富油煤可控氧化自燃的原位热解开采理论与技术构想

In-situ pyrolysis mining theory and technical conception of controllable and spontaneous combustion of tar-rich coal

  • 摘要: 富油煤作为一种战略性煤基油气资源,在我国储量丰富。开发富油煤的油气资源,对保障我国能源安全,助力“双碳”目标和能源转型具有重大战略价值。地下原位热解提取油气是富油煤低碳绿色开发和高效利用的重要途径之一。利用热解半焦自燃作为原位热解的热源,可以提高富油煤资源开采效率,但需要着重突破热解半焦自燃可控、传质传热高效、地质保障系统可靠、地下环境污染可控等难题。系统阐述了富油煤可控氧化自燃的原位热解开采科学技术构想,提出了富油煤原位热解开采的采动岩体力学理论、热解半焦可控氧化自燃理论、“四场”可视化理论、多物理场耦合传热理论,揭示了开采扰动下煤及围岩的耦合损伤机理、热解半焦自燃放热特性及可控条件、多物理场耦合岩体力学行为与能量演化特征,为富油煤可控氧化自燃的原位热解开采技术体系构建提供了理论依据。对开采技术中的关键环节,建立了热解半焦可控氧化自燃技术、原位传质传热增强技术、地下封闭体系技术和原位开采地质保障技术,为富油煤可控氧化自燃的原位热解开采提供了技术支持。在此基础上,构建了富油煤可控氧化自燃的原位热解开采理论与技术体系,明确了未来研究的难点和重点,提出了我国富油煤高效、低碳、安全开发工程化、产业化、规模化的技术路径与研究方向。

     

    Abstract: As a strategic coal-based oil and gas resource, tar-rich coal is abundant in China. The development of oil and gas resources rich in oil and coal is of great strategic value to ensure China’s energy security and help the “double carbon” goal and energy transformation. Underground in-situ pyrolysis extraction of oil and gas is one of the important ways for low-carbon green development and efficient utilization of tar-rich coal. Using the spontaneous combustion of pyrolysis semi-coke as the heat source of in-situ pyrolysis can improve the efficiency of tar-rich coal resource exploitation, but it is necessary to focus on breaking through the problems of controllable spontaneous combustion of pyrolysis semi-coke, efficient mass and heat transfer, reliable geological guarantee system and controllable underground environmental pollution. The scientific and technological conception of in-situ pyrolysis mining of controllable and spontaneous combustion of tar-rich coal is expounded. The mechanical theory of mining rock mass, the theory of controllable and spontaneous combustion of pyrolysis semi-coke, the visualization theory of “four fields” and the theory of multi-physical field coupling heat transfer are put forward. The coupling damage mechanism of underground coal and surrounding rock under mining disturbance, the exothermic characteristics and controllable conditions of spontaneous combustion of pyrolysis semi-coke, the mechanical behavior and energy evolution characteristics of multi-physical field coupling rock mass are revealed, which provides a theoretical basis for the construction of in-situ pyrolysis mining technology system of controllable and spontaneous combustion of tar-rich coal. For the key links in the mining technology, the pyrolysis semi-coke controlled spontaneous combustion technology, in-situ mass and heat transfer enhancement technology, underground closed system technology and in-situ mining geological guarantee technology were established, which provided technical support for the in-situ pyrolysis mining of tar-rich coal controlled spontaneous combustion. On this basis, the in-situ pyrolysis mining theory and technology system of controllable and spontaneous combustion of tar-rich coal was constructed, the difficulties and key points of future research were clarified, and the technical path and research direction of high-efficiency, low-carbon and safe development engineering, industrialization and scale of tar-rich coal in China were put forward.

     

/

返回文章
返回