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冷水源井水温固体潮现象及其机理研究——以黄村井为例 被引量:3
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作者 杨明波 杨竹转 +5 位作者 郑轶文 马玉川 王同利 韩孔艳 崔博文 邢成起 《地震学报》 CSCD 北大核心 2017年第3期420-428,共9页
该文对黄村冷水源井的水温固体潮现象进行了观测研究,初步解释了冷水源井的水温固体潮汐的形成机理.通过对黄村观测井进行水温梯度的详细观测及不同深度水温的对比观测研究,得到了黄村井水温潮汐现象的观测结果:(1)黄村冷水源井的水温... 该文对黄村冷水源井的水温固体潮现象进行了观测研究,初步解释了冷水源井的水温固体潮汐的形成机理.通过对黄村观测井进行水温梯度的详细观测及不同深度水温的对比观测研究,得到了黄村井水温潮汐现象的观测结果:(1)黄村冷水源井的水温固体潮的相位与水位的相位是相反的;(2)黄村井水温梯度曲线呈下凹型,特别是在含水层及受含水层进出水影响较大的附近区域下凹程度大,且随着与含水层底板距离逐渐变大,下凹程度也变小;(3)水温传感器的观测值与含水层观测距离存在一定的规律性:距离含水层越远,水温潮汐差越小,直至潮汐变化消失.这说明冷水源井与热水井的水温潮汐现象是不同的,前者是吸热过程,后者是放热过程,由此造成二者水-热动力学特征的不同. 展开更多
关键词 冷水源井 水温固体潮 水温梯度曲线 水-热动力学特征
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Field experiment on coalmine heat disaster governance using cold source from surface water
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作者 Guo Pingye Zhu Guolong +2 位作者 Liu Yuqing Duan Mengmeng Wu Junyin 《International Journal of Mining Science and Technology》 SCIE EI 2014年第6期865-869,共5页
Regarding the lack of cold source for underground cooling systems from either mine inflow or return air, field experiments were taken in a high temperature deep coal mine with abundant cold source from surface water. ... Regarding the lack of cold source for underground cooling systems from either mine inflow or return air, field experiments were taken in a high temperature deep coal mine with abundant cold source from surface water. Taking Sanhejian coal mine as an example, this paper introduced the technology scheme of heat disaster governance using surface water cold source. The paper presents the basics of this field experiment at the beginning, following by the design and site layout of the cooling system including the analysis and calculation of cold source. Numerical calculation method is also applied based on the operation parameters to simulate the influence to the surface river ecosystem. The results suggest that the temperature of surface water shall be lower than 34 ℃ after heat exchange, and when more cooling capacities are needed in the future, increasing the water flow is more favorable than increasing the cooling range of water, which is better for the ecological environment protection, 展开更多
关键词 Deep mine Heat disaster Surface water Cold source
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