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首页> 外文期刊>International Journal of Heat and Mass Transfer >Heat And Mass Transfer Analysis Of A Suspension Of Reacting Particles Subjected To Concentrated Solar Radiation - Application To The Steam-gasification Of Carbonaceous Materials
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Heat And Mass Transfer Analysis Of A Suspension Of Reacting Particles Subjected To Concentrated Solar Radiation - Application To The Steam-gasification Of Carbonaceous Materials

机译:集中太阳辐射作用下反应颗粒悬浮液的传热传质分析-在含碳材料蒸汽气化中的应用

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摘要

A chemical reactor for the steam-gasification of carbonaceous materials (e.g. coal, coke, biomass) using high-temperature solar process heat is modeled by means of a two-phase formulation that couples radiative, convective, and conductive heat transfer to the chemical kinetics for polydisperse suspensions of reacting particles. The governing mass and energy conservation equations are solved by applying advanced Monte-Carlo and finite-volume techniques with smoothing and underrelaxation. Validation is accomplished by comparing the numerically calculated temperatures, product compositions, and chemical conversions with the experimentally measured values obtained from testing a 5 kW solar reactor prototype in a high-flux solar furnace. A unique feature of the reactor concept is that the gas-particle flow is directly exposed to concentrated solar radiation, providing efficient radiative heat transfer to the reaction site for driving the high-temperature highly endothermic process.
机译:通过将辐射,对流和传导热传递耦合到化学动力学的两相公式,模拟了使用高温太阳能过程热对碳质材料(例如煤,焦炭,生物质)进行蒸汽气化的化学反应器用于反应颗粒的多分散悬浮液。控制质量和能量守恒方程是通过应用先进的蒙特卡洛和具有平滑和欠松弛的有限体积技术求解的。验证是通过将数值计算的温度,产品组成和化学转化率与通过在高通量太阳能炉中测试5 kW太阳能反应堆原型获得的实验测量值进行比较来完成的。反应器概念的独特之处在于,气体颗粒流直接暴露于集中的太阳辐射中,从而将有效的辐射热传递到反应位置,以驱动高温高吸热过程。

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