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Average size of steam bubbles is assumed to be an arbitrary value and its effect on the dynamics is investigated through sensitivity analysis.
The constitutional equations entail uncertain values such as superficial velocity of water and average size of steam bubbles in a drum.
The effects on the resulting parameters, such as system cost and optimal size of steam cycle, are calculated from a series of experiments performed using high and low levels of the most relevant factors.
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Numerical simulations are applied to help the design of the probe from the viewpoint of the crack sizing of steam generator tubes.
This paper describes an arrayed multi-coil probe, newly developed for the testing and crack sizing of steam generator tubes by eddy current testing (ECT).
Typical sizes of steam generators range from 3000 Watt to 6000 Watt.
This was in agreement with the previous work of Mooney et al. [ 21] and Del Rio et al. [ 22], who found that size fractionation of steam and organosolv pretreated woody feedstocks, respectively, resulted in fractionated pulp fibers of a similar chemical composition to that of the unfractionated pulps.
The experimental results show that a steam ejector can function for a certain configuration size of the steam ejector with a generating temperature ranging from 40 °C to 70 °C and an evaporating temperature of 10 °C.
The experimental results show that a steam ejector can operate successfully for a certain configuration size of the steam ejector with a generating temperature ranging from 40 °C to 70 °C and an evaporating temperature of 15 °C.
The effectiveness of the methods is compared within themselves and to conventional steam-assisted gravity drainage (SAGD) by measuring the size of the steam chamber as a function of time.
Quite soon I'm surrounded by a score or more of the gentle beasts, each with a mouth the size of a steam shovel.
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CEO of Professional Science Editing for Scientists @ prosciediting.com