1. 肺切面可见肺气肿扩张的含气区
On cut section of the lung, the dilated airspaces with emphysema are seen.

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2. 据此计算不同角度下的能量包络差剖面,进而找出有利的气区
Energy envelope differential profiles at different angles are generated to indicate favorable gas-bearing areas.

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3. 肺气肿具有典型的特征,肺泡被破坏,肺实质丧失,以致形成持久性的含气区增大。
Emphysema is characterized by a loss of lung parenchyma by destruction of alveoli so that there is permanent dilation of airspaces.

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4. 因此,利用水化学和地质地球化学相结合的综合研究,可为天然气藏富集区(或含气区)的找寻和预测提供依据。
Therefore, by using the comprehensive studies of hydrochemistry and geologic geochemistry, it is possible to predict natural gas enrichment area (or gas prospect area).

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5. 在评价区寻找一个处于经济界限边缘的气构造开发基础方案并进行相关参数化处理;
Second, a basic development plan should be found for a prospect with marginal economy in the block evaluated, and then a parameterization should be made for the plan.

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6. 在每一区内,气率都随液体流率的增加而增加。
In every region, the gas hold-up increases with the liquid rate.

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7. 在此基础上,对研究区进行了评价,划分了有利储层发育带及有利气储集带。
On that basis, the study area is evaluated and the favorable reservoir zone and gas accumulation zone are determined.

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8. 只有改变能源的结构组成,充分利用天然气资源、液化石油气、水电资源,减少s煤的使用,才能消除酸雨对万州区的污染。
Only the change of energy structure, the good use of natural gas liquidized gas and water power and the reduction of coal with the content of s can we prevent acid rain pollution in Wanzhou District.

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9. 对实验数据进行回归处理得到了各区气率与两上升区气速的经验关系式。
Experimental equitions on the relation between the gas holdup of an individul channel and gas rate in either riser have been obtained by processing experimental data.

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10. 最后指出中部高气量区是最有利的煤层气勘探靶区。
Lastly, it is pointed out that the middle region with high gas content is a favourable target for exploration of coalbed methane.

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11. 新探区深盆气藏与常规气藏勘探应并重,老探区中煤丰富的碎屑岩盆地应重点解剖深盆气藏形成条件;
In new exploratory region equal stress should be laid on both deep basin gas reservoirs and conventional gas reservoirs.

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12. 氩气的分布不均匀,上回流区钢液的气率大大高于下回流区。
Argon bubbles distribute unevenly and the gas holdup of liquid steel in the upper region is far higher than that of the lower region.

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13. 实际钻井结果证明,在研究区采用基于叠前弹性阻抗反演的LMR技术能够有效地识别水与气储层。
Actual drilling information shows that LMR technology based on elastic impedance inversion can effectively identify water and gas layers.

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14. 富有机质页岩气量是页岩气资源评价和有利区优选的关键参数。
The shale gas content is the key factor for shale gas assessment and core area evaluation.

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15. 富有机质页岩气量是页岩气资源评价和有利区优选的关键参数。
The shale gas content is the key factor for shale gas assessment and core area evaluation.

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