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SECOND LAW ANALYSIS OF A REFRIGERATION SYSTEM FOR A NOVEL SEMI-CLOSED GAS TURBINE-ABSORPTION COMBINED CYCLE

机译:新型半封闭式燃气轮机吸收结合循环制冷系统的第二律分析

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The Power, Water Extraction, and Refrigeration (PoWER) engine has been investigated for several years as a distributed energy system, among other applications, for civilian or military use. Previous literature describing its modeling and experimental demonstration have indicated several benefits, especially when the underlying semi-closed cycle gas turbine is combined with a vapor absorption refrigeration system, the PoWER system described herein. The benefits include increased efficiency, high part-power efficiency, small lapse rate, compactness, less emission, air, and exhaust flows (which decrease filtration and duct size) and condensation of fresh water. The present paper describes the preliminary design and modeling of a modified version of this system as applied to distributed energy, especially useful in regions which are prone to major grid interruptions due to hurricanes, under - capacity, or terrorism. In such cases, the distributed energy system should support most or all services within an isolated service island, including ice production, so that the influence of the power outage is limited in scope. This paper describes the rather straightforward system modifications necessary for ice production. The primary focus of the paper is the use of this ice-making capacity to achieve significant load-leveling during the summer utility peak, hence reducing the electrical capacity requirements for the grid as well as load-leveling strategies.
机译:电力,水提取和制冷(动力)发动机已被调查几年作为分布式能源系统,其中包括平民或军事使用。以前描述其建模和实验示范的文献表明了几种益处,特别是当底层的半闭环燃气轮机与蒸汽吸收制冷系统结合时,本文所述的电力系统。这些益处包括提高效率,高部分功率效率,小渗透率,紧凑性,减少排放,空气和排气流量(减少过滤和管道尺寸)和淡水的冷凝。本文介绍了应用于分布式能量的该系统的修改版本的初步设计和建模,特别是在飓风,产能或恐怖主义上易于主要电网中断的地区。在这种情况下,分布式能源系统应支持孤立的服务岛内的大多数或所有服务,包括冰制作,以便在范围的范围内受到电力中断的影响。本文介绍了冰制造所需的相当简单的系统修改。本文的主要焦点是使用这种制冰能力在夏季效用峰期间实现显着的负载调平,因此降低了电网的电气容量要求以及负载调平策略。

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