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首页> 外文期刊>Powder Technology: An International Journal on the Science and Technology of Wet and Dry Particulate Systems >The transition velocities in a dual circulating fluidized bed reactor with variation of temperatures
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The transition velocities in a dual circulating fluidized bed reactor with variation of temperatures

机译:双循环流化床反应器中随温度变化的转变速度

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The extra-heavy oil fraction upgrading process, which consisted of a pyrolyzer and a bubbling bed as a combus-tor/gasifier, was developed. Prior to operating a dual circulating fluidized bed reactor, the transition velocities of flow regime were determined at different temperatures using silica sand particles as the bed material. The transition velocities included minimum fluidization velocity (U_(mf)), transition velocity to turbulent fluidization (U_c,U_k) and transport velocity (U_(tr)). The minimum fluidization velocity determined by measuring bed pressured drop with increasing gas velocity was observed to decrease with increasing temperature. Both the transition velocities from bubbling to turbulent fluidized bed behavior determined by measuring bed pressure drop fluctuation and transport velocity from turbulent to fast fluidized bed behavior by emptying time method increased with increasing temperature. Based on the experimental data, correlations are proposed to predict the transition velocities at different temperatures. As the actual dual circulating fluidized bed reactor operation occurs at relatively high temperature, the correlations obtained in this study are directly applicable to the extra-heavy oil fraction upgrading process. Thus, the transition velocities and flow regimes in a dual circulating fluidized bed reactor are determined.
机译:开发了超重油馏分提纯工艺,该工艺由热解炉和鼓泡床作为燃烧器/气化炉组成。在运行双循环流化床反应器之前,使用硅砂颗粒作为床层材料在不同温度下确定流态的转变速度。转变速度包括最小流化速度(U_(mf)),湍流化的转变速度(U_c,U_k)和输送速度(U_(tr))。观察到通过测量床压降随气体速度的增加而确定的最小流化速度随温度的升高而降低。通过测量床压降波动确定的从鼓泡到湍流床行为的转变速度以及通过排空时间方法从湍流到快速流化床行为的输送速度都随着温度的升高而增加。基于实验数据,提出了相关性以预测不同温度下的转变速度。由于实际的双循环流化床反应器运行是在相对较高的温度下进行的,因此本研究中获得的相关性直接适用于超重油馏分提质过程。因此,确定了双循环流化床反应器中的转变速度和流动方式。

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