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Prime mover sizing for base-loaded combined heating and power systems

机译:适用于基本负载的热电联产系统的原动机选型

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摘要

This article considers the problem of sizing prime movers for combined heating and power (CHP) systems operating at full load to satisfy a fraction of a facility's electric load, i.e. a base load. Prime mover sizing is examined using three criteria: operational cost, carbon dioxide emissions (CDE), and primary energy consumption (PEC). The sizing process leads to consider ratios of conversion factors applied to imported electricity to conversion factors applied to fuel consumed. These ratios are labelled R Cost, R CDE, R PEC depending on whether the conversion factors are associated with operational cost, CDE, or PEC, respectively. Analytical results show that in order to achieve savings in operational cost, CDE, or PEC, the ratios must be larger than a unique constant R Min that only depends on the CHP components efficiencies. Savings in operational cost, CDE, or PEC due to CHP operation are explicitly formulated using simple equations. This facilitates the process of comparing the tradeoffs of optimizing the savings of one criterion over the other two – a task that has traditionally been accomplished through computer simulations. A hospital building, located in Atlanta, Georgia, was used as an example to apply the methodology presented in this article.
机译:本文考虑了为满负荷运行的热电联产(CHP)系统选择原动机的问题,以满足设施电力负荷的一部分,即基本负荷。使用三个标准检查原动机的尺寸:运营成本,二氧化碳排放量(CDE)和一次能源消耗(PEC)。选型过程需要考虑应用于进口电力的转换系数与应用于燃料消耗的转换系数之比。这些比率分别标记为R Cost ,R CDE ,R PEC ,具体取决于转化因子是与运营成本,CDE还是PEC相关联,分别。分析结果表明,为了节省运营成本,CDE或PEC,比率必须大于仅取决于CHP组件效率的唯一常数R Min 。 CHP操作可节省的运行成本,CDE或PEC的节省可使用简单的公式明确表示。这有助于比较优化一个条件的节省与其他两个条件之间的权衡,这一过程通常是通过计算机模拟来完成的。以佐治亚州亚特兰大市的一所医院大楼为例,应用了本文介绍的方法。

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  • 来源
    《Journal of Power and Energy》 |2012年第1期|p.17-27|共11页
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  • 作者单位

    Department of Mechanical Engineering, Mississippi State University, Mississippi, USA;

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