新能源进展
新能源進展
신능원진전
Advances in New and Renewable Enengy
2015年
1期
75-80
,共6页
于立松%张卫东%吴双亮%王洁%任韶然%张亮
于立鬆%張衛東%吳雙亮%王潔%任韶然%張亮
우립송%장위동%오쌍량%왕길%임소연%장량
二氧化碳%封存%盐水层%溶解度
二氧化碳%封存%鹽水層%溶解度
이양화탄%봉존%염수층%용해도
carbon dioxide%sequestration%saline aquifers%solubility
将二氧化碳埋存到深部盐水层中是目前缓解温室效应的可行性对策之一,在评价储层理论埋存量时,溶解封存量在总埋存量中占有很大的比例。本文通过对相关文献的调研,计算对比了Duan&Sun模型模拟数据与前人实验数据的误差,根据前人实验与本文模拟数据分析了二氧化碳在盐水层中溶解的动力过程和热力过程,二氧化碳通过扩散作用溶解到盐水中,引起盐水层密度的变化,计算系统瑞利数满足对流运动发生的基本条件后,系统产生对流,这有利于二氧化碳的溶解。分析了温度、压力和矿化度对二氧化碳溶解的影响。在前几百年内溶解缓慢易导致泄漏,低温高压、低矿化度下二氧化碳溶解度较高,小二氧化碳水滴更有利于二氧化碳封存。
將二氧化碳埋存到深部鹽水層中是目前緩解溫室效應的可行性對策之一,在評價儲層理論埋存量時,溶解封存量在總埋存量中佔有很大的比例。本文通過對相關文獻的調研,計算對比瞭Duan&Sun模型模擬數據與前人實驗數據的誤差,根據前人實驗與本文模擬數據分析瞭二氧化碳在鹽水層中溶解的動力過程和熱力過程,二氧化碳通過擴散作用溶解到鹽水中,引起鹽水層密度的變化,計算繫統瑞利數滿足對流運動髮生的基本條件後,繫統產生對流,這有利于二氧化碳的溶解。分析瞭溫度、壓力和礦化度對二氧化碳溶解的影響。在前幾百年內溶解緩慢易導緻洩漏,低溫高壓、低礦化度下二氧化碳溶解度較高,小二氧化碳水滴更有利于二氧化碳封存。
장이양화탄매존도심부염수층중시목전완해온실효응적가행성대책지일,재평개저층이론매존량시,용해봉존량재총매존량중점유흔대적비례。본문통과대상관문헌적조연,계산대비료Duan&Sun모형모의수거여전인실험수거적오차,근거전인실험여본문모의수거분석료이양화탄재염수층중용해적동력과정화열력과정,이양화탄통과확산작용용해도염수중,인기염수층밀도적변화,계산계통서리수만족대류운동발생적기본조건후,계통산생대류,저유리우이양화탄적용해。분석료온도、압력화광화도대이양화탄용해적영향。재전궤백년내용해완만역도치설루,저온고압、저광화도하이양화탄용해도교고,소이양화탄수적경유리우이양화탄봉존。
At present, storing CO2 into the deep saline aquifers is one of the feasible ways to mitigate the greenhouse effect, when evaluate the reservoir’s theory sequestration, the amount of dissolved sequestration account for a large proportion of the total sequestration. This paper studies the kinetics and thermodynamics of CO2 dissolution into saline aquifers by the data of previous experiments and simulation using Model Duan&Sun. The diffusion of CO2 into underlying formation waters will increase the density of saline water, we can know whether convection is happening by judging with Rayleigh number, and which is conducive to the dissolution of CO2. This paper also studies the effect of temperature, pressure and salinity on dissolution. The process of dissolution is slowly in the first few hundred years, at which leakage is easy to happen. Low temperature, high pressure and low brine salinity is more conducive to the dissolution of CO2. Small droplets are more benefit for CO2 sequestration.