A Case Study of Energy-Saving and Frost Heave Control Scheme in Artificial Ground Freezing Project

Author:

Zhang Song12ORCID,Zhou Xiao-min12ORCID,Zhang Jiwei12ORCID,Sun Tiecheng3ORCID,Ma Wenzhu12,Liu Yong12,Yang Ning4

Affiliation:

1. School of Civil and Resource Engineering, University of Science and Technology Beijing, Beijing 100083, China

2. Beijing Key Laboratory of Urban Underground Space Engineering, University of Science and Technology Beijing, Beijing 100083, China

3. School of Civil Engineering, Shijiazhuang Tiedao University, Shijiazhuang, Hebei 050043, China

4. Beijing China Coal Mine Engineering Co., Ltd., Beijing 100013, China

Abstract

In large-scale shallow buried artificial ground freezing (AGF) engineering, frost heave control and energy-saving have always been the most critical problems. By the research and analysis, this manuscript points out the applicability and superiority of intermittent freezing in large-scale shallow buried freezing projects and conducts in situ tests for the freezing project of a metro entrance. The test results show that intermittent freezing can effectively control the surface frost heave, but it has a certain hysteresis. The freezing wall thickness, average temperature, and optimization scheme during the freezing process are discussed. The results show the following: (1) Intermittent freezing would degrade the thickness of the freezing wall and the average temperature together. (2) The stop freezing scheme in intermittent freezing is not fit to frost heave control during the excavation stage. Therefore, it is necessary to establish a freezing cycle scheme with precise temperature control to control the frost heave to ensure the bearing capacity. Based on the above conclusions, a dual-circuit liquid supply scheme, the specific brine temperature control scheme, and its application method were proposed. Through this method, the development process of the freezing front can be effectively controlled, and the goal of being precise and controllable can be achieved. This research can provide practical technical guidance for frost heave control of similar AGF projects.

Funder

Science Foundation of Tiandi Technology Co., Ltd

Publisher

Hindawi Limited

Subject

General Earth and Planetary Sciences

Reference28 articles.

1. Artificial ground freezing: A review of thermal and hydraulic aspects

2. Field measurement research on temperature changing law of vertical shaft lining;J. Huang;Journal of Liaoning technical university(natural science edition),2007

3. The numerical simulation of freezing temperature field and the reason of freezing pipe broken;D. Meng;Journal of Anhui Jianzhu University,2014

4. Detection of the freezing state and frozen section thickness of fine sand by ultrasonic testing

5. Sensitivity and regression analysis of acoustic parameters for determining physical properties of frozen fine sand with ultrasonic test;J.-w. Zhang;Quarterly Journal of Engineering Geology and Hydrogeology,2020

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