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中国农业生态系统水分—热量循环实验研究进展
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作者 谢贤群 《资源生态环境网络研究动态》 1994年第2期18-23,共6页
关键词 农业生态系统 水分循环 热量循环
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德国L&E公司造纸机干部热量整体循环利用系统介绍 被引量:4
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作者 王淑英 《北方造纸》 1997年第3期60-61,共2页
德国L&E公司造纸机干部热量整体循环利用系统介绍王淑英(中国造纸协会北京100833)关键词蒸汽—冷凝水系统汽罩罩内通风系统德国L&E公司总部位于德国工业发达的鲁尔地区波鸿,由Langbein和Engelbrache... 德国L&E公司造纸机干部热量整体循环利用系统介绍王淑英(中国造纸协会北京100833)关键词蒸汽—冷凝水系统汽罩罩内通风系统德国L&E公司总部位于德国工业发达的鲁尔地区波鸿,由Langbein和Engelbrache先生创建于1931年,简称L&E公... 展开更多
关键词 造纸机 干燥部 汽罩 热量循环利用
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基于热量双循环的焦炉烟道气脱硫脱硝工艺及应用 被引量:1
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作者 杨助喜 《煤化工》 CAS 2021年第6期57-61,共5页
对当前焦炉烟道气各种脱硫脱硝工艺的优缺点进行了分析,从运行稳定性、副产物消纳以及应对日趋严格的超低排放标准等角度考虑,提出一种基于热量双循环的“旋转喷雾法(SDA)钙基脱硫+选择性催化还原(SCR)脱硝”脱硫脱硝工艺。该工艺在国... 对当前焦炉烟道气各种脱硫脱硝工艺的优缺点进行了分析,从运行稳定性、副产物消纳以及应对日趋严格的超低排放标准等角度考虑,提出一种基于热量双循环的“旋转喷雾法(SDA)钙基脱硫+选择性催化还原(SCR)脱硝”脱硫脱硝工艺。该工艺在国内某钢厂2座6 m顶装焦炉的烟道气脱硫脱硝应用证明,工艺运行稳定可靠,出口排放烟气SO_(2)质量浓度≤15 mg/m^(3),NO_(x)质量浓度≤100 mg/m^(3),粉尘质量浓度≤8 mg/m^(3),均优于超低排放指标,且副产物可稳定消纳。 展开更多
关键词 焦炉烟道气 SDA钙基脱硫 SCR脱硝 热量循环
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化工“循环操作”题型解析
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作者 邵世环 《中学化学》 2003年第4期31-33,共3页
关键词 化工生产 循环操作”题 题型 高考 化学 热量循环 解法
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利用地热能的双压有机朗肯循环性能分析 被引量:3
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作者 刘雪玲 牛锦涛 +2 位作者 汪健生 苏力德 董丽玮 《太阳能学报》 EI CAS CSCD 北大核心 2022年第9期437-443,共7页
根据地热利用系统回灌的要求,对热源在系统出口处的温度进行限制,研究了双压有机朗肯循环(DPORC)中的热量分配以及随运行时间的系统性能变化,针对5种不同的有机工质进行了计算分析。研究表明:系统热力学性能的最大值和有机工质流量的最... 根据地热利用系统回灌的要求,对热源在系统出口处的温度进行限制,研究了双压有机朗肯循环(DPORC)中的热量分配以及随运行时间的系统性能变化,针对5种不同的有机工质进行了计算分析。研究表明:系统热力学性能的最大值和有机工质流量的最小值在同样的k值(热源提供给高压循环的热量与热源为DPORC提供的热量比)处获得。而采用R600和R^(2)45fa系统的净输出功率较大;相比R601,采用R^(2)45fa可以将系统的净输出功率提高168.06 kW(5.55%),热效率和效率分别可提高0.70%和2.86%。相比于单压有机朗肯循环(SPORC),DPORC可以有效减小系统随运行时间净输出功率降低的幅度。经过40 a的运行,采用R601的系统净输出功率降低幅度最低(428.11 kW,14.14%),而采用R600系统的净输出功率降低幅度最大(526.75 kW,16.55%)。 展开更多
关键词 有机朗肯循环 地热能 热力学性能 高压循环热量占比 运行时间
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热带季节雨林林窗区域土壤-植物-大气连续体热力效应初步分析 被引量:3
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作者 窦军霞 张一平 +2 位作者 马友鑫 刘玉洪 郭萍 《环境科学》 EI CAS CSCD 北大核心 2002年第6期91-96,共6页
利用西双版纳雾凉季和干热季热带季节雨林林窗的小气候观测资料 ,探讨了昼间林窗地表温、气温及下层植物的叶温的时空分布和变化规律 ,分析了叶温与气温和地表温的相互关系 .指出在林窗区域 ,由于受雾和太阳高度的影响 ,各小气候要素最... 利用西双版纳雾凉季和干热季热带季节雨林林窗的小气候观测资料 ,探讨了昼间林窗地表温、气温及下层植物的叶温的时空分布和变化规律 ,分析了叶温与气温和地表温的相互关系 .指出在林窗区域 ,由于受雾和太阳高度的影响 ,各小气候要素最大值随时间、季节的不同 ,出现在林窗不同的方位 ,并且存在叶温高值区时空动态位移现象 ;另外 ,林窗区域土壤 植物 大气连续体界面间热量传递方向随时间、季节的不同而发生着改变 ,甚至在同一时段内 ,林窗不同区域会存在热量传递方向截然相反的现象 ,显示出林窗内可能存在热量循环的小环流 .其结果对深入探讨林窗区域的热量传输 ,小气候的形成机制、生物多样性和更新等问题均具有重要意义 . 展开更多
关键词 林窗 土壤 植物 大气 热力效应 时空分布 森林 热量循环
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植被气孔阻抗对区域气候影响的数值试验 被引量:3
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作者 顾婷婷 周锁铨 +1 位作者 骆月珍 潘娅英 《气象科学》 CSCD 北大核心 2011年第3期290-297,共8页
