Improving the Energy Efficiency of Cyclone Dust Collectors for Wood Product Factories

P. Beaulac, M. Issa, A. Ilinca, Richard Lepage, F. Martini
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引用次数: 2

Abstract

Dust collection systems represent a significant portion of a wood product manufacturer’s total electricity use. The system fan works against the static pressure of the entire system—the blast gates, the ductwork, and the upstream or downstream cyclone and/or baghouse. A poor system design (e.g., sharp elbows or undersized ductwork) increases the total amount of static pressure in the system, the fan’s performance curve shifts, increasing the total brake horsepower required by the fan (up to the maximum point on the curve). Additionally, system designers may oversize a dust collection system to ensure adequate dust capture and transport, either to accommodate system expansion or simply to be conservative. Since theoretical fan energy use increases with its velocity cubed, this can be an expensive safety net. This paper presents a comprehensive literature review about industrial cyclone dust collectors energy saving in relation to management, technologies, and policies. Energy-saving technologies like high-efficiency motors (HEMs), variable-speed drives (VSDs), leak detection, and pressure drop reduction have all been examined. Based on energy saving technologies results, it has been found that in the industrial sectors, a sizeable amount of electric energy, and utility bill can be saved using these technologies. Finally, various energy-saving policies were reviewed.
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提高木制品厂旋风除尘器的能源效率
集尘系统占木制品制造商总用电量的很大一部分。系统风扇对抗整个系统的静压工作-防爆门,管道系统,上游或下游旋风和/或袋式仓库。糟糕的系统设计(例如,尖锐的弯头或尺寸过小的管道系统)会增加系统中的静压总量,风扇的性能曲线会发生变化,增加风扇所需的总制动马力(直到曲线上的最大值)。此外,系统设计人员可能会加大集尘系统的尺寸,以确保足够的粉尘捕获和输送,或者是为了适应系统扩展,或者只是为了保守。由于理论上风扇的能量使用随着其速度的立方而增加,这可能是一个昂贵的安全网。本文从管理、技术和政策等方面综述了工业旋风除尘器节能的相关文献。节能技术,如高效电机(HEMs)、变速驱动器(vsd)、泄漏检测和压降降低都得到了研究。根据节能技术的结果,已经发现在工业部门,使用这些技术可以节省相当数量的电能和水电费。最后,对各种节能政策进行了回顾。
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