Exact(1)
Among all studied parameters, the three which have been identified as first rank influence on mechanical properties are: fibers conditioning, curing pressure and exit plate temperature.
Similar(59)
A key parameter, the standoff distance between the flame front and the burner exit plate, is identified.
The plate temperature was set at 10°C.
In Part 1, energy models are presented for two configurations: UTC only and UTC with PV panels, to predict the cavity exit air temperature and plate surface temperature with weather (incident solar radiation, ambient air temperature, dew point temperature and wind speed) and design (airflow rate or suction velocity and geometry) parameters used as inputs.
Initially, design constraints of the cycle i.e. pump exit temperature, source exit temperature, cooling fluid exit temperature, and flue gases exit temperature are applied to check the ORC applicability.
Validated, high resolution CFD simulations are used to study the impact of plate orientation and incident turbulence intensity, based on the comparison of exterior and interior Nusselt (Nu) number and the cavity exit air temperature, as well as the PV surface temperature when UTCs are integrated with PV panels.
Furnace exit gas temperature (FEGT) is one such important design/operating parameter.
In addition, discussions of peak and exit gas temperature trends are included.
So the only two ''floating" cycle parameters that remain to be defined are the compressor exit temperature and the turbine exit temperature.
On the contrary, it results in low combustor exit temperature.
This means that the compressor exit temperature approaches the turbine entry temperature.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com