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Article

A Method for the Solution of Certain Non-Linear Problems of Combined Seagoing Main Engine Performance and Fixed-Pitch Propeller Hydrodynamics with Imperative Assignment Statements and Streamlined Computational Sequences

by
Eleutherios Christos Andritsakis
Centre for Research & Technology Hellas (CERTH), Chemical Process and Energy Resources Institute (CPERI), 52 Egialias Str., Marousi, GR-15125 Athens, Greece
Computation 2025, 13(8), 202; https://doi.org/10.3390/computation13080202 (registering DOI)
Submission received: 12 May 2025 / Revised: 17 June 2025 / Accepted: 24 June 2025 / Published: 21 August 2025

Abstract

Seagoing marine propulsion analysis in terms of main engine performance and fixed-pitch propeller hydrodynamics is an engineering problem that has not been exactly defined to date. This study utilizes an original and comprehensive mathematical approach—involving the approximate representation of one function by another—to define this problem in mathematical terms and solve it. This is achieved by imperatively applying an original and sophisticated hybrid combination of an existing, formidable and ingenious, mathematical methodology with different original comprehensive functional systems. These original functional systems approximately represent the operations of vessels under seagoing conditions, including the thermo-fluid and frictional processes of vessels’ main engines in terms of fuel oil consumption, as well as the hydrodynamic performance of the respective vessels in terms of the shaft propulsion power and the rotational speed of the fixed-pitch propellers driven by these engines. Based on the least-squares criterion, this original and sophisticated hybrid combination systematically attains remarkably close approximate representations under seagoing conditions. Apart from this novel exact definition in mathematical terms and the significance of the above original representations, this combination is also applicable for the approximation of the baselines demarcating the standard engineering context representing the ideal reference (sea trials) conditions, from the seagoing conditions.
Keywords: fixed-pitch propeller hydrodynamics; least-squares; main engines performance; seagoing fixed-pitch propeller hydrodynamics; least-squares; main engines performance; seagoing

Share and Cite

MDPI and ACS Style

Andritsakis, E.C. A Method for the Solution of Certain Non-Linear Problems of Combined Seagoing Main Engine Performance and Fixed-Pitch Propeller Hydrodynamics with Imperative Assignment Statements and Streamlined Computational Sequences. Computation 2025, 13, 202. https://doi.org/10.3390/computation13080202

AMA Style

Andritsakis EC. A Method for the Solution of Certain Non-Linear Problems of Combined Seagoing Main Engine Performance and Fixed-Pitch Propeller Hydrodynamics with Imperative Assignment Statements and Streamlined Computational Sequences. Computation. 2025; 13(8):202. https://doi.org/10.3390/computation13080202

Chicago/Turabian Style

Andritsakis, Eleutherios Christos. 2025. "A Method for the Solution of Certain Non-Linear Problems of Combined Seagoing Main Engine Performance and Fixed-Pitch Propeller Hydrodynamics with Imperative Assignment Statements and Streamlined Computational Sequences" Computation 13, no. 8: 202. https://doi.org/10.3390/computation13080202

APA Style

Andritsakis, E. C. (2025). A Method for the Solution of Certain Non-Linear Problems of Combined Seagoing Main Engine Performance and Fixed-Pitch Propeller Hydrodynamics with Imperative Assignment Statements and Streamlined Computational Sequences. Computation, 13(8), 202. https://doi.org/10.3390/computation13080202

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