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Exact(43)
After finding the free vibrational characteristics of the simply supported plate and shell before combination, the frequency equation of the combined system is obtained by considering the continuity conditions at the joint between the plate and the shell.
This combined system is called wastewater source heat pump.
Because the activity of the combined system is largely contributed by Cu-SCR at intermediate temperatures, the NO conversion of the combined system is lowered.
The Lagrangian of vibration of the combined system is obtained in quadratic forms of boundary values.
Results indicate that electrical efficiency of the combined system is 62.4% (LHV).
Effectiveness of the combined system is shown, by analyzing an actual BWR operating cycle.
Similar(17)
The roles played by the key engineering parameters with respect to the overall efficiency of the combined system were analyzed.
These were subsequently inserted between pre-cured layers of unidirectional carbon fibre reinforced polymer (CFRP) and the electrical and thermal conductivity of the combined system were assessed under different curing conditions.
It was observed that in comparison to data from an earlier study, the McABUS-to-DBT registration alignment errors for both this system and a previously built combined system were smaller than those for a previously built standalone McABUS system.
Through hybrid methods, the properties of interfacial electronic coupling of the combined system were estimated.
Differences were within acceptable ranges (errors of 55- and 65-storey for framed tube system were about 0.9 14.9 and 6.2 8.7 % and for combined system were about 2.1 16.3 and 1.1 12.1 %, respectively).
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