陕西科技大学学报(自然科学版)
陝西科技大學學報(自然科學版)
협서과기대학학보(자연과학판)
JOURNAL OF SHAANXI UNIVERSITY OF SCIENCE & TECHNOLOGY
2014年
1期
105-109
,共5页
顾浩%程林松%黄世军%魏绍蕾%户昶昊
顧浩%程林鬆%黃世軍%魏紹蕾%戶昶昊
고호%정림송%황세군%위소뢰%호창호
井筒热损失%稳态逐次替换%叠加原理%非稳态%计算
井筒熱損失%穩態逐次替換%疊加原理%非穩態%計算
정통열손실%은태축차체환%첩가원리%비은태%계산
wellbore heat loss%steady successive substitution%superposition principle%un-steady conditions%calculation
在蒸汽吞吐注汽阶段,井口注入参数往往会随时间变化,传统的井筒传热模型没有考虑到这一点,并且在算法上只按井筒深度分段,忽略了注汽时间也需分段。为了准确计算非稳态注汽条件下井筒热损失,首先,利用稳态逐次替换法将非稳态井口注入参数分时间段处理,因而水泥环外缘温度在较短时间内可以视作定值;其次,基于叠加原理对井筒传热模型进行修正,并提出了井筒总热损失表达式;最后,按时间和深度分段求解整个模型。结果表明:即使在相同深度段内,热损失速率也不是定值。因此,某深度段在注汽过程中的总热损失大小应该将各时间段内的热损失叠加。
在蒸汽吞吐註汽階段,井口註入參數往往會隨時間變化,傳統的井筒傳熱模型沒有攷慮到這一點,併且在算法上隻按井筒深度分段,忽略瞭註汽時間也需分段。為瞭準確計算非穩態註汽條件下井筒熱損失,首先,利用穩態逐次替換法將非穩態井口註入參數分時間段處理,因而水泥環外緣溫度在較短時間內可以視作定值;其次,基于疊加原理對井筒傳熱模型進行脩正,併提齣瞭井筒總熱損失錶達式;最後,按時間和深度分段求解整箇模型。結果錶明:即使在相同深度段內,熱損失速率也不是定值。因此,某深度段在註汽過程中的總熱損失大小應該將各時間段內的熱損失疊加。
재증기탄토주기계단,정구주입삼수왕왕회수시간변화,전통적정통전열모형몰유고필도저일점,병차재산법상지안정통심도분단,홀략료주기시간야수분단。위료준학계산비은태주기조건하정통열손실,수선,이용은태축차체환법장비은태정구주입삼수분시간단처리,인이수니배외연온도재교단시간내가이시작정치;기차,기우첩가원리대정통전열모형진행수정,병제출료정통총열손실표체식;최후,안시간화심도분단구해정개모형。결과표명:즉사재상동심도단내,열손실속솔야불시정치。인차,모심도단재주기과정중적총열손실대소응해장각시간단내적열손실첩가。
In the stage of steam stimulation ,the wellhead injection-parameters often change o-ver time during steam injection ,the traditional model for wellbore heat loss failed to consider this factor .Also ,previous work calculated heat loss rate just according to depth step ,ignoring injection-time need to be segmented .In order to accurately calculate the wellbore heat loss under unsteady steam-injection conditions ,firstly ,the unsteady steam-injection parameters were piecewise treated with the method of steady successive substitution ,so the cement/for-mation temperature could be assumed to be constant ;Secondly ,the heat transfer model was modified based on the principle of superposition ,and a total wellbore heat loss formula was put forward ;At last ,the model was solved both as time step and depth step .The results show that the wellbore heat loss rate decreases with injection-time even in the same depth , therefore ,the total heat loss of a certain depth during the w hole injection process is the sum of heat loss in every time step .