2019
DOI: 10.1088/1755-1315/240/3/032016
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Investigation on gas-liquid two-phase flow centrifugal pump performances for different rotational speeds

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Cited by 3 publications
(2 citation statements)
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“…Results obtained by Murakami and Minemura [2] and Si et al [24], already presented in the previous section for design rotational speeds, are also added on Figures 3 and 4 (see additional information in Table 2). More analysis concerning combined effects of rotational speed and liquid flow rate, especially when the rotational speed decreases, can be found in Cui et al [27]. Thus, for further research, it is suggested to perform a deeper analysis using the corresponding Reynold number based on inlet and/or outlet impeller radii.…”
Section: Effect Of Rotational Speed For a Given Pump (Close To Nominamentioning
confidence: 99%
“…Results obtained by Murakami and Minemura [2] and Si et al [24], already presented in the previous section for design rotational speeds, are also added on Figures 3 and 4 (see additional information in Table 2). More analysis concerning combined effects of rotational speed and liquid flow rate, especially when the rotational speed decreases, can be found in Cui et al [27]. Thus, for further research, it is suggested to perform a deeper analysis using the corresponding Reynold number based on inlet and/or outlet impeller radii.…”
Section: Effect Of Rotational Speed For a Given Pump (Close To Nominamentioning
confidence: 99%
“…In engineering practice such as in chemical processes, oil and gas transportation, nuclear pump operating, loss of water accidents, etc. [1][2][3][4], the problem of gas-liquid mixed transportation with centrifugal pumps is often encountered. As the centrifugal pump is very sensitive to the gas content in the working medium, the pump performance will change significantly under the condition of gas-liquid mixed transportation [5][6][7][8].…”
Section: Introductionmentioning
confidence: 99%