应用区域气候模式RegCM3,单向嵌套NASA/NCAR全球环流模式CAM3.0的输出结果,模拟1992—1997年不同气候背景下,植被气孔阻抗变化对鄱阳湖流域地表水循环过程和地面热量平衡的影响。结果表明,在现代气候条件下,气孔阻抗加倍导致年平均温度... 应用区域气候模式RegCM3,单向嵌套NASA/NCAR全球环流模式CAM3.0的输出结果,模拟1992—1997年不同气候背景下,植被气孔阻抗变化对鄱阳湖流域地表水循环过程和地面热量平衡的影响。结果表明,在现代气候条件下,气孔阻抗加倍导致年平均温度增加了0.33℃(1.93%),降水减少了0.23 mm/d(2.4%);在CO2加倍的未来情景下(1)气孔阻抗不变时,平均温度增加了1.69℃(9.96%),降水增加了0.83 mm/d(8.6%),(2)气孔阻抗加倍时,年平均温度增加了2.02℃(11.9%),降水增加了0.68 mm/d(7.1%)。总的看来,气孔阻抗加倍的放大了CO2浓度增加(即温室效应)带来的影响。 展开更多
关键词 气孔阻抗 鄱阳湖流域 循环热量平衡 区域气候模式
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能适应气候变化的外墙系统——特朗布壁
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《建设科技》 2005年第19期52-52,共1页
关键词 供暖系统 气候变化 外墙 热量循环 热虹吸管 热空气
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地球内核某些区域在融化
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《科技与生活》 2011年第10期11-11,共1页
据美国物理学家组织网5月19日报道,英国利兹大学、美国加州大学圣地亚哥分校和印度理工大学联合研究发现,由于上覆层地幔的热量循环作用,地球内核从整体上在凝固,但局部存在融化现象。新研究有助于人们进一步理解地球内核的形成以... 据美国物理学家组织网5月19日报道,英国利兹大学、美国加州大学圣地亚哥分校和印度理工大学联合研究发现,由于上覆层地幔的热量循环作用,地球内核从整体上在凝固,但局部存在融化现象。新研究有助于人们进一步理解地球内核的形成以及作为“地球发电机”的外核是怎样产生地磁场的。相关论文发表在5月19日的《自然》杂志上。 展开更多
关键词 地球 内核 英国利兹大学 美国加州大学 《自然》杂志 物理学家 圣地亚哥 热量循环
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Study on Combination of Engine/Steam Turbine Cycle for Improving the Energy Conversion
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作者 A.M. Barbosa S. Cardoso D. Bastos-Netto 《Journal of Energy and Power Engineering》 2011年第5期434-437,共4页
This work discusses the combination of two thermodynamic cycles seeking to improve the overall chemical energy conversion rate into mechanical energy. Here one engine operates according a Rankine cycle in order to use... This work discusses the combination of two thermodynamic cycles seeking to improve the overall chemical energy conversion rate into mechanical energy. Here one engine operates according a Rankine cycle in order to use part of the thermal energy released to the boundary, i.e., the neighboring atmosphere. The analysis of this combined cycle shows that it might, under proper condition, represent a gain of 1.2% in the overall delivered engine power. 展开更多
关键词 AVAILABILITY internal combustion engines chemical energy combined cycle Rankine cycle.
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Oscillation heat transfer dynamic model for new type oscillation looped heat pipe with double liquid slugs
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作者 鄂加强 朱蓉甲 +2 位作者 陈健美 龙艳 胡小峰 《Journal of Central South University》 SCIE EI CAS 2012年第11期3194-3201,共8页
In order to explain the oscillation heat transfer dynamics of closed loop oscillation heat pipe (CLOHP) with two liquid slugs,analysis on the forces and heat transfer process of the partial gas-liquid phase system inv... In order to explain the oscillation heat transfer dynamics of closed loop oscillation heat pipe (CLOHP) with two liquid slugs,analysis on the forces and heat transfer process of the partial gas-liquid phase system involving multiple parameters was carried out,and a new type oscillation heat transfer dynamic model of the CLOHP was set up based on conservation laws of mass,momentum and energy.Application results indicate that its oscillation heat transfer dynamics features depend largely on the filling rate,pipe diameter and difference in temperature.Besides,oscillation intensity and transfer performance can be improved to a large extent by increasing the temperature difference properly and enlarging the pipe diameter within a certain range under a certain filling rate. 展开更多
