冻结爆破岩体发展中曳绳性能计算程序

S. Panishev, Ya.V. Mironov
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引用次数: 0

摘要

雅库茨克,电子邮件:bsdpsv@mail.ru, mironoff22ykt@mail.ru已经开发了一个程序,用于计算非运输复杂挖掘方案的指标。本文所考虑的开挖方案适用于多年冻土带的条件,适用于利用非运输技术开发反复冻结的爆破覆盖体。爆破岩体沿挖机整个长度分层开采。同时,行走式拖绳挖掘机位于块体表面,沿着块体移动,依次移除岩石的表层。这种开挖方案和块式开采程序确保了拖铲挖掘机在爆破岩石反复冻结的条件下尽可能发挥最大的性能,因为挖掘机移除了在太阳暴晒影响下已经经历了一些融化的表层。为了计算该非运输复杂开挖方案的各项指标,首先输入矿柱内挖掘机入口参数,然后设置钻孔和爆破作业参数,确定爆破岩体的破碎配置,并设置曳绳挖掘机的模型。为了计算开挖工程量,该程序提供了4种典型的爆破覆盖岩破碎形态的形成方案。二次冻结对挖掘机效率的影响是通过一种特殊的曳绳性能计算算法来考虑的,该算法假设对正在计算的每个挖掘机块的生产率和操作时间进行单独计算。计算拖铲性能的主要输入数据是挖掘机入口的尺寸,挖掘机在一定时间内从底部移出的岩层厚度,以及各开挖层岩石的平均温度。为了计算挖掘机在每一层开发过程中的性能,使用了之前建立的井底岩石温度与曳绳工作周期时间之间的关系。结合开采的温度和气候时期,挖掘机的性能,计算出每一挖掘层的时间,然后计算出的时间
本文章由计算机程序翻译,如有差异,请以英文原文为准。
PROGRAM FOR CALCULATING DRAGLINE PERFORMANCE IN THE DEVELOPMENT OF FROZEN BLASTED ROCK MASS
Yakutsk, e-mail: bsdpsv@mail.ru, mironoff22ykt@mail.ru A program has been developed for calculating the indices of a non-transport complicated excavation scheme. The excavation scheme considered in the article is adapted to the conditions of the permafrost zone and is intended for development of the blasted overburden massif, which is subject to repeated freezing, using the non-transport technology. The blasted rock mass is worked out in layers along the entire length of the excavator block. At the same time, a walking dragline excavator is located on the surface of the block, and moving along the block, sequentially removes the surface layer of the rock. This excavation scheme and the block mining procedure ensure the maximum possible performance of the dragline excavator in conditions of repeated freezing of the blasted rock, since the excavator removes the surface layer that has already undergone some thawing under the influence of solar insolation. To calculate the indicators of this non-transport complicated excavation scheme, the parameters of the excavator entry in the pillar are first entered, then the parameters of drilling and blasting operations are set, which determine the configuration of the breakup of the blasted rock mass, and the model of the dragline excavator is set. To calculate the volume of excavation work, the program provides 4 typical options for the formation of the configuration of the rock breakup of the blown overburden ledge. The effect of secondary freezing on the efficiency of the excavator is taken into account by a special algorithm for calculating the dragline performance, which assumes a separate calculation of the productivity and operating time for each excavator block being worked out. The main input data for calculating the dragline performance are the dimensions of the excavator entry, the thickness of the rock layer removed from the bottom of the excavator for a certain period of time, and the average temperature of the rock in each excavation layer. To calculate the performance of an excavator during the development of each layer, the previously established relationships between the temperature of the rock in the bottom hole and the time of the dragline’s working cycle are used. In connection with the temperature and climatic period of mining, the performance of the excavator, the time for working out each excavation layer, and then the time for working out the
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