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The development of a new roller track gravity gate for self-unloader bulk carriers

机译:开发用于自卸式散货船的新型滚道重力闸门

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摘要

This study is fundamentally relevant to the development of a new enhanced Roller Track Gate (RTG) for the gravity type Self-unloading Bulk Carriers (SULS), called the Multi-functional Roller Track Gate (MRG). Self-unloading Bulk Carriers (SULS) are specialized types of dry bulk carrier vessels, principally because these ships discharge their cargoes without the assistance of external sources. In 1908, the first commercial vessel of these types started trading in the Great Lakes region of North America. Subsequent to the inception of SULS, the technology has developed mainly in the hull structure and onboard unloading systems. Due to the 1980s GL shipping recession, SULS migrated internationally and are now trading worldwide. Eight gravity gates for SULS were investigated in detail prior to designing the MRG. These examinations of previous gates were primarily to address the inherent issues and develop a new gate that would correct the current problems, when discharging dry bulk cargo with the existing gravity gates. The newly designed gate is accompanied with special control system that improves the discharging operations of these type vessels. This gate resulted in being heavier when compared to the existing RTG. However, this study also addresses and mitigates the associated improvements in this new type gate that increases the ship’s lightweight with the possibility of increasing payload / deadweight. High tensile steel was introduced for the hull to compensate for the added gate weight. The steel weight reduction investigation resulted in greater weight than what was required for offsetting the gate weight. The additional weight savings allowed for greater cargo lift for the vessels examined. The economic case study confirmed that by replacing the present Roller Track Gate with the Multi-functional Roller Track Gate, the shipowners’ would benefit from improve discharging performance, less port turn around time and reduced manning cost.
机译:这项研究从根本上与针对重力型自卸散货船(SULS)的新型增强型辊道门(RTG)的开发相关,称为多功能辊道门(MRG)。自卸散货船(SULS)是干散货船的特殊类型,主要是因为这些船无需外部资源就可以卸货。 1908年,此类首艘商用船开始在北美大湖地区交易。 SULS诞生后,该技术主要在船体结构和船上卸载系统中发展。由于1980年代的GL航运衰退,SULS进行了国际迁移,现在正在全球范围内交易。在设计MRG之前,对SULS的八个重力门进行了详细研究。对以前的登机门的这些检查主要是为了解决固有问题并开发一种新的登机门,用现有的重力式登机门将干散货卸货时,可以纠正当前问题。新设计的闸门配有特殊的控制系统,可改善这些容器的排放操作。与现有的RTG相比,此门导致较重。但是,这项研究还解决并减轻了这种新型闸门的相关改进,这种改进增加了船舶的轻量化,并有可能增加有效载荷/载重量。为船体引入了高强度钢,以补偿增加的闸门重量。减少钢重量的研究得出的重量大于抵消浇口重量所需的重量。额外的重量节省使得所检查的船舶具有更大的载货量。经济案例研究证实,通过用多功能滚子轨道门代替当前的滚子轨道门,船东将受益于改善的卸货性能,更少的港口周转时间和降低的配员成本。

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