Exergoeconomic Analysis and Optimization of a Biomass Integrated Gasification Combined Cycle Based on Externally Fired Gas Turbine, Steam Rankine Cycle, Organic Rankine Cycle, and Absorption Refrigeration Cycle. [PDF]
Ren J, Xu C, Qian Z, Huang W, Wang B.
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The analysis of waste heat recovery in steel enterprises' data centers based on the Co-ah cycle. [PDF]
Wen K, Zhou C, Wang X.
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A Concept of Thermal Effort for Heat-Induced Metal Plasticity. [PDF]
Dudda W+4 more
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From carbon neutral to carbon negative: a theoretical bioenergy and CO<sub>2</sub> removal retrofit at Ngāwhā geothermal power station. [PDF]
Titus K, Dempsey D, Peer R, Hanik F.
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Thermodynamic performance of organic rankine cycle based pumped thermal energy storage system with different working fluids. [PDF]
Liang Z+6 more
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Exergy, exergoeconomic optimization and exergoenvironmental analysis of a hybrid solar, wind, and marine energy power system: A strategy for carbon-free electrical production. [PDF]
Zainul R+9 more
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The steam turbine handles the maximum power demand among all stationary prime movers that are used for electric power generation. A steam turbine is a constant volume machine. The relation between nozzle-box pressure and stage pressures vs. load is linear in nature. There are two basic types of steam turbines.
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Abstract In order to characterize the transient dynamics of steam turbines subsections, in this paper, nonlinear mathematical models are first developed based on the energy balance, thermodynamic principles and semi-empirical equations. Then, the related parameters of developed models are either determined by empirical relations or they are adjusted ...
Ali Chaibakhsh, Ali Ghaffari
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Publisher Summary This chapter presents an overview of steam turbines. It is remarkable that, right at the beginning of the development of steam turbines, two constructions appeared which successfully attempted to control these high speeds by completely different means.
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Whether General Purpose or Special Purpose, reliability of steam turbines are essential to the train and the plant. This chapter introduces several best practices that aim at improving Steam Turbine reliability.
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