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Role of outdoor trees on pedestrian wind and thermal conditions around a pre-education building for sustainable energy management
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作者 LI Xiao-jie TANG Hui-li 《Journal of Central South University》 SCIE EI CAS CSCD 2024年第6期2039-2053,共15页
Finding sustainable energy resources is essential to face the increasing energy demand.Trees are an important part of ancient architecture but are becoming rare in urban areas.Trees can control and tune the pedestrian... Finding sustainable energy resources is essential to face the increasing energy demand.Trees are an important part of ancient architecture but are becoming rare in urban areas.Trees can control and tune the pedestrian-level wind velocity and thermal condition.In this study,a numerical investigation is employed to assess the role of trees planted in the windward direction of the building complex on the thermal and pedestrian wind velocity conditions around/inside a pre-education building located in the center of the complex.Compared to the previous studies(which considered only outside buildings),this work considers the effects of trees on microclimate change both inside/outside buildings.Effects of different parameters including the leaf area density and number of trees,number of rows,far-field velocity magnitude,and thermal condition around the main building are assessed.The results show that the flow velocity in the spacing between the first-row buildings is reduced by 30%-40% when the one-row trees with 2 m height are planted 15 m farther than the buildings.Furthermore,two rows of trees are more effective in higher velocities and reduce the maximum velocity by about 50%.The investigation shows that trees also could reduce the temperature by about 1℃around the building. 展开更多
关键词 sustainable management energy trees urban area thermal condition building
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Misorientation dependent thermal condition-solute field cooperative effect on competitive grain growth in the converging case during directional solidification of a nickel-base superalloy 被引量:5
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作者 X.B.Meng J.G.Li +10 位作者 C.N.Jing J.D.Liu S.Y.Ma J.J.Liang C.W.Zhang M.Wang B.T.Tang T.Lin J.L.Chen X.L.Zhang Q.Li 《Journal of Materials Science & Technology》 SCIE EI CAS CSCD 2022年第1期151-159,共9页
Nowadays,thermal condition and solute field are considered as the potential dominant factors controlling competitive grain growth during directional solidification process.However,the controlling modes and critical co... Nowadays,thermal condition and solute field are considered as the potential dominant factors controlling competitive grain growth during directional solidification process.However,the controlling modes and critical conditions of competitive grain growth have been drastically debated over the past two decades.In this work,thermal condition and solute field are combined to study the competitive grain growth in the converging case by experimental observation and numerical simulation of bicrystal samples.We find the competitive grain growth is controlled by the cooperative effect of thermal condition and solute field,and the controlling modes are related to the bicrystal misorientation between favorably and unfavorably oriented grains.When the unfavorably oriented grain is low misoriented,unfavorably oriented grain dominates grain selection,and the competitive grain growth performs as solute field domination.However,with the increase of unfavorably oriented grain’s misorientation,the grain selection converts into favorably oriented grain domination,and the competitive grain growth changes to thermal condition domination.To explain these abnormal transformation phenomena,we propose a misorientation dependent thermal condition-solute field cooperative domination model and identify the critical conditions by a critical misorientation(θ_(cm)).According to dynamic equation of dendrite growth,we calculate the critical misorientationθ;to prove this model.The theoretical calculation results agree well with the experimental results. 展开更多
关键词 Competitive grain growth Cooperative effect thermal condition Solute field Critical misorientation Unusual overgrowth Abnormal transformation
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Elevating the flexibility and operability of dividing-wall distillation columns via feed thermal condition adjustment
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作者 Yang Yuan Kejin Huang +3 位作者 Liang Zhang Haisheng Chen Shaofeng Wang Yingjie Jiao 《Chinese Journal of Chemical Engineering》 SCIE EI CAS CSCD 2017年第7期947-954,共8页