关键词 oscillation heat pipe physical model numerical solution
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Quantum heat engine cycle working with a strongly correlated electron system 被引量:2
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作者 WANG HaiLong PAN Hui WANG RongMing 《Science China(Physics,Mechanics & Astronomy)》 SCIE EI CAS 2012年第5期792-797,共6页
A new model of a quantum heat engine (QHE) cycle is established, in which the working substance consists of an interacting electrons system. One of our purposes is to test the validity of the second law of thermodyn... A new model of a quantum heat engine (QHE) cycle is established, in which the working substance consists of an interacting electrons system. One of our purposes is to test the validity of the second law of thermodynamics by this model, which is more general than the spin-1/2 antiferromagnetic Heisenberg model since it would recover the spin model when the on-site Coulomb interaction U is strong enough. On the basis of quantum mechanics and the first law of thermodynamics, we show no violation of the second law of thermodynamics during the cycle. We further study the performance characteristics of the cycle by investigating in detail the optimal relations of efficiency and dimensionless power output. We find that the efficiency of our engine can be expressed as η = t22/t21 in the large-U limit, which is valid even for a four sites QHE. 展开更多
关键词 quantum heat engine strongly correlated electrons Hubbard model
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An Alternative Adiabatic Quantum Algorithm for the Hamiltonian Cycle Problem
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作者 张大剑 仝殿民 +1 位作者 陆遥 龙桂鲁 《Communications in Theoretical Physics》 SCIE CAS CSCD 2015年第5期554-558,共5页
We put forward an alternative quantum algorithm for finding ttamiltonian cycles in any N-vertex graph based on adiabatic quantum computing. With a yon Neumann measurement on the final state, one may determine whether ... We put forward an alternative quantum algorithm for finding ttamiltonian cycles in any N-vertex graph based on adiabatic quantum computing. With a yon Neumann measurement on the final state, one may determine whether there is a HamiRonian cycle in the graph and pick out a cycle if there is any. Although the proposed algorithm provides a quadratic speedup, it gives an alternative algorithm based on adiabatic quantum computation, which is of interest because of its inherent robustness. 展开更多
关键词 Iquantum algorithm Hamiltonian cycle problem adiabatic quantum computation
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Experimental study of the flow and heat transfer of a gas–water mixture through a packed channel 被引量:1
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作者 Xiaolei Zhu Xiaofeng Sui +2 位作者 Yan Zhao Ji'an Meng Zhixin Li 《Science Bulletin》 SCIE EI CAS CSCD 2016年第5期406-415,共10页
