This study presents a comprehensive experimental investigation into the hydrodynamic performance of high-speed Planing vessels equipped with adjustable trim tabs.Two scaled 40-foot beam-type models were tested under controlled towing tank conditions to assess the effects of trim angle variations on resistance, dynamic stability, and transition into the Planing regime.The tests evaluated both untrimmed and trimmed configurations using multiple trim tab heights, measuring resistance forces, trim behavior, and Planing onset velocities.Results demonstrate that optimal trim tab deployment significantly reduces hydrodynamic resistance, lowers the Hump Resistance Region, and enhances vessel stability at critical speeds.Trim tab configuration "B" showed superior performance, enabling earlier Planing transition with lower power demand and reduced bow impact.Additionally, this study addresses model scaling effects, construction tolerances, and control system calibration to ensure fidelity with full-scale vessel behavior.The findings underscore the importance of trim tab integration in the design of modern high-speed vessels, offering practical insights for resistance minimization, propulsion efficiency, and structural safety in dynamic marine environments.
Samaei et al. (Thu,) studied this question.