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Détail de l'auteur
Auteur Omar Behar
Documents disponibles écrits par cet auteur
Affiner la rechercheDetermination of maximum recoverable heat in a thermodynamic combined cycle (solar-gas) with a steam turbine downstream the power plant / Omar Behar
Titre : Determination of maximum recoverable heat in a thermodynamic combined cycle (solar-gas) with a steam turbine downstream the power plant Type de document : texte imprimé Auteurs : Omar Behar, Auteur ; Belhamel, Maïouf, Directeur de thèse Editeur : [S.l.] : [s.n.] Année de publication : 2010 Importance : 81 f. Présentation : ill. Format : 30 cm. Accompagnement : 1 CD-ROM Note générale : Mémoire de Magister : Energies Renouvelables : Alger, Ecole Nationale Polytechnique : 2010
Bibliogr. f. 79 - 81Langues : Anglais (eng) Mots-clés : Integrated solar combined cycle system
Solar thermal power plant
Hassi R’MelIndex. décimale : M005610 Résumé : The purpose of this study is to develop a mathematical program for analysing the performance of
the first integrated solar combined cycle system (ISCCS) in Algeria, located in Hassi R’mel. In
this project, an integrated plant with simple pressure level is proposed. During sunny periods, the
energy conversion of the exhaust gas in the steam turbine is improved by using solar heat steam
generator HSSG in parallel with the heat recovery steam generator HRSG. This design furnishes
flexibility in the operation system where it works as a conventional combined cycle during night
time and it switches to operate as an ISCCS during daylight. Thermal efficiency and electricity
generating are the main parameters to evaluate the instantaneous performances of different parts
of the solar power plant through the year. The program results show that the power plant would
produce about 134MW with efficiency equal to 57.5% at night. At daytime, the net solar
electricity ratio can be very interesting and reach the limit of 15% at the design point. As a result,
the output from and the efficiency of the integrated plant will be above the CC regime by 17 and
16.5%, which correspond to 157MW and 67%, respectively. Increasing the steam turbine
capacity by 50% and better performances of the integrated plant in Hassi R’mel desert in warm
days are other advantages of the proposed design.Determination of maximum recoverable heat in a thermodynamic combined cycle (solar-gas) with a steam turbine downstream the power plant [texte imprimé] / Omar Behar, Auteur ; Belhamel, Maïouf, Directeur de thèse . - [S.l.] : [s.n.], 2010 . - 81 f. : ill. ; 30 cm. + 1 CD-ROM.
Mémoire de Magister : Energies Renouvelables : Alger, Ecole Nationale Polytechnique : 2010
Bibliogr. f. 79 - 81
Langues : Anglais (eng)
Mots-clés : Integrated solar combined cycle system
Solar thermal power plant
Hassi R’MelIndex. décimale : M005610 Résumé : The purpose of this study is to develop a mathematical program for analysing the performance of
the first integrated solar combined cycle system (ISCCS) in Algeria, located in Hassi R’mel. In
this project, an integrated plant with simple pressure level is proposed. During sunny periods, the
energy conversion of the exhaust gas in the steam turbine is improved by using solar heat steam
generator HSSG in parallel with the heat recovery steam generator HRSG. This design furnishes
flexibility in the operation system where it works as a conventional combined cycle during night
time and it switches to operate as an ISCCS during daylight. Thermal efficiency and electricity
generating are the main parameters to evaluate the instantaneous performances of different parts
of the solar power plant through the year. The program results show that the power plant would
produce about 134MW with efficiency equal to 57.5% at night. At daytime, the net solar
electricity ratio can be very interesting and reach the limit of 15% at the design point. As a result,
the output from and the efficiency of the integrated plant will be above the CC regime by 17 and
16.5%, which correspond to 157MW and 67%, respectively. Increasing the steam turbine
capacity by 50% and better performances of the integrated plant in Hassi R’mel desert in warm
days are other advantages of the proposed design.Exemplaires
Code-barres Cote Support Localisation Section Disponibilité Spécialité Etat_Exemplaire M005610A M005610 Papier Bibliothèque centrale Mémoire de Magister Disponible M005610B M005610 Papier Bibliothèque centrale Mémoire de Magister Disponible Documents numériques
BEHAR.Omar.pdfURL