首页> 外文会议>International symposium on coal combustion >Reactor Design,Cold-Model Experiment and CFD Modeling for Chemical Looping Combustion
【24h】

Reactor Design,Cold-Model Experiment and CFD Modeling for Chemical Looping Combustion

机译:电抗器设计,冷模型实验和化学循环燃烧的CFD模型

获取原文

摘要

Chemical looping combustion (CLC) is an efficient,clean and cheap technology for CO2 capture,and an interconnected fluidized bed is more appropriate solution for CLC. This paper aims to design a reactor system for CLC,carry out cold-model experiment of the system,and model fuel reactor using commercial CFD software.As for the CLC system, the air reactor (AR) is designed as a fast fluidized bed while the fuel reactor (FR) is a bubbling bed;a cyclone is used for solid separation of the AR exit flow. The AR and FR are separated by two U-type loop seals to remain gas sealed.Considered the chemical kinetics of oxygen carrier,fluid dynamics,pressure balance and mass balance of the system simultaneously,some key design parameters of a CH4fueled and Fe2O3/Al2O3-based CLC reactor (thermal power of 50kWth)are determined,including key geometric parameters (reactor cross-sectional area and reactor height) and operation parameters (bed material quantity,solid circulation rate,apparent gas velocity of each reactor).A cold-model bench having same geometric parameters with its prototype is built up to study the effects of various operation conditions (including gas velocity in the reactors and loop seals,and bed material height,etc.) on the solids circulation rate,gas leakage,and pressure balance.It is witnessed the cold-model system is able to meet special requirements for CLC system such as gas sealing between AR and FR, the circulation rate and particles residence time.Furthermore, the thermal FR reactor with oxygen carrier of Fe2O3/Al2O3 and fuel of CE,is simulated by commercial CFD solver FLUENT.It is found that for the design case the combustion efficiency of CH4 reaches 88.2%.A few part of methane is unburned due to fast,large bubbles rising through the reactor.
机译:化学循环燃烧(CLC)是CO 2捕获的有效,清洁和廉价的技术,并且互连的流化床是CLC的更合适的解决方案。本文旨在为CLC设计电抗器系统,对系统进行冷模型实验,以及使用商业CFD软件的模型燃料电抗器。用于CLC系统,空气反应器(AR)设计为快速流化床燃料反应器(FR)是鼓泡床;旋风分离器用于AR出口流的固体分离。 AR和Fr通过两个U型环密封件分开,以保持气体密封。同时提供氧载体,流体动力学,压力平衡和质量平衡的化学动力学,CH4Fueled和Fe2O3 / Al2O3的一些关键设计参数。基于基于CLC反应器(50KWTH的热功率),包括关键几何参数(反应堆横截面积和反应器高度)和操作参数(床材料量,固体循环速率,每个反应器的表观气体速度).a冷 - 建立具有其原型的相同几何参数的模型台,以研究各种操作条件(包括反应器和环密封件中的气体速度,以及床材料高度等的效果。)在固体循环速率,气体泄漏和压力上余额。它目睹了冷模型系统能够满足CLC系统的特殊要求,例如AR和FR之间的气体密封,循环速率和粒子停留时间。繁殖,热量通过Fe2O3 / Al2O3的氧载体和CE的燃料,通过商业CFD求解器进行模拟Al FR反应器。对于设计情况,CH4的燃烧效率达到88.2%。即几个部分甲烷因快速而未燃烧。 ,大气泡通过反应器升起。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号