首页> 外文会议>International Conference on Renewable Energy and Environmental Technology >Effects of groundwater heat pump systems on the temperature and quality of groundwater in recharged aquifer
【24h】

Effects of groundwater heat pump systems on the temperature and quality of groundwater in recharged aquifer

机译:地下水热泵系统对充电含水层地下水温度和质量的影响

获取原文

摘要

Groundwater heat pump (GWHP) systems in three different hydrogeological fields, Beijing were selected, and their effects on temperature of groundwater in recharged aquifer were researched for three years. Results showed that the degree of thermal breakthrough was controlled by the distance between pumping wells and injection wells, and the temperature of groundwater with high flow rate can recover to normal faster than those with low flow rate. When distance between pumping wells and injection wells were shorter than 30m, thermal breakthrough may happen and the variation range of groundwater temperature during one heating or cooling period was 8~12°C. However, thermal breakthrough can be negligible and the temperature of groundwater may be steady when the distance between those wells was longer than 50m. Furthermore, GWHP in two different hydrogeological fields were selected to observe their effects on groundwater quality for one year. One GWHP was situated on the northwest piedmont alluvial fan of Beijing and the other was located in the southeast plain area of Beijing. Groundwater was sampled from those fields and thirty-two inorganic components were analyzed. Heavy metals were not detected, and calcium, magnesium, chloride, sulfate, fluoride and other ten inorganic components were studied. Groundwater quality in the northwest of Beijing was relatively steady because that aquifer was in relative oxidation environment. However, groundwater quality in the southeast of Beijing was subject to change because that aquifer was in relative reduction environment. Nitration reaction happened in the plain area, and ammonia, nitrite converted into nitrite nitrogen and nitrate nitrogen, respectively. Simultaneously, pH, concentrations of iron and manganese decreased, and total hardness increased.
机译:北京三个不同水文地质领域的地下水热泵(GWHP)系统,研究了它们对充电含水层的地下水温度的影响三年。结果表明,热突破程度由泵送井和注入孔之间的距离控制,并且具有高流速的地下水的温度可以比具有低流速的速度恢复正常。当泵送孔和注入孔之间的距离短于30m时,可能发生热突破,并且在一个加热或冷却时段期间的地下水温度的变化范围为8〜12℃。然而,当那些孔之间的距离超过50m时,热突破可以忽略不计,并且地下水的温度可能是稳定的。此外,选择两个不同的水文地质领域的GWHP以观察它们对地下水质量的影响一年。一个GWHP位于北京西北部的西北山麓,另一个位于北京东南平原地区。地下水从那些田地取样,分析了三十二个无机成分。未检测到重金属,研究钙,镁,氯化物,硫酸盐,氟化物和其他十种无机成分。北京西北地下水质量相对稳定,因为含水层处于相对氧化环境。然而,北京东南地下水质量可能会发生变化,因为含水层相对减少环境。硝化反应发生在平原区域,氨,亚硝酸盐分别转化为亚硝酸盐氮和硝酸盐氮。同时,pH,铁和锰的浓度降低,并且总硬度增加。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号