首页> 外文会议>European Symposium on Computer Aided Process Engineering >A Systematic Approach for the Optimal Design of an Off-Grid Polygeneration System using Fuzzy Linear Programming Model
【24h】

A Systematic Approach for the Optimal Design of an Off-Grid Polygeneration System using Fuzzy Linear Programming Model

机译:采用模糊线性规划模型的脱网多结型系统最优设计的系统方法

获取原文

摘要

Polygeneration systems provide an avenue for the production of clean energy. It consists of interdependent processes which seek opportunities to reuse by-products of processes to increase the thermodynamic efficiency of the system further, hence, making it challenging to design. This study looks into designing a polygeneration system for an off-grid community which considers the use of a micro-hydro power plant as the base technology, and a biomass-based Sterling engine together with a diesel engine plant as potential backup power generating technology. In addition to electricity, the community also intends to generate purified water through a water treatment facility and manufacture ice through an ice plant. A fuzzy linear programming model is used to identify the best polygeneration system design which simultaneously maximizes the product output, maximizes the profit, and minimizes the capital costs. A hypothetical but realistic case study of an off-grid polygeneration system is used to demonstrate the developed model consisting of a micro-hydro plant, an ice plant, and a water treatment facility for the community. The model selects an appropriate backup power generating technology. The results show two optimal configurations of polygeneration plants given varying scenarios. Furthermore, sensitivity analysis is conducted to highlight the overall degree of satisfaction across the various values of profit and capital costs. This developed model shall aid the national and local government officials together with engineers in the design of a polygeneration system for off-grid communities.
机译:多项化系统为生产清洁能源提供途径。它由相互依存的过程组成,该过程寻求重复使用流程的副产品以提高系统的热力学效率,从而使其具有挑战性。本研究探讨了用于离网社区的多结系统,该系统考虑使用微水力发电设备作为基础技术,以及一种基于生物质的纯发动机以及柴油发动机设备作为潜在的备用发电技术。除了电力外,社区还打算通过水处理设施产生净水,通过冰厂制造冰。模糊线性编程模型用于识别最佳的多元系统设计,同时最大化产品输出,最大限度地提高利润,并最大限度地减少资本成本。对异链多种系统的假设但实际的案例研究用于展示由微水力植物,冰工厂和社区水处理设施组成的开发模型。该模型选择适当的备用发电技术。结果表明,给定不同情景的多项化植物的两种最佳配置。此外,进行敏感性分析,以突出各种利润和资本成本的整体满意度。该开发模式应帮助国家和地方政府官员与工程师一起设计,以设计用于离网社区的多项要制度。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号