Because of the complicated interplay between the prefractionator and main distillation column involved,the black-hole problem might occur and prohibit the assignment of four specifications to dividing-wall distillatio... Because of the complicated interplay between the prefractionator and main distillation column involved,the black-hole problem might occur and prohibit the assignment of four specifications to dividing-wall distillation columns(DWDCs)(e.g., the three main product compositions plus an impurity ratio in the intermediate product), which lowers terribly process flexibility and operability. In this paper, a feed thermal condition adjustment strategy, achieved by the installation of a pre-heater in feed pipeline, is employed to eliminate the black-hole problem and serve to enhance process flexibility and operability. Through the strong influence to the overall mass and energy balance of the DWDC, the feed thermal condition adjustment can alter the interlinking flows between the thermally coupled prefractionator and main distillation column and work effectively to coordinate their relationship. A DWDC separating a benzene, toluene, and o-xylene mixture is chosen to ascertain the feasibility of the philosophy proposed. The static and dynamic studies demonstrate that the feed thermal condition adjustment is an effective way to refine process design and can completely eliminate the black-hole problem and elevate consequently process flexibility and operability. 展开更多
关键词 DWDC Process flexibility Process operability Black-hole problem Feed thermal condition
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Fourth-Order Compact Formulation for the Resolution of Heat Transfer in Natural Convection of Water-Cu Nanofluid in a Square Cavity with a Sinusoidal Boundary Thermal Condition
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作者 Mostafa Zaydan Naoufal Yadil +2 位作者 Zoubair Boulahia Abderrahim Wakif Rachid Sehaqui 《World Journal of Nano Science and Engineering》 2016年第2期70-89,共20页
In the present work, we numerically study the laminar natural convection of a nanofluid confined in a square cavity. The vertical walls are assumed to be insulated, non-conducting, and impermeable to mass transfer. Th... In the present work, we numerically study the laminar natural convection of a nanofluid confined in a square cavity. The vertical walls are assumed to be insulated, non-conducting, and impermeable to mass transfer. The horizontal walls are differentially heated, and the low is maintained at hot condition (sinusoidal) when the high one is cold. The objective of this work is to develop a new height accurate method for solving heat transfer equations. The new method is a Fourth Order Compact (F.O.C). This work aims to show the interest of the method and understand the effect of the presence of nanofluids in closed square systems on the natural convection mechanism. The numerical simulations are performed for Prandtl number ( ), the Rayleigh numbers varying between  and for different volume fractions varies between 0% and 10% for the nanofluid (water + Cu). 展开更多
关键词 NANOFLUID Heat Transfer Natural Convection Fourth-Order Compact (F.O.C) Formulation Numerical Performance Sinusoidal Boundary thermal condition
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Dynamic modeling of thermal conditions for hot-water district-heating networks 被引量:9
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作者 周守军 田茂诚 +1 位作者 赵有恩 郭敏 《Journal of Hydrodynamics》 SCIE EI CSCD 2014年第4期531-537,共7页
To investigate the dynamic characteristics of the thermal conditions of hot-water district-heating networks, a dynamic modeling method is proposed with consideration of the heat dissipations in pipes and the character... To investigate the dynamic characteristics of the thermal conditions of hot-water district-heating networks, a dynamic modeling method is proposed with consideration of the heat dissipations in pipes and the characteristic line method is adopted to solve it. Besides, the influences of different errors, space steps and initial values on the convergence of the dynamic model results are analyzed for a model network. Finally, a part of a certain city district-heating system is simulated and the results are compared with the actual operation data in half an hour from 6 secondary heat stations. The results indicate that the relative errors for the supply pressure and temperature in 5 stations are all within 2%, except in one station, where the relative error approaches 4%. So the proposed model and algorithm are validated. 展开更多
关键词 district-heating network thermal conditions dynamic modeling characteristic line method
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Evaluation of Haney-Type Surface ThermalBoundary Conditions Using a CoupledAtmosphere and Ocean Model 被引量:1
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作者 Peter C. Chu 陈玉春 吕世华 《Advances in Atmospheric Sciences》 SCIE CAS CSCD 2001年第3期355-375,共21页
