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Optimization studies of two-stage transcritical carbon dioxide heat pump cycles, incorporating options such as flash gas bypass, flash intercooling and compressor intercooling, are presented based on cycle simulation.
Thermodynamic (energy and exergy) analyses and optimization studies of two-stage transcritical N2O and CO2 cycles, incorporating compressor intercooling, are presented based on cycle simulation employing simultaneous optimization of intercooler pressure and gas cooler pressure.
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It is based on cycle-accurate full platform simulation using microprocessor instruction driven timings.
However, [38] presents an integrated path and timing analysis method for C programs based on cycle-level symbolic execution using instruction-level simulation techniques.
Based on the cycle simulations, correlations of optimum gas cooler pressure and inter-stage pressure in terms of gas cooler exit temperature and evaporator temperature are obtained.
Based on the cycle simulations, correlations of the optimal heat rejection pressure in terms of appropriate parameters are obtained for specific conditions.
Based on the cycle simulations, correlations of optimum gas cooler pressure and inter-stage pressure in terms of gas cooler temperature and evaporator temperature are obtained.
Hydrolysis of cellulose was simulated based on Monte Carlo simulation technique.
Design Cost effectiveness analysis based on a Dutch simulation model.
Based on the simulation of Eqs.
Based on the simulation results, the details of cavitation development, the motion of vortex structures, and the fluid injection and reinjection were investigated in one typical cycle.
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