Slide 1 - 无固相完井液基液复配增密机理与技术路线
The left column illustrates the densification mechanism using eutectic tight hydration layers versus traditional loose ones, highlighting multi-ion synergy for reduced crystallization risk, high density via hydration competition, enhanced stability, and adjustable ion-based density. The right column presents a technical route flowchart: defining density needs (1.35–1.80 g/cm³), salt screening, multi-component formula design, performance evaluation (crystallization, thermal stability, corrosion), and engineering verification.
无固相完井液基液复配增密机理与技术路线
| 机理示意与关键认识 | 技术路线流程图 |
|---|---|
| 上:共晶紧密水化层 vs 传统松散层(↓自由水活度、↑成核能垒)。注解:多离子协同调控水结构,降低析晶风险。下:1.水合竞争实现高密度;2.共晶调控提升稳定性;3.密度由离子浓度与组成可调。(38字) | 1.需求定义(密度1.35–1.80 g/cm³,约束);2.盐筛选(溶解度、可获得性);3.配方设计(单→多元,密度调控);4.性能评价(析晶、热稳、腐蚀);5.工程验证(相容、现场可行)。(42字) |