Waste heat recovery from the flue gas of gasfired boilers was studied experimentally by measuring the flow and heat transfer of air and water through six kinds of packing with saturated humid air as the simulated flue... Waste heat recovery from the flue gas of gasfired boilers was studied experimentally by measuring the flow and heat transfer of air and water through six kinds of packing with saturated humid air as the simulated flue gas.The experiments measured the effects of inlet air temperature, inlet air velocity and circulating water flow rate on the flow and heat transfer. The results show that higher inlet air temperatures and lower inlet air velocities lower the flow resistance and increase the heat transfer coefficient. The stainless steel packing had better surface wettability and larger thermal conductivity than the plastic packing, which enhanced the heat transfer between the water and the saturated moist air. When both the flow resistance reduction and the heat transfer enhancement were considered, the experimental results gave an optimal packing-specific surface area. A packed heat exchanger tower was designed for waste heat recovery from the flue gas of gas-fired boilers based on the experimental results which had better flow and heat transfer characteristics with lower pump and fan power consumption, more stable system operation and less thermal fluctuations compared with a non-packed heat transfer system with atomized water. 展开更多
关键词 Flue gas waste heat recovery Flow and heat transfer Moist air Packed heat exchanger tower
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Quantum Heat Engine and Negative Boltzmann Temperature
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作者 Jing-Yi Xi Hai-Tao Quan 《Communications in Theoretical Physics》 SCIE CAS CSCD 2017年第9期347-356,共10页
To clarify the ambiguity on negative Boltzmann temperature in literature, we study the Carnot and the Otto cycle with one of the heat reservoirs at the negative Boltzmann temperature based on a canonical ensemble desc... To clarify the ambiguity on negative Boltzmann temperature in literature, we study the Carnot and the Otto cycle with one of the heat reservoirs at the negative Boltzmann temperature based on a canonical ensemble description. The work extraction, entropy production and the efficiency of these cycles are explored. Conditions for constructing and properties of these thermodynamic cycles are elucidated. We find that the apparent "violation" of the second law of thermodynamics in these cycles are due to the fact that the traditional definition of thermodynamic efficiency is inappropriate in this situation. When properly understanding the efficiency and the adiabatic processes, in which the system crosses over "absolute ZERO" in a limit sense, the Carnot cycle with one of the heat reservoirs at a negative Boltzmann temperature can be understood straightforwardly, and it contradicts neither the second nor the third law of thermodynamics. Hence, negative Boltzmann temperature is a consistent concept in thermodynamics. We use a two-level system and an Ising spin system to illustrate our central results. 展开更多
关键词 quantum heat engines negative Boltzman temperature thermodynamics laws
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