用于大型干热岩力学试验的热应力加载技术

Huiling Ci, Bing Bai, Hongwu Lei, Yan Zou, Jianfeng Liu
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引用次数: 0

摘要

在深层地下岩石力学和工程中,大型试样的测试正变得越来越重要。在传统的机械加载中,大型试样的应力是通过大型主机架和液压泵来实现的,这可能会导致巨大的投资。低成本试验机显然总是具有巨大的吸引力。本研究提出了一种利用热膨胀应力加载岩石试样的新方法,这种方法可能特别适用于高温下的深层热干岩测试。这是与传统的通过液压进行机械加载不同的技术路线。对于已经投资了加热系统的干热岩岩石力学测试系统来说,这项技术可以充分利用温度变化,从而降低加载子系统的成本。本文介绍了这一技术方案的基本原理和典型设计。然后在数值模拟的基础上进行了初步的可行性分析。尽管仍有一些技术细节需要解决,但这种加载方法的可行性已得到初步证实。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

A thermal stress loading technique for large-sized hot dry rock mechanical tests

A thermal stress loading technique for large-sized hot dry rock mechanical tests

Testing of large-sized specimens is becoming increasingly important in deep underground rock mechanics and engineering. In traditional mechanical loading, stresses on large-sized specimens are achieved by large host frames and hydraulic pumps, which could lead to great investment. Low-cost testing machines clearly always have great appeal. In this study, a new approach is proposed using thermal expansion stress to load rock specimens, which may be particularly suitable for tests of deep hot dry rock with high temperatures. This is a different technical route from traditional mechanical loading through hydraulic pressure. For the rock mechanics test system of hot dry rock that already has an investment in heating systems, this technology may reduce the cost of the loading subsystem by fully utilizing the temperature changes. This paper presents the basic principle and a typical design of this technical solution. Preliminary feasibility analysis is then conducted based on numerical simulations. Although some technical details still need to be resolved, the feasibility of this loading approach has been preliminarily confirmed.

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