A coupled atmosphere-ocean model developed at the Institute for Space Studies at NASA Goddard Space Flight Center (Russell et al., 1995) was used to verify the validity of Haney-type surface thermal boundary condition... A coupled atmosphere-ocean model developed at the Institute for Space Studies at NASA Goddard Space Flight Center (Russell et al., 1995) was used to verify the validity of Haney-type surface thermal boundary condition, which linearly connects net downward surface heat fluxQ to air/sea temperature difference ΔT by a relaxation coefficientk. The model was initiated from the National Centers for Environmental Prediction (NCEP) atmospheric observations for 1 December 1977, and from the National Ocean Data Center (NODC) global climatological mean December temperature and salinity fields at 1°x 1° resolution. The time step is 7.5 minutes. We integrated the model for 450 days and obtained a complete model-generated global data set of daily mean downward net surface fluxQ, surface air temperatureT A, and sea surface temperatureT O. Then, we calculated the cross-correlation coefficients (CCC) betweenQ and ΔT. The ensemble mean CCC fields show (a) no correlation betweenQ and ΔT in the equatiorial regions, and (b) evident correlation (CCC≥0.7) betweenQ and ΔT in the middle and high latitudes. Additionally, we did the variance analysis and found that whenk=120 W m?2K?1, the two standard deviations, σQ and σκδT , are quite close in the middle and high latitudes. These results agree quite well with a previous research (Chu et al., 1998) on analyzing the NCEP re-analyzed surface data, except that a smaller value ofk (80 W m?2K?1) was found in the previous study. Key words Air-sea coupled system - Ocean surface fluxes - Surface thermal boundary condition 展开更多
关键词 Air-sea coupled system Ocean surface fluxes Surface thermal boundary condition
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Thermal catalysis under dark ambient conditions in environmental remediation:Fundamental principles, development, and challenges 被引量:1
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作者 Huihuang Chen Jiangang Ku Lianzhou Wang 《Chinese Journal of Catalysis》 SCIE EI CAS CSCD 北大核心 2019年第8期1117-1134,共18页
Thermal catalytic degradation of organic pollutants conducted in the dark at room temperature under atmospheric pressure without the need of external chemicals and energy sources has attracted a lot of attention over ... Thermal catalytic degradation of organic pollutants conducted in the dark at room temperature under atmospheric pressure without the need of external chemicals and energy sources has attracted a lot of attention over the last two decades. It provides unparalleled advantages over other advanced oxidation processes (AOPs) in treating domestic and industrial contaminated wastewater from the viewpoint of energy/chemical conservation and ease of operation. Rich knowledge has been accumulated in terms of the synthesis and application of thermal catalysts though controversies remain regarding their underlying mechanisms. This review sheds light on the proposed thermo- catalysis mechanism for the first time and presents the development of thermal catalysts under dark ambient conditions with a focus on catalyst materials, catalytic activity, and mechanism. The present review aims to provide mechanistic insights into the rational design of novel and efficient catalysts, and their underlying mechanisms as well as the emerging challenges and perspectives in thermo-catalysis under dark ambient conditions used for the practical and efficient treatment of contaminated wastewater. 展开更多
关键词 thermal catalysis under dark ambient conditions MECHANISMS Advanced oxidation processes Wastewater treatment Organic pollutant degradation
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Impact of summer office set air-conditioning temperature on energy consumption and thermal comfort 被引量:3
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作者 刘红 马小磊 高亚峰 《Journal of Central South University》 SCIE EI CAS 2009年第S1期6-11,共6页
To explore the relationship between summer office set air-conditioning temperature and energy consumption related to air conditioning use to provide human thermal comfort,a comparison experiment was conducted in three... To explore the relationship between summer office set air-conditioning temperature and energy consumption related to air conditioning use to provide human thermal comfort,a comparison experiment was conducted in three similar offices at temperatures of 24,26 and 28 ℃ respectively. A thermal comfort questionnaire survey was conducted. It is demonstrated that air-conditioner energy consumption at the set temperature of 28 ℃ is 113% and 271% lower than at 26 ℃ and 24 ℃,respectively. A linear relationship exists between air-conditioner energy consumption and the indoor and outdoor temperature difference. When comfortably dressed,over 80% of research participants accept the set temperature of 28 ℃. The regression analysis leads to a neutral temperature of 26.2 ℃ and an acceptable temperature of 28.2 ℃ for over 80% of the research participants subjects,indicating that the current 26 ℃ set temperature for offices in summer,required by Chinese General Office of the State Council,can be increased to 28 ℃. Moreover,analysis of predicted mean vote(PMV) index shows that a set temperature of 27 ℃,not 26 ℃,is sufficiently comfortable for office staff wearing long-sleeve shirts,long pants and leather shoes. 展开更多
