Best results in : Research Potential Pokaż wszystkie wyniki (2)
Search results for: CHENG CYCLE
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Katedra Hydrotechniki
Research PotentialProfil badawczy Katedry Hydrotechniki jest głównie związany z procesem ruchu wody w środowisku naturalnym, jak również w instalacjach technicznych. Zespół katedralny jest silnie powiązany tematycznie z takimi zagadnieniami jak mechanika płynów, hydraulika, hydrologia, meteorologia, budownictwo wodne czy gospodarka wodna.
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Katedra Geotechniki, Geologii i Budownictwa Morskiego
Research Potential* badania teoretyczne i doświadczalne oraz analizy numeryczne w Mechanice Gruntów; * badania laboratoryjne i polowe gruntów; * metody wzmacniania podłoża gruntowego; * “zieloną geotechnikę” z zastosowaniem ekologicznych materiałów, technologii i zagospodarowaniem produktów ubocznych; * badania teoretyczne, doświadczalne oraz zagadnienia praktyczne fundamentowania w odniesieniu do fundamentów bezpośrednich i głębokich, tunelowania,...
Other results Pokaż wszystkie wyniki (5)
Search results for: CHENG CYCLE
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Power enhancement of the Brayton cycle by steam utilization
PublicationThe paper presents thermodynamic analysis of the gas-steam unit of the 65 MWe combined heat and power station. Numerical analyses of the station was performed for the nominal operation conditions determining the Brayton and combined cycle. Furthermore, steam utilization for the gas turbine propulsion in the Cheng cycle was analysed. In the considered modernization, steam generated in the heat recovery steam generator unit is directed...
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Power augmentation of PGE Gorzow's gas turbine by steam injection - thermodynamic overview
PublicationThe impact of steam injection upon a gas turbine and a combined power plant performance has been investigated. This article describes and summarizes possibilities of modification for current gas turbine in PGE Gorzow power plant into the Cheng cycle. Our modification deals with a thermal cycle, in which steam produced in a heat recovery steam generator is injected into the gas turbine's combustion chamber. It has been proved that...
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Clean gas technologies - towards zero-emission repowering of Pomerania.
PublicationThe main aim this work is to show the different thermodynamic cycles which improve efficiency and/or decrease emission like: Cheng cycle, Szewalski cycle, LOTHECO cycle, hybrid pSOFC/GT cycle, inverse Brayton cycle, low-emission cycle and zero-emission cycle. For that purpose, cycles and results of analysis are first studied and, secondly, new concept is presented. The role of coupled analysis 0D and 3D in cycle’s devices is also...
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Enhancement of the Brayton cycle efficiency by water or steam utilization
PublicationIn the paper, thermodynamic analysis of two modifications of a Brayton cycle into enhancement cycles with water/steam injection are discussed. The first one deals with a STIG modified system with both interstage compressed air cooling and air heating (heat regeneration) before combustion chamber. The second one, mainly devoted to higher steam/air ratio, is connected with separate steam production in a HRSG. The analysis has been...
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Porous carbon derived from rice husks as sustainable bioresources: insights into the role of micro-/mesoporous hierarchy in hosting active species for lithium–sulphur batteries
PublicationThe exploration of natural resources as sustainable precursors affords a family of green materials. Exploring highly abundant and available biowaste precursors remaining from food processing throughout a scalable and cost-effective material synthesis path is highly important especially for new materials discovery in emerging energy storage technologies such as lithium–sulphur (Li–S) batteries. Herein, we have produced a series...