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Waste-to-energy facility planning under uncertain circumstances

机译:不确定情况下的垃圾发电设施规划

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The paper deals with the development and presentation of the use of an advanced computational optimization tool for the conceptual planning of facilities in the field of waste-to-energy. The determination of the suitable capacity and sizing of an appropriate heat recovery system, according to adopted heat utilization strategy (i.e. either only electricity production or combined heat and power if feasible), represent crucial decisions about each individual incineration plant in its early project stage. The economic feasibility of the project should be guaranteed at the same time. The feasibility is measured by internal rate of return. An optimization model supporting such decisions was built and is introduced. Building a new incinerator, from the initial considerations to its full operation, is a long-term process with duration at a minimum of 5-7 years. The erection is then followed by an operational phase exceeding 20 years. The unclear future development of important parameters affecting the project sustainability is reflected by implementing principal concepts of stochastic programming. In the article, a brief overview of principal ideas related to decision making under uncertainty (wait-and-see and/or here-and-now approaches, specification, and use of scenarios) is given first, followed by the description of a mathematical model. Then, the selected approach is demonstrated through a case study involving a municipal solid waste incinerator.
机译:本文探讨了先进的计算优化工具在废物转化为能源领域的概念设计中的开发和应用。根据采用的热利用策略(即仅发电或在可行的情况下将热电联产)确定合适的容量并确定合适的热回收系统的规模,是每个项目初期焚烧厂的关键决策。同时要保证项目的经济可行性。可行性以内部收益率衡量。建立并介绍了支持此类决策的优化模型。从最初的考虑到全面运行,建造一个新的焚化炉是一个长期过程,至少需要5-7年的时间。架设之后是超过20年的运营阶段。实施随机编程的主要概念反映了影响项目可持续性的重要参数在未来的不确定性。在本文中,首先简要概述了与不确定性下的决策相关的主要思想(观望和/或此处和现在的方法,规范和方案的使用),然后给出了数学描述。模型。然后,通过涉及城市固体废物焚化炉的案例研究证明了所选方法。

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