dr hab. inż. Marian Piwowarski | Politechnika Gdańska

Treść strony

dr hab. inż. Marian Piwowarski

Kontakt:

email:
marian.piwowarski@pg.edu.pl
strona:
https://mostwiedzy.pl/marian-piwowarski,9205-1

Zajmowane stanowiska:

Profesor uczelni

miejsce pracy:
Instytut Energii
Budynek Wydziału Inżynierii Mechanicznej i Okrętownictwa Laboratorium Maszynowe, 2
telefon:
+48583471429

Pełnione funkcje:

Kierownik zakładu

dr hab. inż. Marian Piwowarski

Publikacje:

  1. Publikacja

    The vapour microturbine set’s mathematical model has been updated to consider the partial admission of turbine stages. Experimental data from two distinct microturbine sets were used to verify the model. The model of the microturbine set was tested under varying operating conditions. Examples of a comparison between the experimental results and simulations are presented and analysed. It has been shown that, when simulating the...

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  2. Publikacja

    The efficiency of power plants with steam or gas turbines depends on the efficiencies of a thermodynamic cycle and devices implementing this cycle. In the case of high power outputs, we cannot expect a significant increase in the efficiency of individual devices. Therefore, what remains is to increase the efficiency of the implemented thermodynamic cycle - the complex Rankine cycle in the case of steam turbines or the extended...

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  3. Publikacja

    Fans as industrial devices are among the most significant single recipients of driving energy. Therefore, they represent an important area of energy savings to reduce CO2 emissions. The ubiquity of fans and their operation under conditions different from the optimum provides an opportunity for more significant global reductions in the energy used to drive them. The second important aspect, besides energy efficiency, related to...

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  4. Publikacja

    Organic Rankine cycles (ORC) are quite popular, but the overall efficiencies of these plants are rather very low. Numerous studies have been conducted in many scientific centers and research centers to improve the efficiency of such cycles. The research concerns both the modification of the cycle and the increase in the parameters of the medium at the inlet to the turbine. However, the efficiency of even these modified cycles rarely...

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  5. Compressed air energy storage (CAES) system is a promising technology due to its numerous advantages, including relatively low maintenance cost, a long lifespan and high operational flexibility. This article explores the possibility of designing a CAES power plant as a source of electricity and heat for an existing industrial plant. The study involves the technical analysis of the power plant parameters and the economic analysis...

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