热水井
- 网络hot well
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凝汽器热水井取样分析查漏
Leak Check With Sampling Analysis of Condenser 's Hot Well
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热水井处没有温度计。
Thermometer is not available on hot well .
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勘探结果表明2线250号点在深度575m~740m有一低阻异常,据此设计一眼深1200m的地下热水井,并利用温度测井,发现700m深度以下有明显的地温梯度异常。
The result indicated that there is a conductive anomaly at depth 575m 740m , point No. 250 , prospecting line II . Then a geothermal well was designed and drilled , by the use of temperature logging , an obvious geothermal gradient anomaly was found under depth 700m .
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热水井数字化气汞观测影响因素讨论
Influencing factors to the observation of gas Hg in hot water well
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热水井开采对怀来台流体动态的影响分析
Influence of exploitation of hot water well on fluid dynamics in Huailai station
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庐江自流热水井逸出气的试验观测研究
Observation and Study on escape gas in Lujiang artesian thermal & water well
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西安地裂缝近期活动与热水井水位关系研究
Study of the relationship between the recent activity of Xian ground fissure and water level of hot water well
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山西夏县热水井逸出He异常与地下水开采关系的研究
Study on Relation between Anomaly of Helium Emission of Thermal Water Well at Xiaxian , Shanxi , and Exploitation of Groundwater
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通过辽宁思拉堡热水井的成功探测实例,介绍直流电法综合参数在地热探测中的实际应用效果。
The article introduces the application of DI resistivity method in geothermal prospecting through a case of the hot water well in Silapu , Liaoning .
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指出该系统可以有效地用于160℃,即温度水平较低的地下热水井。
Analytical results show that the Pumping cycle system can be effectively applied at temperature about 160 ℃, i. e the lower temperature geothermal water well .
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深层地下热水钻井井内动水位升高值的计算
Calculation of the dynamic water level rise of geothermal water in deep well
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利用多学科一体化方法提高热水驱井组的管理水平
Improving well management of hot waterflooding by multiple disciplines
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岩体渗流与应力耦合理论及在近水体采煤的应用地热水对井回灌渗流场理论研究
Coupling theory of seepage and stress of rock mass and its application in coal mining around water
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洛阳市龙门同一隐伏断裂构造上热水、凉水井勘探
The exploration of hot water and cool water wells over the same concealed fault in longmen , Luoyang City
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排放阀应装在从锅炉底和热水井底到污水井用于导废油废水。
The drain pipes to be installed from the boiler flat and hot water well flat to bilge well for leading the waste oil water .
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结果表明马17井的动水位年变化是气压干扰所致,与马16井采水无明显关系。马16井冬季开采热水对马17井动水位观测无明显影响。
The results show that the annual variation of water level in Ma 17th Well is not caused by the water exploitation in Ma 16th Well , but by air pressure interference .