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首页> 外文期刊>International journal of energy research >Thermoeconomic Modeling Of Micro-chp (micro-cooling, Heating, And Power) For Small Commercial Applications
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Thermoeconomic Modeling Of Micro-chp (micro-cooling, Heating, And Power) For Small Commercial Applications

机译:小型商业应用的微型chp(微型冷却,加热和功率)的热经济建模

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摘要

The increasing demand for electrical power as well as energy for heating and cooling of residences and small commercial buildings is a growing worldwide concern. Micro-cooling, heating, and power (micro-CHP), typically designated as less than 30 kW electric, is decentralized electricity generation coupled with thermally activated components for residential and small commercial applications. The number of combinations of components and parameters in a micro-CHP system is too many to be designed through experimental work alone. Therefore, theoretical models for different micro-CHP components and complete micro-CHP systems are needed to facilitate the design of these systems and to study their performance. This paper presents a model for micro-CHP systems for residential and small commercial applications. Some of the results that can be obtained using the developed model include the cost per month of operation of using micro-CHP versus conventional technologies, the amount of fuel per month required to run micro-CHP systems, the overall efficiency of micro-CHP systems, etc. A case study is used to demonstrate differences in the system performances of micro-CHP systems driven by a natural gas internal combustion engine and a diesel engine. Some of the results show that both systems have similar performance and that system total efficiencies in cooler months of up to 80% could be obtained. Also, modeling results show that there is a limit in fuel price that economically prevents the use of CHP systems, which is $11 MBTU~(-1) for this specific case.
机译:对住宅以及小型商业建筑的供暖和制冷的电力以及能源的需求不断增长,这已成为全球关注的焦点。微型制冷,制热和发电(微型CHP)通常指定为小于30 kW的电力,是分散式发电与热激活组件的结合,用于住宅和小型商业应用。微型CHP系统中的组件和参数的组合数量太多,无法仅通过实验工作来设计。因此,需要用于不同微型CHP组件和完整微型CHP系统的理论模型来促进这些系统的设计并研究其性能。本文提出了一种用于住宅和小型商业应用的微型热电联产系统的模型。使用开发的模型可以获得的一些结果包括使用微型热电联产与传统技术相比每月的运行成本,运行微型热电联产系统每月所需的燃料量,微型热电联产系统的整体效率案例研究用于证明由天然气内燃机和柴油机驱动的微型CHP系统在系统性能方面的差异。一些结果表明,这两个系统的性能相似,并且在较凉爽的月份中,系统总效率可达到80%。此外,建模结果还显示,燃油价格存在一定的限制,从经济角度上讲无法使用CHP系统,在这种情况下,限制为11 MBTU〜(-1)。

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