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Design and fabrication of a feedstock delivery system for a 3 kw solar gasification reactor.

机译:3千瓦太阳能气化反应器原料输送系统的设计和制造。

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摘要

In the present work, a feed delivery system for a solar gasification reactor was designed, fabricated and tested. The feedstock delivery system delivers the required amount of feedstock into the reactor which is a cavity of molten salt held at 1200K. The feed delivery rate was from 8+/-(0.4) gm/min to 15(+/-0.75) gm/min. The cellulose feed particles were of diameter 0.5mm. The feed delivery system is comprised of hopper, screw feeder, stepper motor and feed injector. The hopper was designed to store a feed supply needed for continuous one hour operation of the reactor at the feed delivery rate of 15(+/-0.75) gm/min. The screw feeder, which is rotated using a stepper motor, draws the feed particles from the hopper outlet and carries them in forward direction to the feed injector. The feed injector was designed using the principle of dilute phase pneumatic transport theory which takes into account the feed particle size and feed delivery rate. It is interfaced with the reactor and it carries the feed particles to the reactor cavity with the aid of a nitrogen gas flowing at a speed of 12 m/s. Cellulose feed particles tend to become mushy at temperature above 473 K; thus clogging the feed supply line. This clogging prevents the supply of feedstock to the reactor. To prevent clogging temperature of the feed supply line was kept below 473K using air jets impinging on the feed supply tubing. A Labview control scheme was designed to control the input to the Mass Flow Controllers (MFC) and to monitor and write the outputs from temperature and pressure sensors. Output signals were logged at a frequency rate of 1000 samples per minute.
机译:在当前工作中,设计,制造和测试了用于太阳能气化反应器的进料输送系统。原料输送系统将所需量的原料输送到反应器中,该反应器是保持在1200K的熔融盐腔。进料输送速率为8 +/-(0.4)gm / min至15(+/- 0.75)gm / min。纤维素进料颗粒的直径为0.5mm。饲料输送系统由料斗,螺旋喂料器,步进电机和饲料注入器组成。料斗设计为以15(+/- 0.75)gm / min的进料输送速度存储反应器连续运行一小时所需的进料。使用步进电机旋转的螺旋进料器从进料斗出口抽出进料颗粒,并将其向前输送到进料器。进料注射器是根据稀相气动传输原理设计的,该原理考虑了进料粒度和进料速率。它与反应器相接,并且借助于以12 m / s的速度流动的氮气将进料颗粒运送到反应器腔中。纤维素饲料颗粒在高于473 K的温度下会变得糊状;因此堵塞了饲料供应线。这种堵塞阻止了原料向反应器的供应。为防止堵塞,使用空气喷嘴撞击进料管,使进料管的温度保持在473K以下。设计了Labview控制方案,以控制质量流量控制器(MFC)的输入,并监视和写入温度和压力传感器的输出。以每分钟1000个样本的频率记录输出信号。

著录项

  • 作者

    Kawale, Amey.;

  • 作者单位

    University of Minnesota.;

  • 授予单位 University of Minnesota.;
  • 学科 Mechanical engineering.;Alternative Energy.
  • 学位 M.S.M.E.
  • 年度 2013
  • 页码 75 p.
  • 总页数 75
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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