农业工程学报
農業工程學報
농업공정학보
2013年
20期
54-59
,共6页
刘在伦%董玮%张楠%吴佼
劉在倫%董瑋%張楠%吳佼
류재륜%동위%장남%오교
离心泵%模型%计算%叶轮%平衡腔压力%无因次曲线
離心泵%模型%計算%葉輪%平衡腔壓力%無因次麯線
리심빙%모형%계산%협륜%평형강압력%무인차곡선
centrifugal pumps%models%calculations%impeller%fluid pressure of the balance cavity%dimensionless curves
针对开平衡孔双密封环叶轮离心泵的平衡腔液体压力计算问题,基于液体通过叶轮平衡孔和后密封环间隙的泄漏量相等,引入了压力系数p和比面积k2个无因特征参数,推导出了平衡腔液体压力计算模型,其关系曲线为p= f (k )的无因次曲线,并给出了待定系数 a、b 的计算方法。在3BA-6泵上,取与计算相同的叶轮平衡孔直径进行了试验验证。结果表明,在泵设计工况下平衡腔液体压力的试验与理论无因次曲线较为一致,验证了平衡腔液体压力计算模型的正确性与可行性。该研究可为开平衡孔双密封环叶轮离心泵轴向力计算提供基础理论。
針對開平衡孔雙密封環葉輪離心泵的平衡腔液體壓力計算問題,基于液體通過葉輪平衡孔和後密封環間隙的洩漏量相等,引入瞭壓力繫數p和比麵積k2箇無因特徵參數,推導齣瞭平衡腔液體壓力計算模型,其關繫麯線為p= f (k )的無因次麯線,併給齣瞭待定繫數 a、b 的計算方法。在3BA-6泵上,取與計算相同的葉輪平衡孔直徑進行瞭試驗驗證。結果錶明,在泵設計工況下平衡腔液體壓力的試驗與理論無因次麯線較為一緻,驗證瞭平衡腔液體壓力計算模型的正確性與可行性。該研究可為開平衡孔雙密封環葉輪離心泵軸嚮力計算提供基礎理論。
침대개평형공쌍밀봉배협륜리심빙적평형강액체압력계산문제,기우액체통과협륜평형공화후밀봉배간극적설루량상등,인입료압력계수p화비면적k2개무인특정삼수,추도출료평형강액체압력계산모형,기관계곡선위p= f (k )적무인차곡선,병급출료대정계수 a、b 적계산방법。재3BA-6빙상,취여계산상동적협륜평형공직경진행료시험험증。결과표명,재빙설계공황하평형강액체압력적시험여이론무인차곡선교위일치,험증료평형강액체압력계산모형적정학성여가행성。해연구가위개평형공쌍밀봉배협륜리심빙축향력계산제공기출이론。
In the design of a centrifugal pump, the double seal ring impeller with the balance hole is the main methods of balancing axial thrust. The cover force produced by the pressure difference in the balance cavity region was the main part of axial thrust. A study on the calculation method of fluid pressure of the balance cavity in the impeller has important significance for the accurate calculation of the axial thrust. In order to solve the fluid pressure calculation of the balance cavity in the impeller, the two dimensionless characteristic parameters about specific area k and pressure coefficient p were introduced. Under the condition of the fluid leakage in the balance hole and the back seal ring clearance at the impeller was equal, a calculation model of fluid pressure in the balance cavity was derived. The dimensionless curve of the calculation model was p= f (k ) , and an undetermined coefficient a and b in calculation method was introduced. For the 3BA-6 pump, under the condition of the different diameter of the balance hole, the theoretical dimensionless curves of the fluid pressure in the balance cavity at design point were obtained. To illustrate the problem, under the condition of the same pump structure, a verification experiment by taking the same diameter of balance hole as the calculation was conducted. The fluid pressure of the back seal ring outlet and impeller inlet at the design point was measured, so the experiment dimensionless curve was obtained. Research showed that, the experiment dimensionless curve and the theoretical dimensionless curve on the fluid pressure in the balance cavity at the design point were coincident, and the test curve above the theoretical curve, but when k =0.5, p was maximum between the experiment dimensionless curve and the theoretical dimensionless curve, the maximum absolute error was 0.049. The result proved that the calculation model of fluid pressure in the balance cavity was correct and feasible. For a centrifugal pump of double seal ring impeller with a balance hole, the specific expressions on the calculation model of fluid pressure in the balance cavity by calculating was obtained. Furthermore, the pressure difference of the two sides of the impeller back cover and the cover force produced by the pressure difference in balance cavity region can be calculated.