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ESTIMATING RATES OF POTENTIAL CO_2 LOSS FROM GEOLOGICAL STORAGE SITES FOR RISK AND UNCERTAINTY ANALYSIS

机译:从地质储存网站估算风险和不确定性分析的潜在CO_2损失率

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A key objective of geological storage of CO_2 in porous rock is its long-term subsurface containment in order to assist in the reduction of CO_2 emissions. Achievability of such containment can be assessed in risk and uncertainty analyses that consider the occurrence of unlikely events inducing leakage. Envisaged leakage mechanisms are flow driven by buoyancy and overpressure through permeable zones in the top seal of storage reservoirs, along permeable faults and damaged well bores. Seepage rates from natural CO_2 accumulations with non-optimum seals, flow rates from natural gas storage, and fluid discharge rates related to earthquakes can indicate potential leakage rates for risk and uncertainty analysis. For example, seepage from natural CO_2 accumulations occurs at fluxes of 0.00001 to 0.001 tonnes/yr/m~2 in the Otway Basin, Australia. Discharge from slowly flowing springs can peak at hundreds to thousands of tonnes/yr CO_2-equivalent after earthquakes but typically have short durations of days to months. Careful site selection that reduces leakage risk together with the planning for early leak detection and remediation can, in a risk and uncertainly analysis, lead to a high likelihood of project success.
机译:多孔岩石中CO_2地质储存的关键目标是其长期地下遏制,以帮助减少CO_2排放。这种遏制的可实现性可以在风险和不确定性分析中评估,以考虑诱导泄漏的不太可能事件的发生。设想的泄漏机构通过浮力和超压通过储存储存器顶部密封件的渗透区进行流动,允许渗透性故障和损坏的孔。从非最佳密封,从储气库的流量,并与地震有关流体放电率自然CO_2积累渗漏率可指示风险和不确定性分析潜在的泄漏率。例如,来自天然CO_2累积的渗透在澳大利亚Otway盆地的0.00001至0.001吨/ yr / m〜2的助熔剂。从缓慢流动的弹簧放电可以在地震后达到数百至数千吨/ yRCO_2当量的峰值,但通常具有几天到数月的短持续时间。仔细的网站选择,将泄漏风险与早期泄漏检测和修复的规划减少,风险和不确定分析导致项目成功的高可能性。

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