应用最大需求原理优化船舶装载机变压器设计

Sam Graham, S. Alahakoon
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引用次数: 0

摘要

要确定最大需求,目前在澳大利亚最广泛使用的方法是简单地遵循澳大利亚标准准则,并将负载加在一起,并找到合适的变压器额定值。这种做法被认为有许多缺陷,特别是从建设和财务的角度来看,这是缺乏多样性,这篇文章将重点关注。由于没有充分考虑到多样性,许多变压器很大程度上是超大的,因此很容易给客户签订的低预算合同带来压力,因为更大的变压器不仅单位本身成本更高,而且还会增加结构支持成本,以充分支持单位增加的尺寸和重量。尝试创建更优化的变压器设计的困难在于必须了解船舶装载机在关键间隔内的操作,因为最大需求是在特定时间间隔内的最大负载。本文概述了降低船舶装载机变压器最大设计负荷的过程。它还提供了重新设计的变压器规格,将与不考虑多样性的类似设计的规格进行比较。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Use of maximum demand principles for optimizing transformer design of a ship loader
To determine maximum demand currently and most widely used method in Australia is to simply follow Australian Standard guidelines and sum together the loads and find a suitable transformer rating. This practice is considered to have many flaws specifically from a construction and financial point of view and it is this lack of diversity, which this paper will be focusing on. Because of not giving due consideration for diversity, many transformers are largely oversized and as such can easily put strain on low budget contracts issued by clients as larger transformers not only cost more for the unit itself but will also increase structural support costs to adequately support the increased size and weight that the unit will have. The difficulty in attempting to create a more optimized transformer design is attributed to having to understand the ship loader operations at key intervals since maximum demand is the maximum load at certain time intervals. This paper outlines the process undertaken to lower the maximum design electrical load for the transformer of the ship loader. It also provides redesigned transformer specifications, which will be compared with specifications of similar designs carried out without considering diversity.
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