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Dynamic Advanced Exergetic, Exergoeconomic, and Environmental Analyses of a Hybrid Solar City Gate Station

机译:动态先进的exergetic,Exergo经济,以及混合太阳能城门站的环境分析

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The use of solar energy to preheat natural gas before a city gate station (CGS) for reducing fuel consumption and environmental emissions is investigated in a real CGS. All analyses are conducted with a 1-h time-step throughout the entire year so that seasonal climate changes are accounted for precisely. A thermodynamic analysis of the hybrid system is performed with TRNSYS and verified with THERMOFLEX so as to ensure reliability. In addition, dynamic exergetic, exergoeconomic, and exergoenvironmental analyses for the proposed system are carried out. A life cycle assessment (LCA) based on Eco-indicator 99 is performed using SIMA PRO to compute the environmental impacts for each component of the system. The exergetic, exergoeconomic, and environmental analyses are performed in Engineering Equation Solver (EES) software. To perform the transient exergetic, exergoeconomic, and environmental analyses, the results of the thermodynamic analysis from TRNSYS are automatically imported into the EES code. The advanced exergetic, exergoeconomic, and exergoenvironmental analyses are performed to better determine components that have high potentials for improving the system; potentials are considered based on the exergy destruction, exergetic cost of destruction, and environmental impacts associated with exergy destruction.
机译:在真正的CGS中研究了在城市门门(CGS)之前使用太阳能来预热天然气,以降低燃料消耗和环境排放。所有分析都在整个一年内进行1小时逐步进行,以便精确地占季节性气候变化。用TRNSYS进行混合动力系统的热力学分析,并用ThermoFlex验证,以确保可靠性。此外,进行了拟议系统的动态exergetic,ExergoOnonomic和exergoencironmental分析。使用Sima Pro执行基于生态指示器99的生命周期评估(LCA)来计算系统每个组件的环境影响。在工程方程求解器(EES)软件中进行了exergetic,Exergo经济和环境分析。为了执行瞬态的exergetic,exergo经济和环境分析,从TRNSYS的热力学分析的结果将自动导入EES代码。进行先进的exergetic,Exergo经济和exergoen环境分析,以更好地确定具有改善系统的高潜力的组件;基于漏洞的破坏,举行的破坏成本和与暴风毁灭相关的环境影响,认为潜力。

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