首页> 外文会议>Geothermal Resources Council Annual Meeting >Thrust Bearing Load Observations in Deep Well Enclosed Lineshaft Pumps
【24h】

Thrust Bearing Load Observations in Deep Well Enclosed Lineshaft Pumps

机译:深井封闭式线轴泵的推力轴承载荷观察

获取原文

摘要

This paper reports the experimental observations of thrust bearing load on deeply set enclosed lineshaft pumps operating at various shaft speeds. In an effort to validate the accuracy of techniques commonly used to estimate such loads, a load cell was installed between the lineshaft connection and the motor thrust bearing of two identical make and model pumps. The first pump operated with an open lineshaft in the manufacturer's test lab and the second pump operated in the field with an enclosed lineshaft. The load cell allowed for real-time online measurement of impeller down-thrust encountered on the surface. The thrust measurements were normalized into thrust coefficients and plotted on curves, also known as K, curves, for various shaft speeds. At lower speeds, it is observed that both the lab pump and field pump K, curves are in agreement. However, the curves begin to diverge as shaft speed is increased above 1,600 RPM. More specifically, K, curves measured in the field at 1,320 RPM closely followed those measured in the lab, while K, curves taken in the field at 2,200 RPM were up to 58% lower than the lab measured curves. The experimental data indicate that motor thrust bearings on pumps operating at the usual speed of 1,800 RPM may be loaded significantly less than expected. As a consequence, the impeller relative movement, with respect to pump bowls, may be significantly less than expected. Overall, the data represent a comparison between a well-established lab-tested K, curve and the K, curve of a single pump running in the field. Repeatability of the findings needs to be further validated through testing of additional field pumps. Further modeling is also necessary to understand and model the up-thrust mechanisms present in the enclosing tube. Such further validation is expected to highlight general conclusions, allowing for the formulation of useful correlations which account for thrust error. Such correlations will allow operators of similar pumps to better determine motor thrust bearing loads and impeller movement to ultimately increase the production of fluid on the surface.
机译:本文报道了在各种轴速度运行的深层封闭式线轴泵上的推力轴承载荷的实验观察。为了验证通常用于估计这种负载的技术的准确性,在线轴连接和两个相同制作和模型泵的电动机推力轴之间安装了一个负载电池。第一泵在制造商的测试实验室中的开放线路运行,第二泵用封闭的线轴在现场操作。负载电池允许实时在线测量表面上遇到的叶轮下降。推力测量被归一化为推力系数,并绘制在曲线上,也称为k,曲线,用于各种轴速度。以较低的速度,观察到,实验室泵和现场泵K,曲线都是一致的。然而,随着轴的速度增加在1,600rpm以上,曲线开始发散。更具体地,K,在1,320 rpm中测量的曲线曲线紧密遵循实验室中测量的曲线,而K,则在2,200rpm的曲线中捕获的曲线高于实验室测量曲线的58%。实验数据表明,在通常速度为1,800 rpm的泵上运行的泵上的电动机推力轴承可以载入明显小于预期。结果,关于泵碗的叶轮相对运动可以显着小于预期。总的来说,数据表示在现场运行的良好实验室测试的实验室测试的K,曲线和k之间的比较。通过测试额外的现场泵,需要进一步验证调查结果的可重复性。还需要进一步建模来理解和模拟封闭管中存在的上推动机制。预计此类进一步验证将突出一般的结论,允许制定占推力误差的有用相关性。这种相关性将使类似泵的操作员能够更好地确定电动机推力轴承载荷和叶轮运动,最终增加了表面上的流体的生产。

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