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Design and distribution of air nozzles in the biomass boiler assembly

机译:生物质锅炉组件中空气喷嘴的设计和分配

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Due to energy crisis as well as increasing pollution of the enviroment, renewable energy sources usage increases all over the world. These facts encouraged authors to start research over developing a uniform biomass boiler calculation model. Paper presents the design of biomass boiler assembly created for the organic Rankine cycle unit since these systems could achieve strong position in energy industry. To achieve optimal performance of boiler assembly, two additional devices have been designed: the economizer and air preheater. Such installation allows to reach the assembly efficiency of 82%. The research over the air nozzles placement in the combustion chamber in order to ensure the best firebox efficiency is also presented. Modeling is based on computational fluid dynamics simulations of pyrolysis on the moving grate. Released gases are being transported to the combustion chamber, mixed with air from the nozzles and combusted. Furthermore, the model assumes different distribution and composition of gases across the moving grate.
机译:由于能源危机以及环境污染的加剧,可再生能源的使用在全世界范围内都在增加。这些事实鼓励作者开始研究开发统一的生物质锅炉计算模型。论文介绍了为有机朗肯循环装置设计的生物质锅炉组件的设计,因为这些系统可以在能源行业中占据重要地位。为了实现锅炉组件的最佳性能,已设计了两个附加设备:节能器和空气预热器。这样的安装可使组装效率达到82%。为了确保最佳的燃烧室效率,还对燃烧室中的空气喷嘴位置进行了研究。建模基于移动炉rate上热解的计算流体动力学模拟。释放出的气体被输送到燃烧室,与来自喷嘴的空气混合并燃烧。此外,该模型假设移动炉排上的气体分布和组成不同。

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