期刊文献+
共找到2篇文章
< 1 >
每页显示 20 50 100
渗流裂隙岩体冻结温度场模型试验研究 被引量:3
1
作者 宋雷 王国柱 +3 位作者 杨成立 韩立尚 李海鹏 杨维好 《采矿与安全工程学报》 EI CSCD 北大核心 2019年第6期1256-1263,共8页
我国西部地区有丰富的煤炭资源埋藏在富水岩层下,普遍采用冻结法凿井实现井工开采。与我国中东部地区表土冻结不同的是,西部地区人工冻结的目标为富水岩层,其为孔隙储水、裂隙导水,易在裂隙处形成优势流。当出现裂隙优势流时,将不可避... 我国西部地区有丰富的煤炭资源埋藏在富水岩层下,普遍采用冻结法凿井实现井工开采。与我国中东部地区表土冻结不同的是,西部地区人工冻结的目标为富水岩层,其为孔隙储水、裂隙导水,易在裂隙处形成优势流。当出现裂隙优势流时,将不可避免地对岩体的冻结温度场产生控制性影响,裂隙面处往往会成为冻结壁的薄弱部位,这与表土冻结温度场研究中所考虑的孔隙渗流影响迥异。为此,本文在人工冻结温度场模型中引入裂隙参数和渗流参数,推导渗流裂隙岩体人工冻结水热耦合温度场的相似准则,并在此基础上开展裂隙岩体双管冻结温度场的模型试验和数值模拟研究。研究结果表明:裂隙渗流显著延缓了冻结壁交圈时间,裂隙面冻结壁交圈时间远大于岩块,且其冻结壁厚度也显著降低。在富水裂隙岩体人工冻结中,在冻结管与裂隙垂直,裂隙开度为20 mm,管间距为1.736 m时,冻结壁能够交圈的极限渗流速度为(17±1)m/d研究结果对西部地区富水岩层的冻结法凿井具有重要参考价值。 展开更多
关键词 渗流裂隙岩体 人工冻结温度场 模型试验 水热耦合 极限流速
原文传递
Mathematical models of steady-state temperature fields produced by multi-piped freezing 被引量:7
2
作者 Xiang-dong HU Wang GUO +2 位作者 Luo-yu ZHANG Jin-tai WANG Xue DONG 《Journal of Zhejiang University-Science A(Applied Physics & Engineering)》 SCIE EI CAS CSCD 2016年第9期702-723,共22页
The multi-piped freezing method is usually applied in artificial ground freezing (AGF) projects to fulfill special construction requirements, such as two-, three-, or four-piped freezing. Based on potential superpos... The multi-piped freezing method is usually applied in artificial ground freezing (AGF) projects to fulfill special construction requirements, such as two-, three-, or four-piped freezing. Based on potential superposition theory, this paper gives analytical solutions to steady-state frozen temperature for two, three, and four freezing pipes with different temperatures and arranged at random. Specific solutions are derived for some particular arrangements, such as three freezing pipes in a linear arrangement with equal or unequal spacing, right and isosceles triangle arrangements, four freezing pipes in a linear arrangement with equal spacing, and rhombus and rectangle arrangements. A comparison between the analytical solutions and numerical thermal analysis shows that the analytical solutions are sufficiently precise. As a part of the theory of AGF, the analytical solutions of temperature fields for multi-piped freezing with arbitrary layouts and different temperatures of freezing pipes are approached for the first time. 展开更多
关键词 Artificial ground freezing (AGF) Multi-piped freezing Steady state Temperature field Analytical solution Potential function
原文传递
上一页 1 下一页 到第
使用帮助 返回顶部