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1)  shallow geothermal energy
浅层地温能
1.
Shallow rock and soil energy storage combined with shallow geothermal energy—sustainable low temperature source of ground source heat pumps
浅层岩土蓄能加浅层地温能才是地源热泵可持续利用的低温热源
2.
The Design and Realization of Beijing Plain Shallow Geothermal Energy Spatial Information System
北京平原区浅层地温能空间信息系统设计与实现
3.
The use of shallow geothermal energy in urban areas is developing quickly with the ad- vancement of the heat pump technology.
随着地源热泵技术的成熟,我国城市地区浅层地温能利用正在快速发展,为了保证浅层地温能的有效开发和可持续利用,应对浅层地温能资源进行评价。
2)  shallow geotemperature
浅层地温
1.
Provided that the average monthly imcrement of the shallow geotemperature beneath the depth of 0.
8m浅层地温较月平均值增高≥1。
2.
The changing tendency and abrupt change of annual and seasonal mean shallow geotemperatures over Tibet Region are investigated in this paper with the observational data from 13 stations during the period of 1971-2006 using modern statistical diagnostic methods,such as the linear trend analysis.
利用1971—2006年西藏13个站的0~20 cm浅层地温资料,采用气候倾向率等现代统计诊断方法,研究了近36 a来西藏年、季平均地温的变化趋势及气候突变。
3)  Superficial Geothermal Energy
浅层地能
1.
Superficial Geothermal Energy is low potential energy of soil absorbing sun(<25℃).
浅层地能(热)(Geothermal Energy)是地表浅层(土壤、地下水)吸收太阳能、地热能而蕴藏的低品位热能(<25℃)。
4)  air and shallow soil temperature
气温和浅层地温
5)  shallow geothermal energy
浅层地热能
1.
Analysis of resource-based view and evaluation methods of shallow geothermal energy;
评“浅层地热能”的资源观点与评价方法
2.
On the basis of expounding the fundamental,merits and demerits,and applicable conditions, represents objection for the statement of"shallow geothermal energy".
在阐明地源热泵系统的基本原理、优缺点与适用条件的基础上,对"浅层地热能"的表述提出了异议;指出了当前地源热泵工程建设中的六个主要问题,提出了在保护地下资源环境的前提下发展与建设地源热泵系统的四点建议。
6)  near-surface temperature survey
浅层地温测量
1.
To provide important parameter information when we research geologic problem by near-surface temperature survey,we study influence-law and influence-depth of daily and annual variation of surface temperature on geotemperature in Changchun ovservation station,and through field observation and Fourier-analysis method.
通过实地观测试验,并采用傅里叶分析法进行理论分析,来研究长春地区地表温度日变、年变对地温测量的影响规律及影响深度,为在长春地区利用浅层地温测量方法研究地质问题提供重要参数信息。
补充资料:浅层地下埋藏
分子式:
CAS号:

性质:在地表下浅层(一般小于50m)处置放射性废物,工程屏障根据实际情况可有可无,其安全性主要取决于包气带土质类型和土层厚度,地表防护覆盖层厚度一般为几米。该方法是世界有核国家普遍采用的埋藏中低放固体废物的方法。近年来,“浅层地下埋藏”术语已为“近地表处置(埋藏)”(near-surface disposal)所替代,两者概念是一致的。

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