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Variable flow controls of closed system pumps for energy savings in maritime power systems

机译:用于海上电力系统节能的闭式系统泵的可变流量控制

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摘要

Pumps are extensively used in maritime industries as marine vessels utilize a wide range of pumps and pumping techniques to transfer and distribute all types of air and fluids. The electrical energy consumed by the various motors accounts for about 70% of a vessel’s total power consumption, and this presents a problem in unique marine environments. Such situations are especially conducive to energy-saving strategies using variable frequency drives (VFDs) in centrifugal load service. This paper presents the design and results of applying variable frequency constant pressure technology in closed system pumps on marine vessels. The existing problem of traditional control methods for closed system pumps is analyzed and a mathematical model for variable flow controls with the appropriate control settings is derived. The performance of the proposed method is demonstrated and verified through experimental and field tests of a practical auxiliary boiler feed water management system on a commercial vessel. It is proved that the proposed method can maintain constant water pressure for closed system pumps and provide an efficient way to measure energy savings and maintenance benefits. The results serve to highlight the significant energy-saving opportunities for retrofitted and new VFD installations in marine power applications.
机译:泵在海上工业中被广泛使用,因为船舶利用广泛的泵和泵技术来转移和分配所有类型的空气和流体。各种电机消耗的电能约占船舶总功率的70%,这在独特的海洋环境中是一个问题。这种情况特别有利于在离心负载服务中使用变频驱动器(VFD)的节能策略。本文介绍了在船舶密闭系统泵中应用变频恒压技术的设计和结果。分析了封闭系统泵的传统控制方法存在的问题,并推导了具有适当控制设置的可变流量控制的数学模型。通过对商用船舶上实用的辅助锅炉给水管理系统进行实验和现场测试,证明并验证了该方法的性能。实践证明,该方法可以保持闭式系统泵的恒定水压,为测量节能量和维护效益提供了一种有效的方法。研究结果突出显示了船用电力设备改装和新型VFD安装的重大节能机会。

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