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引用次数: 0

摘要

散货船的正确装载对其海上安全至关重要。装载不足会导致各种风险,包括船体强度受损、稳定性降低和船舶不适航。现有的船上仪器无法对装载操作进行及时规划和实时控制,这可能会导致潜在风险。干散货码头的高强度装载作业加剧了这一问题,因为往往没有足够的时间来充分准备和验证装载计划,从而增加了货舱超载的风险。为解决这一问题,文章建议开发散货船货物作业规划的新方法。考虑到港口设施、船舶设计和计划航程的航海限制等因素,这些方法将优化散装货物的分配。其目的是根据船舶的数学模型将货物操作正规化,并建立影响船舶适航性的参数之间的函数关系。通过分析不同参数之间的关系,研究人员旨在确定货物操作的最佳策略,以确保散货船的持续适航性。这种方法将有助于提高散装货轮的安全性,降低与错误装载相关的风险。这种方法的开发被视为一个很有前途的科学研究领域,可以提高这些船只的安全性。通过根据持续适航标准确定货物操作的最佳策略,该方法旨在防止船舶结构完整性的恶化,并确保船舶在整个装载过程中始终处于适航状态。文章强调有必要在这一领域开展科学研究,以提高散货船的安全性,并建议开发基于数学建模的新方法,以优化货物操作,并在整个过程中保持船舶的适航性。
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Determination of the optimal cargo operations strategy of a bulk carrier vessel, with continuous ensuring its seaworthiness
The correct loading of bulk carriers is essential for their maritime safety. Inadequate loading can lead to various risks, including compromised hull strength, reduced stability and violation of the vessel's seaworthiness. Existing shipboard instruments do not allow for timely planning and real-time control of loading operations, which can lead to potential risks. The high intensity of loading operations at dry bulk terminals exacerbates the problem, as there is often insufficient time to adequately prepare and verify loading plans, increasing the risk of overloading cargo holds. To address this problem, the article proposes the development of new methods for bulk carriers cargo operations planning. These methods would optimise the distribution of bulk cargo, taking into account factors such as port facilities, ship design and nautical restrictions of the planned voyage. The aim is to formalise cargo operations in terms of a mathematical model of the vessel and to establish functional relationships between parameters that affect the seaworthiness of the vessel. By analysing the relationships between different parameters, the researchers aim to determine the best strategy for cargo operations that will ensure the continuous seaworthiness of the bulk carriers. This approach would help to improve bulk carrier’s safety and reduce the risks associated with incorrect loading. The development of such methods is seen as a promising area of scientific research that can enhance the safety of those vessels. By determining the best strategy for cargo operations based on the criterion of continuous seaworthiness, it aims to prevent the deterioration of the vessel's structural integrity and ensure that the vessel remains in a seaworthy condition throughout the loading process. The article emphasizes the need for scientific research in this area to enhance the safety of bulk carriers and proposes the development of new methods based on mathematical modeling to optimize cargo operations and maintain the vessel's seaworthiness throughout the process.
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