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1)  underground temperature distribution
地下温度场
1.
Water temperature and underground temperature distribution of heat pump coupled with aquifer energy storage system which has run for 3 consecutive years were simulated,with underground water flow and heat transfer equations put forward by Kipp K L.
采用Kipp K L推出的地下水流动和热运移方程,对热泵耦合含水层储能系统连续运行3年的储能井温及地下温度场进行了模拟计算。
2)  groundwater temperature field
地下水温度场
3)  field temperature
地场温度
1.
In order to explore the effect of field temperature on the Wet Jetting Piles (WJP) quality, the field temperature testing system is developed to monitor the characteristics of field temperature s distributing and changing, and the indoor model of WJP experimental system is developed simultaneously to test the effect of field temperature on the pile s strength.
为探索地场温度对湿喷桩戍桩质量的影响,自行研制了地场温度现场测试系统,并开发了湿喷桩大型室内相似模型试验系统,研究了湿喷桩桩长范围内地场温度的季节性变化规律和地场温度对湿喷桩强度的影响规律。
4)  downhole temperature distribution
井下温度场
1.
Numerical simulation of downhole temperature distribution in producing oil wells;
生产油井井下温度场数值模拟分析(英文)
2.
A method is put forward to calculate downhole temperature distribution while oil wells have been shut for days.
提出了一种计算生产油井关井一段时间后井下温度场分布的方法。
5)  groundwater temperature
地下水温度
1.
The perennial change characteristics of groundwater temperature in phreatic aquifer, confined aquifer and Cretaceous porous-fractured aquifer in the plain area of Central Jilin is analyzed systemically.
以吉林中部平原区为例,分析了孔隙潜水、孔隙承压水以及白垩系孔隙裂隙承压水温度的多年变化特征,并采用灰色关联度分析方法,确定了各含水层地下水温度与地下水埋深、气温、降水量之间的关联性,分析了影响其变化的主要因素。
2.
The experimental method was employed to study optimization quantity matching intake well with injection well,injection situation during the heating period and groundwater temperature change effect on performance of heat pump.
采用实验的方法,研究了深井水源热泵系统抽水井和回灌井个数优化配置和回灌井回灌情况以及地下水温度变化对热泵机组性能的影响等问题。
3.
The perennial characteristics of groundwater temperature in phreatic aquifer,porous confined aquifer and cretaceous porous-fractured confined aquifer in plain area in central Jilin are analyzed from 123 wells.
采用灰色关联度分析法分析了影响地下水温度变化的主要因素,计算了各含水层地下水温度与地下水埋深、气温、降水量之间的关联度。
6)  the earth temperature field
大地温度场
1.
By simplifying the physical model,build up a three-dimensional mathematics model of the earth temperature field.
通过简化物理模型建立了大地温度场的三维数学模型,利用CFD计算软件进行了温度场模拟计算并进行了客观地分析,分析的结果对红外成像检测埋地蒸汽管道保温失效具有指导意义。
补充资料:地下
1.地面以下;地层内部。 2.谓政党﹑团体等处于非法﹑秘密活动状态。 3.指阴间。 4.地面上。
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