首页> 外文会议>Annual North American Waste to Energy Conference(NAWTEC15); 20070521-23; Miami,FL(US) >New Development in EfW Boiler Process Modeling: Fully Integrated CFD Model
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New Development in EfW Boiler Process Modeling: Fully Integrated CFD Model

机译:EfW锅炉过程建模的新进展:完全集成的CFD模型

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This paper focuses on a Computational Fluid Dynamics (CFD) application to Energy-from-Waste (EfW) boiler systems, which are much smaller than utility boilers, but typically have more complicated design and performance issues due to the nature of their fuel: municipal solid waste (MSW). The majority of the commercially available CFD software packages have impressive capabilities in homogeneous flow modeling, which make them very suitable for gas fired boilers and with some reasonable simplifications to oil and pulverized coal fired boilers. But this is not the case for EfW boilers, especially mass-burn technology, where MSW combustion on the grate is the "heart" of the process. These boilers have two interacting phases: MSW burning on the grate and combustion products with entrained fly ash particles above the grate. This challenge has been recognized from the very first applications of CFD modeling in the EfW industry. This paper describes several approaches to numeric modeling of MSW boilers. In the most successful cases, two different models have been built: one for the grate combustion and another for the homogeneous gas flow, with back-and-forth iterations between these two models. Such an approach has given Covanta Energy (Covanta) a good start in its CFD modeling program. A number of models have been built, tested and validated, resulting in several successful project executions. However, some serious limitations have been found in this approach as explained in this paper. Recognizing these deficiencies, Covanta has recently made a new significant step in its CFD development program by creating an innovative, fully integrated CFD model that comprises solid fuel combustion on the grate, gaseous phase interactions above the grate, and the rest of the boiler. While this integrated model and its validation are still in progress, Covanta is moving forward on its application to on-going projects.
机译:本文着重于将计算流体动力学(CFD)应用到废物能源(EfW)锅炉系统中,该系统比公用事业锅炉小得多,但由于燃料的性质,通常具有更复杂的设计和性能问题:市政固体废物(MSW)。大多数商用CFD软件包在均相流建模中具有令人印象深刻的功能,这使其非常适合于燃气锅炉,并且在一定程度上简化了燃油和煤粉锅炉的使用。但这不是EfW锅炉的情况,尤其是大批量燃烧技术,在炉排上的MSW燃烧是该过程的“心脏”。这些锅炉有两个相互作用的阶段:在炉排上燃烧垃圾和在炉排上方夹带飞灰颗粒的燃烧产物。 CFD建模在EfW行业中的最初应用已经认识到了这一挑战。本文介绍了MSW锅炉数值建模的几种方法。在最成功的情况下,已经建立了两种不同的模型:一种用于炉排燃烧,另一种用于均匀气流,这两种模型之间来回迭代。这种方法为Covanta Energy(Covanta)的CFD建模程序提供了一个良好的开端。已经建立,测试和验证了许多模型,从而成功完成了多个项目。但是,如本文所述,在此方法中发现了一些严重的局限性。认识到这些缺陷,Covanta最近在其CFD开发计划中迈出了新的重要一步,它创建了一个创新的,完全集成的CFD模型,该模型包括炉排上的固体燃料燃烧,炉排上方的气相相互作用以及锅炉的其余部分。尽管此集成模型及其验证仍在进行中,但Covanta仍在将其应用程序推进到正在进行的项目中。

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