冰湖作为冰川融水主要储蓄载体,能在一定程度延缓区域冰川淡水资源流失,但也为冰湖溃决洪水(Glacial Lake Outburst Floods,GLOFs)、滑坡、泥石流等山地灾害发生提供了孕灾场所,是众多山地冰川灾害链的重要环节。升温、极端气候变化扰动...冰湖作为冰川融水主要储蓄载体,能在一定程度延缓区域冰川淡水资源流失,但也为冰湖溃决洪水(Glacial Lake Outburst Floods,GLOFs)、滑坡、泥石流等山地灾害发生提供了孕灾场所,是众多山地冰川灾害链的重要环节。升温、极端气候变化扰动下,冰川物质亏损/减薄速率进一步加剧,冰湖形态变化速率加快、GLOFs发生频次与规模有所提升、灾害影响效应愈发显著,对高海拔山地冰川区下游居民生命财产和基础设施安全带来潜在风险。鉴于此,本文以冰湖与GLOFs研究为主题,首先,通过冰湖研究文献计量分析确定了近些年研究热点专题;其次,围绕山地冰川冰湖与GLOFs研究的3个主要方向:冰湖与GLOFs遥感监测、冰湖时空演化与冰川变化分析及未来潜在冰湖探测、冰湖灾害风险评估与GLOFs案例研究,遴选10项重要专题内容,分门别类、系统梳理总结、剖析了国内外研究进展,阐述了当下研究存在不足;最后,针对所选专题结合技术发展趋势与研究热点问题,围绕冰湖形态信息与GLOFs智能提取、冰川-冰(前/面)湖系统演化及其气候变化响应关系、冰湖监测预警与灾害防治内容,对未来研究做了一定展望,以期为山地冰川冰湖灾害管理与适应性规划提供借鉴与参考。展开更多
The energy-saving analytics of coal-fired power units in China is confronting new challenges especially with even more complicated system structure, higher working medium parameters, time-dependent varying operation c...The energy-saving analytics of coal-fired power units in China is confronting new challenges especially with even more complicated system structure, higher working medium parameters, time-dependent varying operation conditions and boundaries such as load rate, coal quality, ambient temperature and humidity. Compared with the traditional optimization of specific operating parameters, the idea of the energy-consumption benchmark state was proposed. The equivalent specific fuel consumption(ESFC) analytics was introduced to determine the energy-consumption benchmark state, with the minimum ESFC under varying operation boundaries. Models for the energy-consumption benchmark state were established, and the endogenous additional specific consumption(ASFC) and exogenous ASFC were calculated. By comparing the benchmark state with the actual state, the energy-saving tempospacial effect can be quantified. As a case study, the energy consumption model of a 1000 MW ultra supercritical power unit was built. The results show that system energy consumption can be mainly reduced by improving the performance of turbine subsystem. This nearly doubles the resultant by improving the boiler system. The energy saving effect of each component increases with the decrease of load and has a greater influence under a lower load rate. The heat and mass transfer process takes priority in energy saving diagnosis of related components and processes. This makes great reference for the design and operation optimization of coal-fired power units.展开更多
文摘冰湖作为冰川融水主要储蓄载体,能在一定程度延缓区域冰川淡水资源流失,但也为冰湖溃决洪水(Glacial Lake Outburst Floods,GLOFs)、滑坡、泥石流等山地灾害发生提供了孕灾场所,是众多山地冰川灾害链的重要环节。升温、极端气候变化扰动下,冰川物质亏损/减薄速率进一步加剧,冰湖形态变化速率加快、GLOFs发生频次与规模有所提升、灾害影响效应愈发显著,对高海拔山地冰川区下游居民生命财产和基础设施安全带来潜在风险。鉴于此,本文以冰湖与GLOFs研究为主题,首先,通过冰湖研究文献计量分析确定了近些年研究热点专题;其次,围绕山地冰川冰湖与GLOFs研究的3个主要方向:冰湖与GLOFs遥感监测、冰湖时空演化与冰川变化分析及未来潜在冰湖探测、冰湖灾害风险评估与GLOFs案例研究,遴选10项重要专题内容,分门别类、系统梳理总结、剖析了国内外研究进展,阐述了当下研究存在不足;最后,针对所选专题结合技术发展趋势与研究热点问题,围绕冰湖形态信息与GLOFs智能提取、冰川-冰(前/面)湖系统演化及其气候变化响应关系、冰湖监测预警与灾害防治内容,对未来研究做了一定展望,以期为山地冰川冰湖灾害管理与适应性规划提供借鉴与参考。
文摘The energy-saving analytics of coal-fired power units in China is confronting new challenges especially with even more complicated system structure, higher working medium parameters, time-dependent varying operation conditions and boundaries such as load rate, coal quality, ambient temperature and humidity. Compared with the traditional optimization of specific operating parameters, the idea of the energy-consumption benchmark state was proposed. The equivalent specific fuel consumption(ESFC) analytics was introduced to determine the energy-consumption benchmark state, with the minimum ESFC under varying operation boundaries. Models for the energy-consumption benchmark state were established, and the endogenous additional specific consumption(ASFC) and exogenous ASFC were calculated. By comparing the benchmark state with the actual state, the energy-saving tempospacial effect can be quantified. As a case study, the energy consumption model of a 1000 MW ultra supercritical power unit was built. The results show that system energy consumption can be mainly reduced by improving the performance of turbine subsystem. This nearly doubles the resultant by improving the boiler system. The energy saving effect of each component increases with the decrease of load and has a greater influence under a lower load rate. The heat and mass transfer process takes priority in energy saving diagnosis of related components and processes. This makes great reference for the design and operation optimization of coal-fired power units.