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GAS FLOW REGIMES IN FLUIDIZED-BED COMBUSTORS

机译:流化床燃烧器中的气流制度

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The effects of pressure and temperature on the gas flow regimes in the dense beds of fluidized-bed combustors were reviewed and investigated. Diagrams were developed to identify the gas flow regimes in both bubble and particulate phases, since these significantly affect the combustion processes occurring within the bed. In commercial pressurized fluidized-bed combustion, bubbles were effectively cloudless and no gas backmixing or slugging occurred; so the gas flow in these beds could be modeled by assuming two phases (bubble and particulate) with plug flow through each phase. For industrial-scale atmospheric fluidized-bed combustion (AFBC), different gas flow regimes occurred in the bubbling bed and circulating bed technologies. The bubbles in bubbling AFBC were cloudless with no gas backmixing or slugging, so the gas flow in these beds could also be modeled by assuming two phases (bubble and particulate) with plug flow through each phase. However, the dense bed formed at the base of the riser in industrial-scale circulating fluidized-bed combustion operating at atmospheric pressure contained clouded bubbles and experienced significant gas backmixing, so the gas flow should be modeled by assuming three phases (bubble, cloud, and emulsion) with perfect mixing in each phase, providing the primary air fluidizing velocity is below the exploding bubble regime.
机译:综述和研究了压力和温度对流化床燃烧器密集床中气流制度的影响。开发了图表以识别泡沫和颗粒阶段中的气体流动制度,因为这些显着影响床内发生的燃烧过程。在商业加压流化床燃烧中,泡沫有效无云,不会发生气体背模或粘连;因此,在这些床中的气流可以通过假设两相(泡沫和颗粒)通过每个相的塞流来建模。对于工业规模的大气流化床燃烧(AFBC),冒泡床和循环床技术发生了不同的气流制度。鼓泡AFBC中的气泡无云,没有气体背悬或折叠,因此也可以通过假设通过每个相的塞流(泡沫和颗粒)来建模这些床中的气流。然而,在工业规模循环流化床燃烧的提升机基部形成的致密床在大气压中运行浑浊的气泡并且经历了显着的气体后旋转,因此应通过假设三个阶段(泡沫,云,在每个相中具有完美混合的乳液,提供初级空气流化速度低于爆炸泡沫状态。

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