仪器网(yiqi.com)欢迎您!

| 注册2 登录
网站首页-资讯-话题-产品-评测-品牌库-供应商-展会-招标-采购-知识-技术-社区-资料-方案-产品库-视频

应用方案

仪器网/ 应用方案/ 机载相位多普勒粒子干涉仪用于云微观物理特性测量

立即扫码咨询

联系方式:400-822-6768

联系我们时请说明在仪器网(www.yiqi.com)上看到的!

扫    码    分   享
High-level Nitrogen oxides (NOx) released to the atmosphere cause health and environmental hazards. Conventional power plants are required to have NOx emission control systems to abide by local environmental regulations. Com-mon post-combustion techniques include selective non-catalytic reduction (SNCR) or selective catalytic reduction (SCR) techniques. SNCR is a proven technology that can be implemented virtually without affecting existing indus-trial operations with low capital cost. SNCR is a method involving either aqueous ammonia or urea as the reagent injected into flue gas in the boiler/furnace within specific temperature range. This method commonly reduces the emission of NOx by 30-50%. However, high reductions can be achieved by system optimization. Placement within the proper temperature window, distribution within the cross section and residence time of reagent significantly in-fluence performance of an SNCR system. Therefore, spray lance and nozzle design is crucial for assurance of oper-ating efficiency and ammonia utilization. In this paper, an SNCR system in a circulating fluidized bed (CFB) boiler was studied with using Computational Fluid Dynamics (CFD) simulations, as it relates to spray technology. The simulation solves Navier-Stokes equa-tions with heat and mass transfer using ANSYS Fluent SNCR model with Lagrangian multiphase models and spe-cies transport model. CFD was used to diagnose the gas phase behavior and thermal distribution, to determine opti-mal spray placement and maximum penetration. The focus of this work was the parameters of the injection, which were determined based on test data acquired through in-house laboratory equipment. Temperature profile, pollutant reduction, ammonia slippage and wall impingement were used from the CFD results to assist determining the best spray design to achieve the greatest efficiency. Artium PDI-FP 双量程可机载飞行探头 激光相位多普勒干涉仪LDV,PDI,PDPA,PDA 激光诱导白炽光(LII)烟气分析仪

参与评论

全部评论(0条)

推荐方案

机载相位多普勒粒子干涉仪用于云微观物理特性测量
采用DPSSL激光器的相位多普勒干涉仪(PDI)
三间隔相位多普勒干涉仪:改进致密喷雾测试,增强相位分辨
相位多普勒干涉测量术探测区域和粒子粒径比值小于一(第
相位多普勒干涉测量术探测区域和粒子粒径比值小于一(第
微观气泡测量系统
Sensofar共聚焦白光干涉仪 | 用于插入物的前沿测量
微观大赏 |飞纳电镜邀您云赏花
油脂双层体的微观结构测量
激光干涉仪测量数控机床回转轴精度
Sensofar共聚焦白光干涉仪 | 用于飞秒激光微铣削和功能纹理化的测量
Sensofar共聚焦白光干涉仪 | 用于生物应用的纳米压力传感器初始偏转的测量
Sensofar共聚焦白光干涉仪 | 用于CMP中垫面光泽监测及3D测量
质构仪用于测定鸡肉不同部位肌肉的物理特性
用于粒子成像测速(PIV)的粒子成像测速和表面处理的新方
螺旋桨尾流的粒子成像(PIV)测量
激光干涉仪极ng确测量的局限性
Sensofar共聚焦白光干涉仪 | 用于维尔戈干涉仪仪器挡板的粗糙度表征
医用橡胶物理特性检测
使用便携式多普勒流速仪测量灌溉明渠流速的实验方案
 本实验采用声学多普勒流速仪(ADCP/ADV),基于多普勒效应实现流速测量。仪器发射固定频率的超声波信号,信号遇到水流中的悬浮颗粒(如泥沙、气泡)后反射,反射信号频率与发射信号频率产生偏移(即多普勒

在线留言

上传文档或图片,大小不超过10M
换一张?
取消