PulseExploreJournal ClubDebatesTrendingResearchersJournals
Instagram
HomeExploreJournal ClubTrending
Synapse
⌘+K
Synapse
March 5, 2026Journal of Marine Science and Engineering2 citationsOpen Access

Optimization Design of Marine Centrifugal Pump Blade Profile Based on Hybrid Clonal Selection Algorithm Integrating Slime Mold Algorithm and Tangent Flight Mechanism

View Full Paper
YYYe YuanQCQ ChenSWShifeng Wang

Key Points

  • The aim is to enhance the hydraulic efficiency of marine centrifugal pump blades through optimized design methods.
  • Optimized traditional clonal selection algorithm using slime mold and tangent flight mechanisms.
  • Developed an automatic hydraulic optimization design method for pump impeller.
  • Built a performance test platform for evaluating pump operation under various conditions.
  • Analyzed internal flow characteristics through numerical simulations.
  • Controlled blade profile geometric parameters using Bézier curves.
  • Increased pump hydraulic efficiency by 7% under rated flow conditions.
  • Significant improvement in unsteady internal flow efficiency of the optimized pump.
  • Reduced flow separation on the impeller tangential surface and in the volute.
  • Decreased overall flow losses in the pump system.

Abstract

The marine centrifugal pump is one of the most energy-intensive pieces of equipment in ship auxiliary machinery, and the efficient design of its hydraulic components can effectively reduce the total energy consumption of the ship system. Aiming at the complex three-dimensional twisted blade profile structure of the marine centrifugal pump, this paper optimized the clonal selection algorithm and constructed an automatic hydraulic optimization design method for the high-efficiency centrifugal pump impeller. Considering the multi-condition operation characteristics of the marine centrifugal pump, a performance test platform for the marine centrifugal pump was built, and the actual operating conditions of the model pump were tested to obtain its performance characteristics under operating conditions. The numerical simulation method was employed to capture and analyze the internal flow field and flow characteristics of the model pump. Addressing the design challenges of the marine centrifugal pump impeller, which involve multiple parameters with significant interactions, a traditional clonal selection algorithm was enhanced using a Slime Mold Algorithm, and a hybrid Clonal Selection Algorithm integrated with Slime Mold and Tangent Flight mechanisms was established. Based on the MATLAB and ANSYS platforms, an automated hydraulic optimization design framework for the centrifugal pump impeller was established. Using the optimized clonal selection algorithm, with the operational efficiency of the model pump as the optimization objective and controlling ten key geometric parameters of the blade profile through Bézier curves, the blade profile optimization design was achieved. The pump hydraulic efficiency under the rated flow condition increased by 7%. The unsteady internal flow efficiency of the optimized marine centrifugal pump was significantly improved. The blade optimization alleviated flow separation phenomena on the tangential surface of the impeller and in partial regions of the volute, reduced the flow loss area, and significantly decreased overall flow losses.

Ask AI
Helpful
Bookmark
Share
View Full Paper

Cite This Study

Yuan et al. (2026) studied this question.

synapsesocial.com/papers/69a91f0ad6127c7a504c2752https://doi.org/10.3390/jmse14050488
Ask AI
Helpful
Bookmark
Share
View Full Paper