.

 

Copyright © 2007 by Mohamed A. Sharaf Eldean Ayoub

All rights reserved. No part of this work may be reproduced, distributed, or transmitted in any form or by any means, including photocopying, recording, or other electronic or mechanical methods, without the prior written permission of the publisher (Mohamed A. Sharaf Eldean Ayoub). For permission requests, write to the publisher, addressed “Attention: Permissions Coordinator,” at the address below.

 

REDS Software Library
https://www.redslibrary.com
Kuala Lumpur Malaysia
mohamedsheraf@redslibrary.com
00601139795943
All Rights Reserved
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Combined Gas/Vapour Power Cycle with Regeneration

SKU: AUXcgvcreg
RM1,425.00 Regular Price
RM1,396.50Sale Price
  • You can get your discount code from the services page, or ask for it via chatting with Prof Dr. Mohamed A Sharaf Eldean.
     

© Created in 2017 by  REDS Library. All rights reserved.

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