真空与低温
真空與低溫
진공여저온
VACUUM AND CRYOGENICS
2015年
3期
139-145
,共7页
徐侃%赵建福%宁献文%郑红阳
徐侃%趙建福%寧獻文%鄭紅暘
서간%조건복%저헌문%정홍양
工质排放%闪蒸%真空
工質排放%閃蒸%真空
공질배방%섬증%진공
working fluid evacuating%flashing vaporization%vacuum
短周期任务的航天器,在任务结束后要放掉工质,以减轻重量,提高安全性和可靠性。基于两相混合流动及液体闪蒸、闪蒸波理论,结合压力突降过程液态全氟三乙胺闪蒸试验,对1/6g重力、高真空环境排放流体回路管道内液态全氟三乙胺工质的过程进行分析。结果表明,全氟三乙胺工质向真空排放时会发生闪蒸,回路系统内液体工质的排放时间主要取决于压力排放段、重力辅助排放段和闪蒸波传播段;其中,仅重力辅助排放段依赖于重力,闪蒸波传播段时间最长;试验观测闪蒸波在内径9 mm塑料管内的传播速度为0.23 m/s,比Sim?es-Moreira & Shep-herd简化模型预测结果偏大。
短週期任務的航天器,在任務結束後要放掉工質,以減輕重量,提高安全性和可靠性。基于兩相混閤流動及液體閃蒸、閃蒸波理論,結閤壓力突降過程液態全氟三乙胺閃蒸試驗,對1/6g重力、高真空環境排放流體迴路管道內液態全氟三乙胺工質的過程進行分析。結果錶明,全氟三乙胺工質嚮真空排放時會髮生閃蒸,迴路繫統內液體工質的排放時間主要取決于壓力排放段、重力輔助排放段和閃蒸波傳播段;其中,僅重力輔助排放段依賴于重力,閃蒸波傳播段時間最長;試驗觀測閃蒸波在內徑9 mm塑料管內的傳播速度為0.23 m/s,比Sim?es-Moreira & Shep-herd簡化模型預測結果偏大。
단주기임무적항천기,재임무결속후요방도공질,이감경중량,제고안전성화가고성。기우량상혼합류동급액체섬증、섬증파이론,결합압력돌강과정액태전불삼을알섬증시험,대1/6g중력、고진공배경배방류체회로관도내액태전불삼을알공질적과정진행분석。결과표명,전불삼을알공질향진공배방시회발생섬증,회로계통내액체공질적배방시간주요취결우압력배방단、중력보조배방단화섬증파전파단;기중,부중력보조배방단의뢰우중력,섬증파전파단시간최장;시험관측섬증파재내경9 mm소료관내적전파속도위0.23 m/s,비Sim?es-Moreira & Shep-herd간화모형예측결과편대。
For lightening or improving reliability and security,more and more space aircrafts with short periodic mis-sions need to evacuate the working fluid after the mission ending. Based on the two phase flow and the liquid flashing vapori-zation theory,together with the N(C2 F5 )3 flashing vaporization experiment carrying out in the pressure rapidly decreased sur-rounding,it was analyzed in the present study that the working fluid N(C2 F5 )3 in the fluid loop evacuating in high vacuum under 1/6g gravity and condition. The results indicated that the N(C2 F5 )3 evacuating in the high vacuum would tempestu-ously flash vaporization. The time of working fluid evacuating was decided by the Pressure Evacuating Stage,the Gravity As-sisted Evacuating Stage and the Flashing Vaporization Wave Transmitting Stage,and only the second stage depended on the gravity,the last stage time is the longest. The velocity 0. 23m/s of the flashing vaporization wave transmitting was experimen-tally measured in the plastic pipe with 9mm in diameter. It was faster than the prediction by Sim?es-Moreira & Shepherd simplified model.