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Geo-engineering and Economic Assessment of a Potential Carbon Capture and Storage Site in Southeast Queensland, Australia

机译:澳大利亚东南昆士兰州潜在碳捕获和储存场地的地理工程与经济评估

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This paper presents geo-engineering and economic sensitivity analyses and assessments of the Wunger Ridge flank Carbon Capture and Storage (CCS) site. A numerical reservoir simulation examines injection rates anging from 0.5 to 1.5 million tonnes of CO2/year. Primary factors affecting the ability to inject CO2 include permeability, formation fracture gradient, and multiphase flow functions. Secondary factors include the solubility of CO2 in the formation brine, injection well location with respect to the low barriers/low-permeability aquifers, model geometry including faults, grid size and refinement, and injection well type. Less significant factors include hydrodynamic effects. The economics are assessed using an internally developed techno-economic model. The model optimises the CO2 injection cost based on geo-engineering data and recent equipment costs. The overall costs depend on the initial costs of CO2 capture and on source-to-sink distances and their associated pipeline costs. Secondary cost variations are highly dependant on fracture gradient, permeability and CO2 injection rates. Depending on the injection characteristics, the specific cost of CO2 avoided is between A30 and A44 per tonne.
机译:本文提出了地理工程和经济敏感性分析和对Wuneger Ridge碳捕获和储存(CCS)的评估。数值水库模拟检查注射率从0.5〜150万吨的二氧化碳/年逆转。影响注入CO2的能力的主要因素包括渗透性,形成骨折梯度和多相流动功能。二次因素包括CO2在地层盐水中的溶解度,注射孔位置相对于低屏障/低渗透率含水层,模型几何形状,包括故障,网格尺寸和细化,并注入井类型。不太重要的因素包括流体动力学效应。使用内部开发的技术经济模式评估经济学。该模型基于地理工程数据和最近的设备成本优化了CO2注入成本。整体成本取决于CO2捕获的初始成本和源区到汇距离及其相关管道成本。二次成本变化高度依赖于断裂梯度,渗透率和二氧化碳注射率。根据注射特性,CO2的特定成本避免在每吨A30和A44之间。

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