石油天然气学报
石油天然氣學報
석유천연기학보
JOURNAL OF OIL AND GAS TECHNOLOGY
2009年
5期
120-122,134
,共4页
夏志刚%张国威%刘德华%龙明%严小锋
夏誌剛%張國威%劉德華%龍明%嚴小鋒
하지강%장국위%류덕화%룡명%엄소봉
水平井%开发设计%水平段方位%水平段长度%边水油蘸%底水油藏%优化设计
水平井%開髮設計%水平段方位%水平段長度%邊水油蘸%底水油藏%優化設計
수평정%개발설계%수평단방위%수평단장도%변수유잠%저수유장%우화설계
horizontal well%reservoir%edge water reservoir%bottom water reservoir%optimal design
从基本地质油藏条件出发,以江汉油区为实例总结了边水油藏、低渗油藏和裂缝性油藏等不同油藏类型的水平井水平段方位和长度的设计原则.水平井水平段的方位由储层方向性决定,而水平段长度设计并非越长越好,应在满足水平井设计产能和经济投入允许的范围内以获得更高的储层钻遇率为目标进行设计;老区水平井水平段方位设计还需要考虑与现有井网的位置关系.在水平井单井优化设计过程中需要考虑储层方向性、油藏含油面积、老井网单井控制面积、与现有注采井网位置关系等地质和开发因素.以江汉油区广1区潜131(2)边水油藏为例运用数值模拟方法进行了水平段方位设计和长度优选.
從基本地質油藏條件齣髮,以江漢油區為實例總結瞭邊水油藏、低滲油藏和裂縫性油藏等不同油藏類型的水平井水平段方位和長度的設計原則.水平井水平段的方位由儲層方嚮性決定,而水平段長度設計併非越長越好,應在滿足水平井設計產能和經濟投入允許的範圍內以穫得更高的儲層鑽遇率為目標進行設計;老區水平井水平段方位設計還需要攷慮與現有井網的位置關繫.在水平井單井優化設計過程中需要攷慮儲層方嚮性、油藏含油麵積、老井網單井控製麵積、與現有註採井網位置關繫等地質和開髮因素.以江漢油區廣1區潛131(2)邊水油藏為例運用數值模擬方法進行瞭水平段方位設計和長度優選.
종기본지질유장조건출발,이강한유구위실례총결료변수유장、저삼유장화렬봉성유장등불동유장류형적수평정수평단방위화장도적설계원칙.수평정수평단적방위유저층방향성결정,이수평단장도설계병비월장월호,응재만족수평정설계산능화경제투입윤허적범위내이획득경고적저층찬우솔위목표진행설계;로구수평정수평단방위설계환수요고필여현유정망적위치관계.재수평정단정우화설계과정중수요고필저층방향성、유장함유면적、로정망단정공제면적、여현유주채정망위치관계등지질화개발인소.이강한유구엄1구잠131(2)변수유장위례운용수치모의방법진행료수평단방위설계화장도우선.
The design principles and methods of horizontal well development of several reservoir types concerning the geological and reservoir conditions were proposed. The mentioned reservoirs with low permeability reservoirs, edge reservoirs, fractured reservoirs, etc. The position of horizontal well decided by the direction characteristics of the reservoirs, and the length was not the longer the better, it should meet the level of productivity and economic inputs permitted. The design in a developed reservoir needed to consider the position and the location relationship of the existed well pattern and the horizontal well. It took the reservoir geography and development dynamic factors such as reservoir directional characteristics, reservoir area, production-injection well pattern control area, new reservoir development design into consideration. Horizontal well direction and length design are proposed in an edge water reservoir of Jianghan Oilfield by using numerical simulation.