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A maximum gas loading at the chamber at 118 cm3/s rate was undertaken for 30 s.
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The maximum piston rod gas load is determined for each compressor by the manufacturer, to limit the stresses in the frame members and the bearing loads in accordance with mechanical design.
Then, the rational dimension of this kind of bearing is obtained by analyzing the influences of the bearing's geometrical parameters on its load carrying capacity (LCC), stiffness, mass flow rate (MFR) and the maximum gas velocity (MGV).
The maximum allowed piston rod gas load is affected by the ratio of compression and also by the cylinder design; i.e., whether it is single or double acting.
As the flue gas load was ramped from 100%to80%0%, a maximum L/G ratio deviation of 0.9% was observed when controlling the column temperature with the solvent flowrate.
Gas suppliers, compressors, storage systems, pipelines and gas loads are essential components in gas networks.
Off-design simulation results were validated against a high-order steady state model, and the maximum predicted column temperature differed by less than 1.2 °C for 100 85% flue gas load.
The gas loads can be regarded as negative gas injections at the gas load nodes.
The system includes the electricity supply system, electricity transmission system, electricity load, gas supply system, gas transmission system, gas-fired generator, gas load, heating and cooling load.
In this paper, the gas loads include the gas-fired generators and distributed DHCs, along with the regular gas loads.
The natural gas system includes 3 gas suppliers, 8 pipelines, 2 compressors, and 8 gas loads.
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