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首页> 外文期刊>International journal of thermal & environmental engineering >Structural Optimization of Solar Driven Energy and Desalination Systems
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Structural Optimization of Solar Driven Energy and Desalination Systems

机译:太阳能驱动的海水淡化系统的结构优化

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摘要

Planning and dimensioning of desalination plants is usually done by engineers based on an estimation of the capacity of makeup water that is needed for a certain site. Planning a solar- powered system of water and energy supply is complicated and requires a lot of experience from the executing engineer. Optimization methods can support the process of planning complex energy and water supply systems in many ways. Structural optimization is a way to determine an optimized size and configuration for a given task. In this paper a methodology is presented that allows for structural optimization of energy and water supply systems with a focus on a high share of solar energy use. The methodology has been implemented using a software framework that contains functionality for modelling, simulating, optimizing and analyzing energy and water supply systems. Based on load profiles for energy and water as well as technical and economical parameters of the components, a linear optimization is carried out in order to calculate an optimized structure of the system. Furthermore the optimization calculates the capacities of the desalination and energy conversion components and an optimized mode of operation depending on the primary energy prices and solar yield. The methodology uses a MILP algorithm to solve the optimization problem based on linear component models. The linear optimization is coupled with an algebraic equation solver to allow solving of nonlinear equations as well, thus forming a hybrid simulation and optimization algorithm.
机译:海水淡化厂的计划和规模确定通常由工程师根据对特定场地所需补充水容量的估算来完成。规划由太阳能供电的水和能源供应系统非常复杂,需要执行工程师丰富的经验。优化方法可以在许多方面支持规划复杂的能源和供水系统的过程。结构优化是一种确定给定任务的优化大小和配置的方法。在本文中,提出了一种方法,该方法允许对能源和供水系统进行结构优化,重点是高比例的太阳能使用。该方法已使用软件框架实施,该软件框架包含用于建模,模拟,优化和分析能源和供水系统的功能。根据能量和水的负载曲线以及组件的技术和经济参数,进行线性优化,以计算系统的优化结构。此外,优化还会根据一次能源价格和太阳能发电量来计算脱盐和能量转换组件的容量以及优化的运行模式。该方法使用MILP算法来解决基于线性组件模型的优化问题。线性优化与代数方程求解器结合使用,也可以求解非线性方程,从而形成混合仿真和优化算法。

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    Graphical Engineering Systems, Society for the Promotion of Applied Computer Science (GFaI e.V.), Berlin, Germany;

    Graphical Engineering Systems, Society for the Promotion of Applied Computer Science (GFaI e.V.), Berlin, Germany;

    Graphical Engineering Systems, Society for the Promotion of Applied Computer Science (GFaI e.V.), Berlin, Germany;

    Institut fuer Energie- und Umwelttechnik (IUTA e.V.), Duisburg, Germany;

    Institut fuer Energie- und Umwelttechnik (IUTA e.V.), Duisburg, Germany;

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