首页> 外文学位 >Numerical simulation of kraft recovery boiler sootblower jets .
【24h】

Numerical simulation of kraft recovery boiler sootblower jets .

机译:硫酸盐回收锅炉吹灰器的数值模拟。

获取原文
获取原文并翻译 | 示例

摘要

The fouling of heat transfer surfaces in kraft recovery boilers is a significant concern for the pulp and paper industry. The usual approach to controlling fouling is the use of so-called "sootblowers," that utilize boiler steam to generate supersonic steam jets that are literally used to knock deposits off of the boiler tubes. About 3 to 10% of the total steam produced in a recovery boiler is used for sootblowing. This high energy cost demands that they be operated as efficiently as possible. It is thus essential to devise improved strategies for maximizing sootblower efficiency and minimizing steam consumption. To achieve this, the behaviour of sootblower jets, and the effects of various parameters on sootblowing, must be well understood.In the first part, a compressibility-corrected version of CFDLib was validated against a wide range of available experimental data, of subsonic and fully-expanded supersonic free and impinging jets simulations successfully predicted all of the cases. This compressibility-corrected model was then deemed suitable for modeling the fluid mechanics of fully-expanded sootblower jets, and so was used to study the effects of two parameters on sootblower jets: the lance pressure, and the rate of rotation of a sootblower. To study the effect of the lance pressure, numerical simulation was used to model fully-expanded sootblower jets corresponding to a range of lance pressures. To study the effect of rotation, the equations of motion were modified by adding the Coriolis and centrifugal terms, so that computations could be performed in a rotating frame of reference. Simulations were then run to study a fully-expanded sootblower jet operating at different rotation rates. The results indicate that sootblowers operate more efficiently at lower lance pressures, and that the rate of rotation does not significantly affect the structure of a sootblower jet.In the second part, the study was extended to sootblower jets not operating at the design condition. The compressibility-corrected code failed to properly simulate these under-over/expanded supersonic jets. A wide series of tests was carried out to determine that the problem was due to the turbulence model. The model was then modified to account for turbulence/shock wave interaction, by adding corrections to take into account shock unsteadiness and a realizability constraint. The new model yielded good agreement with some available measurements. The new model was then used to successfully predict some actual sootblower measurements, and to study the interaction of a sootblower jet with geometries similar to tube banks in recovery boilers. A parametric study was carried out to examine the effect of the offset between a sootblower jet and a tube bank, and of deposit size on a sootblower jet. The results indicate that the shock cell structure of a jet is only slightly affected by the offset, but that the size of a deposit strongly affects the pressure exerted by the impinging sootblower jet, which depends both on the jet shock cell structure, and on the location where the interaction occurs.This thesis documents a study of the performance of sootblower jets using numerical simulation CFDLib 3.02, a CFD code from the Los Alamos National Laboratory, was used for the simulations. This work had two main parts. In the first part, sootblower jets that perform at the design condition (fully-expanded jets) were studied in the second part, the study was extended to off-design (under/over-expanded) sootblower jets.
机译:牛皮纸回收锅炉中传热表面的结垢是制浆造纸业的重要问题。控制结垢的常用方法是使用所谓的“吹灰器”,该吹灰器利用锅炉蒸汽产生超音速蒸汽射流,该射流实际上用于将沉积物从锅炉管上击落。回收锅炉产生的总蒸汽中约有3%至10%用于吹灰。如此高的能源成本要求它们尽可能高效地运行。因此,必须设计出改进的策略,以使吹灰器效率最大化和蒸汽消耗最小化。为此,必须充分了解吹灰器射流的行为以及各种参数对吹灰的影响。在第一部分中,对可压缩性校正的CFDLib进行了验证,并获得了大量的亚音速和超音速实验数据。完全扩展的超音速自由和冲击射流模拟成功地预测了所有情况。然后认为该可压缩性校正的模型适合于对完全膨胀的吹灰喷嘴的流体力学进行建模,因此被用来研究吹灰喷嘴的两个参数的影响:喷枪压力和吹灰器的转速。为了研究喷枪压力的影响,使用数值模拟对与一定范围的喷枪压力相对应的完全膨胀的吹灰喷嘴进行建模。为了研究旋转的影响,通过添加科里奥利和离心项来修改运动方程,以便可以在旋转的参考系中执行计算。然后进行模拟以研究以不同转速运转的完全膨胀的吹灰喷嘴。结果表明吹灰器在较低的喷枪压力下更有效地工作,并且旋转速度不会显着影响吹灰器射流的结构。第二部分,研究扩展到了在设计条件下不工作的吹灰器射流。可压缩性更正的代码无法正确模拟这些过高/超音速喷气机。进行了一系列测试,以确定问题是由湍流模型引起的。然后,通过添加校正以考虑冲击不稳定和可实现性约束,对模型进行修改以解决湍流/冲击波的相互作用。新模型与一些可用的测量结果吻合良好。然后,使用新模型成功预测了一些吹灰器的实际测量值,并研究了吹灰器射流与类似于回收锅炉管束的几何形状之间的相互作用。进行了参数研究,以检查吹灰喷嘴和管束之间的偏移以及吹灰喷嘴上的沉积物大小的影响。结果表明,射流的冲击单元结构仅受到偏移的影响很小,但沉积物的大小会强烈影响撞击式吹灰器射流所施加的压力,这既取决于射流冲击单元的结构,又取决于射流冲击单元的结构。本文使用数值模拟CFDLib 3.02(来自洛斯阿拉莫斯国家实验室的CFD代码)对吹灰喷嘴的性能进行了研究。这项工作有两个主要部分。在第一部分中,研究了在设计条件下工作的吹灰喷嘴(完全膨胀的喷嘴),第二部分将研究扩展到了非设计(不足/过度膨胀)的吹灰喷嘴。

著录项

  • 作者

    Emami, Babak.;

  • 作者单位

    University of Toronto (Canada).;

  • 授予单位 University of Toronto (Canada).;
  • 学科 Engineering Chemical.Engineering Mechanical.
  • 学位 Ph.D.
  • 年度 2009
  • 页码 149 p.
  • 总页数 149
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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