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水-热循环花岗岩的物理力学性质试验研究 被引量:6
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作者 余莉 彭海旺 +3 位作者 张钰 李国伟 祝瀚政 韩子豪 《科学技术与工程》 北大核心 2021年第2期703-713,共11页
为了研究水-热循环次数对花岗岩物理、力学性质的影响,将花岗岩进行不同次数的高温-水冷循环处理,并将处理后的花岗岩在刚性试验机上进行单轴压缩力学试验。结果表明:在相同水-热循环次数下,随着温度的增加,花岗岩试样的饱和吸水率分阶... 为了研究水-热循环次数对花岗岩物理、力学性质的影响,将花岗岩进行不同次数的高温-水冷循环处理,并将处理后的花岗岩在刚性试验机上进行单轴压缩力学试验。结果表明:在相同水-热循环次数下,随着温度的增加,花岗岩试样的饱和吸水率分阶段增加,峰值强度与弹性模量持续下降,变形模量下降,峰值应变呈现多阶段变化;在相同的温度作用下,随着水-热循环次数的增加,花岗岩试样的饱和吸水率逐渐增加,峰值强度和弹性模量出现先下降、后小幅上升、最后持续下降的变化现象,变形模量出现多阶段变化,峰值应变小幅度上升后下降;花岗岩单轴压缩破坏的应力-应变曲线分为4个阶段,随着温度的升高,花岗岩延性增加,应力-应变曲线幅度逐渐减小,压密阶段与累进性破裂阶段都增长,峰后曲线从光滑跌落过渡到分段跌落,随着循环次数的增加,呈现出相似变化趋势;温度的升高和循环次数的增加都导致了花岗岩内部缺陷和孔隙的增加,即随着饱和吸水率的增加,峰值强度减小,可见花岗岩的物理力学性质在不同温度、不同循环次数水-热循环后发生了不同程度的劣化。研究结果对分析花岗岩变形破坏机理以及实际工程中评价高温岩石工程的稳定性提供了一定的参考依据。 展开更多
关键词 花岗岩 水-热循环 峰值强度 弹性模量
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Thermodynamic analysis of simplified dual-pressure ammonia-water absorption power cycle 被引量:5
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作者 华君叶 陈亚平 +1 位作者 刘化瑾 吴嘉峰 《Journal of Central South University》 SCIE EI CAS 2012年第3期797-802,共6页
A simplified dual-pressure ammonia-water absorption power cycle(DPAPC-a) using low grade energy resources is presented and analyzed.This cycle uses turbine exhaust heat to distill the basic solution for desorption.The... A simplified dual-pressure ammonia-water absorption power cycle(DPAPC-a) using low grade energy resources is presented and analyzed.This cycle uses turbine exhaust heat to distill the basic solution for desorption.The structure of the cycle is simple which comprises evaporator,turbine,regenerator(desorber),absorber,pump and throttle valves for both diluted solution and vapor.And it is of high efficiency,because the working medium has large temperature difference in evaporation and small temperature difference in absorptive condensation,which can match the sensible exothermal heat resource and the cooling water simultaneously.Orthogonal calculation was made to investigate the influence of the working concentration,the basic concentration and the circulation multiple on the cycle performance,with 85-110 ℃ heat resource and 20-32 ℃ cooling water.An optimum scheme was given in the condition of 110 ℃ sensitive heat resource and 20 ℃ cooling water,with the working concentration of 0.6,basic concentration of 0.385,and circulation multiple of 5.The thermal efficiency and the power recovery efficiency are 8.06 % and 6.66%,respectively.The power recovery efficiency of the DPAPC-a is 28.8% higher than that of the steam Rankine cycle(SRC) and 12.7% higher than that of ORC(R134a) under the optimized situation. 展开更多
关键词 absorption power cycle AMMONIA-WATER circulation multiple ammonia concentration Kalina cycle
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Crawlspace heating system in detached house with insulated foundation
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作者 刘青荣 阮应君 +1 位作者 RYU Yu-ji 任建兴 《Journal of Central South University》 SCIE EI CAS 2012年第3期623-632,共10页
Two practical crawlspace heating systems introduced in detached houses have been chosen as a field study. One is the crawlspace warm air heating system and the other is the crawlspace hot water circulation system. Bas... Two practical crawlspace heating systems introduced in detached houses have been chosen as a field study. One is the crawlspace warm air heating system and the other is the crawlspace hot water circulation system. Based on the field study result, by using the simulation sol, ware, THERB, the effectiveness of the crawlspace warm air heating system has been examined. The effect of the factors, such as the wind amount circulating between crawlspace and indoor space, foundation insulation condition, and heat amount into the crawlspace, on the indoor thermal environment has been analyzed. Based on these analyses, the measured crawlspace heating system can make the average temperature of the living room above 20℃. These two houses have excellent thermal environment. According to the simulating result, heat amount input into crawlspace, which can make comfortable indoor thermal environment, for every month in heating period has been roughly concluded, and they are 600 W in December and March and 800 W in February and January, respectively. 展开更多
关键词 erawlspaee heating system indoor thermal environment detached house floor insulation foundation insulation
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