| 1. | World well logging technology 国外测井技术 |
| 2. | Applicaton of geophysical well logging technology in exploration of gas hydrate 地球物理测井在天然气水合物勘探中的应用 |
| 3. | Application of geophysical well logging technology in distinguishing textural soft - coal 测井曲线计算机识别构造软煤的研究 |
| 4. | Well logging technology 测井技术 |
| 5. | The measurements of the well depth and indicator diagram are the most common techniques in well logging technology 测量油井的液深和抽油机的功图是采油工程中最常用的两项试井技术。 |
| 6. | The measurements of the well depth and indicator diagram are the most regular techniques in well logging technology 测量油井的液面深度和抽油机的功图是采油工程中最常用的两项试井技术。 |
| 7. | Some researches are made on the principle of well logging technology , measuring methods and the theory of signal filtering usually used on well logging technology 研究了测井技术的原理和测量方法,并对测井中常用的滤波方法作了研究。 |
| 8. | Some researches are made on the principle of well logging technology , measuring methods and the theory of signal filtering usually used on well logging technology 研究了试井技术的原理和测量方法,并对试井中常用的滤波方法作了研究。 |
| 9. | Combined with the application of new well logging technology such as fmi , cmr , interpretation model of the reservoir was set up by using various analyzing methods 应从岩心分析、地质录井、测井等基础资料入手,分析该类储集层的储层特征,并结合成像、核磁共振等测井新技术的应用,建立该类储层的解释模型。 |
| 10. | Firstly , the paper discusses well logging technology and the development of the domestic and foreign pressure meters , then proposes the sytem scheme design of sjdy - i electronic pressure meter and briefly analyzes its operating principle . secondly , the paper explains in detail the software and hardware design method , presents the design thought and flow charts of every function modules . thirdly , the paper analyzes the pc program , introduces software which adopts the filter and nonlinear regression methods for improve the system precision 本文首先在介绍了试井技术和目前国内外压力计的发展状况的基础上,进行了sjdy -型存储式深井电子压力计系统总体方案设计,并对该系统的工作原理进行了简要的分析;然后,阐述了sjdy -型存储式深井电子压力计井下仪器部分的软硬件设计思想和设计目标,详细介绍了整个系统的硬件组成部分,并给出了单片机系统(即井下仪器部分)软件的设计思想和各个功能模块的流程;接着,重点分析了sjdy -型存储式深井电子压力计的上位机程序以及各个模块的具体功能,并设计了相应的软件予以实现;最后采用滤波技术和非线性校正方法,来提高整个系统精度。 |