首页> 外国专利> METHODS FOR IN SITU HEATING OF A RICH ROCK FORMATION IN ORGANIC COMPOUND, IN SITU HEATING OF A TARGETED XISTO TRAINING AND TO PRODUCE A FLUID OF HYDROCARBON, SQUARE FOR A RACHOSETUS ORGANIC BUILDING , AND FIELD TO PRODUCE A HYDROCARBON FLUID FROM A TRAINING RICH IN A TARGET ORGANIC COMPOUND.

METHODS FOR IN SITU HEATING OF A RICH ROCK FORMATION IN ORGANIC COMPOUND, IN SITU HEATING OF A TARGETED XISTO TRAINING AND TO PRODUCE A FLUID OF HYDROCARBON, SQUARE FOR A RACHOSETUS ORGANIC BUILDING , AND FIELD TO PRODUCE A HYDROCARBON FLUID FROM A TRAINING RICH IN A TARGET ORGANIC COMPOUND.

机译:原位加热有机化合物中丰富的岩层,有针对性的XISTO训练原位加热并产生烃类流体的方法,菱形鼠尾草属有机建筑方剂的生产方法以及从中产生烃类流体的方法目标有机化合物。

摘要

A method for in situ heating of an organic-rich rock formation is provided. Preferably the organic-rich rock formation comprises kerogen. The method may include the steps of providing a first wellbore extending at least to a depth of the organic-rich rock formation, and providing a second wellbore also extending to a depth of the organic-rich rock formation and intersecting the first wellbore. The method may also include injecting air and a combustible fuel into the first wellbore, and providing a downhole burner in the wellbore so as to cause the air and the combustible fuel to mix and to combust at substantially the depth of the organic-rich rock formation. The method may further include, circulating combustion products into and up the second wellbore such that a pyrolysis zone is created from the first wellbore and second wellbores that provides substantially complete pyrolysis of the organic-rich rock formation between the first wellbore and the second wellbore. Operating conditions may be set or controlled so that the pyrolysis zones surrounding the first and second wellbore mate so to minimize underheated and overheated regions.
机译:提供了一种原位加热富含有机物岩层的方法。优选地,富含有机物的岩层包括干酪根。该方法可以包括以下步骤:提供至少延伸到富含有机物岩层的深度的第一井眼,以及提供也延伸到富含有机物岩层的深度并与第一井眼相交的第二井眼。该方法还可包括将空气和可燃燃料注入第一井眼中,并在井眼中提供井下燃烧器,以使空气和可燃燃料在基本上富含有机物岩层的深度混合并燃烧。 。该方法可以进一步包括使燃烧产物循环进入第二井眼并在第二井眼中循环,从而从第一井眼和第二井眼产生热解区,该热解区提供了第一井眼和第二井眼之间的富含有机物岩层的基本完全热解。可以设定或控制操作条件,以使围绕第一井眼和第二井眼的热解区相配合,以使过热区域和过热区域最小化。

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