Sentence examples for a circulating loop from inspiring English sources

Exact(1)

A circulating loop system was designed to maintain constant hydrostatic pressure throughout the tests so that the influence of external excitation on the fluid flow could be properly distinguished.

Similar(59)

Based on the slug flow hydrodynamic behaviors and the balance of momentum and pressure drop over the circulating loop, a model was developed to predict the main parameters of the system: the liquid circulation velocity, the void fraction, the length and velocities of Taylor bubbles and liquid slugs.

The characteristics of the main components and the instrumentation with its calibration during reception tests are described in Part A. A first series of experiments was performed with pulsed loads in an isochoric configuration: large pressure and temperature changes in the circulating loop are observed, analyzed and compared as well to a thermohydraulic modeling described in Part B.

The boiler is divided into two sections: first section consisting of furnace, gas solid separator, solid recycle device and external heat exchanger and is known as solid circulating loop.

Hence, viscosity of the nanofluid, which influences the pumping power requirements in circulating loops, requires a close examination.

Although it is possible to design a S-CO2 cooled GFR that can survive LOCA by cooling the core through natural circulating loops between the core and elevated emergency cooling heat exchangers, it is not an attractive approach because of various bypass paths that can, depending on break location, degrade core cooling.

The results revealed that the isentropic efficiency of the turbine sharply dropped as the circulated loop mass flow rate increased at mw > 14.5 kg/s.

In conclusion, the temperature of the circulated loop was increased to fix the mass flow rate of the circulated loop at the increasing thermal power of the exhaust gases due to the isentropic of the turbine slightly affected by the increasing temperature of the heat source.

The axial-turbo-expander in the TRC system, with R134a serving as the working fluid, was numerically examined to investigate the turbine performance at expander inlet temperatures of 140 115 °C and circulated loop mass flow rates of 15 12.5 kg/s.

In contrast to the increasing thermal power of the exhaust gases, the mass flow rate of the circulated loop was decreased at the decreasing thermal power of the heat source.

In order to achieve the requested yield for 18Ne a new high power target design based on a circulating molten salt loop has been proposed.

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