关键词 AIR-conditionING TEMPERATURE thermal COMFORT AIR-conditionER energy consumption NEUTRAL TEMPERATURE acceptable TEMPERATURE
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Experimental Measurements of the Sensitivity of Fiber-optic Bragg Grating Sensors with a Soft Polymeric Coating under Mechanical Loading,Thermal and Magnetic under Cryogenic Conditions 被引量:2
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作者 关明智 王省哲 +2 位作者 辛灿杰 周又和 马力祯 《Chinese Physics Letters》 SCIE CAS CSCD 2015年第1期140-144,共5页
The strain and temperature sensing performance of fiber-optic Bragg gratings (FBGs) with soft polymeric coating, which can be used to sense internal strain in superconducting coils, are evaluated under variable cryo... The strain and temperature sensing performance of fiber-optic Bragg gratings (FBGs) with soft polymeric coating, which can be used to sense internal strain in superconducting coils, are evaluated under variable cryogenic field and magnetic field. The response to a temperature and strain change of coated-soft polymeric FBGs is tested by comparing with those of coated-metal FBGs. The results indicate that the coated-soft polymeric FBGs can freely detect temperature and thermal strain, their At variable magnetic field, the tested results indicate accuracy and repeatability are also discussed in detail. that the cross-coupling effects of FBGs with different matrixes are not negligible to measure electromagnetic strain during fast excitation. The present results are expected to be able to provide basis measurements on the strain of pulsed superconducting magnet/cable (cable- around-conduit conductors, cable-in-conduit conductors), independently or utilized together with other strain measurement methods. 展开更多
关键词 FBG net Experimental Measurements of the Sensitivity of Fiber-optic Bragg Grating Sensors with a Soft Polymeric Coating under Mechanical Loading thermal and Magnetic under Cryogenic conditions
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The Effects of Nonuniform Thermal Boundary Condition on Thermal Stress Calculation of Water-Cooled W/Cu Divertors
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作者 韩乐 常海萍 +2 位作者 张镜洋 刘楠 许铁军 《Plasma Science and Technology》 SCIE EI CAS CSCD 2014年第10期988-994,共7页
The thermal boundary condition has very important effects on the accuracy of thermal stress calculation of a water-cooled W/Cu divertor. In this paper, phase-change heat transfer was simulated based on the Euler homog... The thermal boundary condition has very important effects on the accuracy of thermal stress calculation of a water-cooled W/Cu divertor. In this paper, phase-change heat transfer was simulated based on the Euler homogeneous phase model, and local differences of liquid physical properties were considered under one-sided high heating conditions. The steady-state temperature field and thermal stress field under nonuniform thermal boundary conditions were obtained through numerical calculation. By comparison with the case of traditional uniform thermal boundary conditions, the results show that the distribution of thermal stress under nonuniform thermal boundary conditions exhibits tbe same trend as that under uniform thermal boundary conditions, but is larger in value. The maximum difference of maximum von Mises stress is up to 42% under the highest heating conditions. These results provide a valuable reference for the thermal stress caleulat.ion of water-cooled W/Cu divertors. 展开更多
关键词 W/Cu divcrtor thermal stress nonuniform thermal boundary condition mlincrical alculation
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Energy Storage System for Solar Thermal Air Conditioning Combined with Ejector Cooling System
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作者 Sarayooth Vaivudh 《Journal of Energy and Power Engineering》 2015年第2期179-184,共6页
A system of energy storage for solar thermal air conditioning combined with ejector cooling system for residential is determined in this paper. The purpose of this study is to design the energy storage system for heat... A system of energy storage for solar thermal air conditioning combined with ejector cooling system for residential is determined in this paper. The purpose of this study is to design the energy storage system for heating the water in a storage tank to reach the required temperature for exchanging heat with the refrigerant of cooling system. The design from calculation of thermal energy storage system that proper with the solar flat plate collector area results are 70 m2, and the hot water temperature is over than 80 ℃. A cooling system is selected for refrigerant of R141b from the solar air conditioning system of 10.5 kW, and the energy source is solar thermal energy from the collector that there is an efficiency of 0.46 approximately. This storage system for the electric solar cooling system can be reduced the problem of the intermittent of energy source with the constant generating temperature to run the cooling system continuously. 展开更多
关键词 Energy storage system solar thermal air conditioning ejector cooling system.
