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A NEW POWER FACTOR CORRECTION SETUP USING AN INDUSTRIAL ENERGY MANAGEMENT PROGRAM

机译:一种新的功率因数校正设置,使用工业能量管理程序

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Power Factor (PF) correction is a highly effective means of increasing energy efficiency and reducing energy costs. This effective utilization of power allows for an increase on efficiency. In addition, and as power consumption is reduced, Power Factor correction increases power quality which is beneficial for the equipment itself and to the environment by reducing the amount of pollutants that are emitted into the atmosphere. In a previous work we presented and described an Energy Balance software. Here is a new package that offers an easy way to account for energy bills, working equipment and their energy operating characteristics. Among the equipment considered are: Lighting, Air Conditioning, Refrigeration Compressors, Air Compressors, Motors, and others. The electric energy consumed by all pieces of equipment is balanced against the energy bills (last 12 months). The corresponding energy costs, graphs, pie-charts, and free format reports are automatically generated showing paths and trends on energy consumption. A "Recommendations" section allows for a quick, but beyond a back of the envelop type of calculation, initial analysis of potential energy improvement projects associated with current equipment, and/or for the installation of new ones. Due to the increasing interest in PF we have addressed it in two key areas: Energy Bills, or Total PF, and Recommendations for PF, for savings in any particular piece(s) of equipment. Among the many features is a typical Power Factor triangle environment with the demand, PF, Total Power, Reactive Power, associated efficiency reduction, including different voltages, current intensities and phases. The option provides size of Capacitors and where they should be located, allowing for a variety of potential choices and their cost-effectiveness. As an output, an information verification chart is displayed and a final "Power Factor Savings" printable summary chart containing location, equipment, and all the variables described, is shown. Operating cost, total savings, simple payback, and return on investment are also displayed. In this work we briefly describe the Industrial Energy Management (IEM) program and present a Case Study on Power Factor. This provides insight on the versatility, faster data entry, balancing process, graphical display, recommendations and many other features of the software. In addition, we further demonstrate the value of the energy balance approach, and the many options for PF and other energy saving projects.
机译:功率因数(PF)校正是增加能量效率和降低能量成本的高效手段。这种有效利用的电力允许提高效率。此外,随着功耗降低,功率因数校正增加功率质量,这通过减少排放到大气中的污染物的量是有益的。在我们呈现并描述了一个能量平衡软件的工作中。这是一个新的包,提供了一种简单的方法,可以考虑能源票据,工作设备及其能量运行特性。考虑的设备中有:照明,空调,制冷压缩机,空气压缩机,电机等。所有设备消耗的电能都抵御能源票据(过去12个月)平衡。相应的能量成本,图形,饼图和免费格式报告将自动生成显示能耗的路径和趋势。 “建议”部分允许快速但超越包裹类型的背面,初步分析与当前设备相关的潜在能源改进项目,和/或用于安装新的能源改进项目。由于对PF的兴趣日益越来越多,我们已经在两个关键领域解决了它:能源票据或总PF,以及PF的建议,用于节省设备的任何特定部件。在许多特征中是一种典型的功率因数三角形环境,需求,PF,总功率,无功功率,相关效率降低,包括不同的电压,电流强度和阶段。该选项提供电容器的尺寸,以及它们应该在哪里,允许各种潜在的选择及其成本效益。作为输出,显示信息验证图表,并显示了最终的“功率因数节省”可打印摘要图表,其中包含所描述的位置,设备和所有变量。还展示运营成本,总储蓄,简单的回报和投资回报。在这项工作中,我们简要描述了工业能源管理(IEM)计划,并提出了对功率因数的案例研究。这提供了对软件的多功能性,更快的数据输入,平衡过程,图形显示,建议以及许多其他功能的洞察力。此外,我们还展示了能量平衡方法的价值,以及PF和其他节能项目的许多选项。

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