首页> 外文会议>2002 International Joint Power Generation Conference, Jun 24-26, 2002, Scottsdale, Arizona >BIOMASS COMBUSTION AND ITS UTILIZATION TO THE DISTRIBUTED POWER GENERATION
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BIOMASS COMBUSTION AND ITS UTILIZATION TO THE DISTRIBUTED POWER GENERATION

机译:生物质燃烧及其在分布式发电中的利用

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A wood chip combustion behavior in a turntable type moving bed combustor is numerically analyzed in order to understand the fundamental combustion behavior in the combustor. An experiment is also carried out to compare the experimental data with numerical results and estimate the performance of the numerical analysis. Wood is used as building materials in most countries, and wooden house is the most popular in Japan. In some countries such as Japan, the period of durability of wooden house is for several decades because of high humidity and warm weather. A great amount of wooden waste is disposed and buried every year. From a viewpoint of effective use of energy, these kind of wooden wastes should be converted to valuable source of energy by efficient combustion operation. It is however difficult to operate the wooden waste conversion system because this waste includes other material such as plastics, plaster board, stone and soil. These kinds of intermingled material cannot be separated easily from wooden waste. In this study, we develop the turntable type moving bed combustor which effectively discharges the intermingled material from the combustor. We also develop the numerical model for the analysis of the combustor. The turbulent gas flow in the combustor is described by k- ε two-equation model and a momentum exchange between gas and moving bed of wood chip is considered. A solid phase is assumed to be a Newtonian fluid. Gas and solid phase temperature are calculated with considering convective and radiative heat transfers. Devolatilization reaction of wood is calculated by a first order chemical reaction model. Chemical reactions of gas and solid surface are also calculated with considering both chemical and gas film diffusion rates. Governing equations above-mentioned are simultaneously solved by control volume method. The geometry of the combustor is 470 mm in diameter and 1,500 mm in height. The combustion air is introduced tangentially from side wall. Wood chip is fed by screw feeder from side wall. Wood chip feed rate is 50 kg/hr, initial temperature of wood chip is 293 K and air ratio is 1.2. Numerical results are fairly in good agreement with experimental data. High temperature and low oxygen gas which contains unburned CO near centerline region of the combustor is observed in both experimental and numerical results. The mixing promotion of this fuel containing gas and oxygen rich gas near sidewall region is a problem of the development of efficient energy conversion system. This combustor would be one of the heat sources for a steam-driven electric power plant utilizing wooden waste as the source of fuel in local area.
机译:为了了解燃烧器的基本燃烧行为,对转盘式移动床燃烧器中的木屑燃烧行为进行了数值分析。还进行了实验,以将实验数据与数值结果进行比较,并估计数值分析的性能。在大多数国家/地区,木材被用作建筑材料,而木屋在日本最受欢迎。在一些国家,例如日本,由于高湿度和温暖的天气,木屋的使用寿命长达数十年。每年处理和掩埋大量木屑。从有效利用能量的观点出发,应通过有效的燃烧操作将这类木质废物转化为有价值的能源。但是,操作木制废物转化系统很困难,因为该废物包括其他材料,例如塑料,石膏板,石材和土壤。这些类型的混合材料无法轻易地从木屑中分离出来。在这项研究中,我们开发了转盘式移动床燃烧器,该燃烧器可有效地将混合材料从燃烧器中排出。我们还开发了用于燃烧器分析的数值模型。用k-ε两方程模型描述燃烧室中的湍流,并考虑了气体与木屑移动床之间的动量交换。固相被认为是牛顿流体。气相和固相温度的计算考虑了对流和辐射传热。通过一阶化学反应模型计算木材的脱挥发分反应。气体和固体表面的化学反应也要考虑化学和气体膜扩散速率来计算。上述控制方程式可通过控制量法同时求解。燃烧室的几何形状直径为470毫米,高度为1,500毫米。燃烧空气从侧壁切向引入。木屑由螺旋进料器从侧壁进料。木片的进料速度为50 kg / hr,木片的初始温度为293 K,空气比为1.2。数值结果与实验数据相当吻合。在实验和数值结果中均观察到高温低氧气体,其在燃烧器的中心线区域附近包含未燃烧的CO。在侧壁区域附近促进这种包含气体和富氧气体的燃料的混合促进是高效能量转换系统的发展的问题。该燃烧器将成为蒸汽驱动发电厂的热源之一,该发电厂利用木屑作为当地的燃料来源。

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