APPLIED GEOSTATISTICS TO THE ASSESSMENT OF ENHANCED GEOTHERMAL SYSTEM (EGS) IN CENTRAL SUMATERA BASIN

J. Sihotang, Syaiful Alam
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Abstract

Thick sediment (over 2,500 m), fractured basement and high thermal gradient (up to 19.10 C/100 m) of Central Sumatra Basin are suitable factors to have the Enhanced Geothermal System (EGS) potential. A number of 130 wells data were used to evaluate the EGS of the basin. The assessment is divided into the number of estimation within the grid cell (1x1 km) of sediment thickness, heat flow, thermal conductivity and technical potential calculated starting from basement-sediment layer interface. The distribution of heat flow and gradient thermal values correspond to the sediment layer. The autocorrelation test indicates the data is stationary. The variance of data gets bigger after a depth over 5.5 km. According to the Beardsmore protocol, the technical potential value ranged from 0.5 MW up to 4.7 MW at a depth of 3.5 km. In addition, the lowest technical potential is 0.66 MW and the highest is 5.76 MW at a depth of 4.5 km. The ordinary kriging, using the number of lags 10 in variogram modeling, estimated the technical potential distribution is higher to the southwest.
应用地统计学方法评价中苏门答腊盆地增强型地热系统
中苏门答腊盆地厚沉积(2500 m以上)、断裂基底和高热梯度(高达19.10 C/100 m)是具有增强型地热系统(EGS)潜力的适宜因素。使用了130口井的数据来评估该盆地的EGS。评价分为栅格单元(1x1 km)内沉积物厚度、热流、导热系数和技术势的估算次数,从基底-沉积层界面开始计算。热流和梯度热值的分布与沉积物层相对应。自相关检验表明数据是平稳的。深度超过5.5 km后,数据的方差会变得更大。根据Beardsmore协议,在3.5公里的深度,技术潜在值从0.5兆瓦到4.7兆瓦不等。此外,最低技术潜力为0.66 MW,最高技术潜力为5.76 MW,深度为4.5 km。普通克里格利用变异函数模型中的滞后数10,估计技术潜力分布向西南偏大。
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