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ECONOMIC OPTIMIZATION OF A DISTRIBUTED GENERATION SYSTEM FOR AN OFFICE BUILDING

机译:办公大楼分布式发电系统的经济优化

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摘要

Methodologies have been developed to aid in selection of a candidate distributed generation system for use in meeting a building's electrical demand. The systems studied are comprised of a combination of microturbines and/or natural gas reciprocating engines. These systems could also be used as prime movers in a combined heat and power application. Economic optimizations have been performed in order to identify distributed generation/prime mover combinations and operating strategies that yield the lowest electrical generation cost. These optimizations take into account a finite set of operating scenarios and equipment combinations. In addition to the economic optimizations, a direct comparison of customer design considerations has been made, highlighting the advantages and disadvantages of both microturbines and reciprocating engines. In this study, the optimal system for a 9290 m~2 (100,000 ft~2) office building in New York City at today's natural gas prices was determined to be a combination of natural gas reciprocating engines and microturbines. This system yielded a 5% reduction in generation costs over other cases examined including all homogeneous composition systems. With an increase in natural gas prices, the optimal case changes to be comprised solely of natural gas reciprocating engines. It has been shown that many factors are important to selection of optimal equipment including the specific end use load profile, cost of fuel, and system operating strategy.
机译:已经开发出方法以帮助选择候选的分布式发电系统以满足建筑物的电力需求。研究的系统由微型涡轮机和/或天然气往复式发动机的组合组成。这些系统还可以在热电联产应用中用作原动机。为了确定产生最低发电成本的分布式发电/原动机组合和运行策略,已经进行了经济优化。这些优化考虑了一组有限的操作方案和设备组合。除了经济上的优化外,还对客户的设计考虑因素进行了直接比较,突出了微型涡轮机和往复式发动机的优缺点。在这项研究中,以当今的天然气价格,确定纽约市9290 m〜2(100,000 ft〜2)办公楼的最佳系统是天然气往复式发动机和微型涡轮机的组合。与所检查的其他情况(包括所有均质组合物系统)相比,该系统的发电成本降低了5%。随着天然气价格的上涨,最佳情况变成只由天然气往复式发动机组成。已经显示出许多因素对于选择最佳设备很重要,包括特定的最终用途负载曲线,燃料成本和系统操作策略。

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