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基于共享储能服务的智能楼宇双层优化配置 被引量:8
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作者 张浩鹏 李泽宁 +3 位作者 薛屹洵 常馨月 苏珈 孙宏斌 《中国电机工程学报》 北大核心 2025年第3期899-910,I0008,共13页
为降低城市化进程中楼宇储能投资成本,提出一种基于共享储能服务的智能楼宇(intelligent buildings,IBs)双层优化配置方法。首先,建立计及寿命周期的共享储能电站(shared energy storage station,SESS)模型;其次,基于楼宇建筑物热惯性,... 为降低城市化进程中楼宇储能投资成本,提出一种基于共享储能服务的智能楼宇(intelligent buildings,IBs)双层优化配置方法。首先,建立计及寿命周期的共享储能电站(shared energy storage station,SESS)模型;其次,基于楼宇建筑物热惯性,构建含空调系统的IBs数学模型;然后,综合考虑SESS与IBs的差异化利益诉求,建立基于SESS的IBs双层优化模型。上层模型目标函数旨在降低SESS的规划成本,下层模型目标函数旨在降低IBs的年运行成本,并采用卡罗需-库恩-塔克(Karush-Kuhn-Tucher,KKT)条件将原双层优化问题转换为单层混合整数线性规划问题进行求解。最后,以3个IBs社区的四季典型日为例,对比分析不同优化配置方法对于IBs运行和SESS配置结果的影响。结果表明,在满足IBs用户温度舒适性的同时,所提双层优化配置方法可充分满足SESS运营商与IBs的差异化利益诉求,实现双方的共赢。 展开更多
关键词 空调 双层优化配置 建筑热惯性 智能楼宇 共享储能
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Effect of periodic heat transfer on the transient thermal behavior of a convective-radiative fully wet porous moving trapezoidal fin
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作者 B.J.GIREESHA M.L.KEERTHI 《Applied Mathematics and Mechanics(English Edition)》 SCIE EI CSCD 2023年第4期653-668,共16页
A moving trapezoidal profiled convective-radiative porous longitudinal fin wetted in a single-phase fluid is considered in the current article.The periodic variation in the fin base temperature is taken into account a... A moving trapezoidal profiled convective-radiative porous longitudinal fin wetted in a single-phase fluid is considered in the current article.The periodic variation in the fin base temperature is taken into account along with the temperature sensitive thermal conductivity and convective heat transfer coefficients.The modeled problem,which is resolved into a non-linear partial differential equation(PDE),is made dimensionless and solved by employing the finite difference method(FDM).The results are displayed through graphs and discussed.The effects of amplitude,frequency of oscillation,wet nature,Peclet number,and other relevant quantities on the distribution of temperature through the fin length and with the dimensionless time are investigated.It is deciphered that the periodic heat transfer gives rise to the wavy nature of the fin thermal profile against time.The analysis is beneficial in the design of fin structures for applications like solar collectors,space/airborne applications,and refrigeration industries. 展开更多
关键词 convection fully wet porous fin trapezoidal profile moving fin unsteady periodic thermal condition
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Blood-based magnetohydrodynamic Casson hybrid nanofluid flow on convectively heated bi-directional porous stretching sheet with variable porosity and slip constraints
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作者 Showkat Ahmad Lone Rawan Bossly +3 位作者 Fuad S.Alduais Afrah Al-Bossly Arshad Khan Anwar Saeed 《Chinese Physics B》 2025年第1期294-306,共13页
Fluid flow through porous spaces with variable porosity has wide-range applications,notably in biomedical and thermal engineering,where it plays a vital role in comprehending blood flow dynamics within cardiovascular ... Fluid flow through porous spaces with variable porosity has wide-range applications,notably in biomedical and thermal engineering,where it plays a vital role in comprehending blood flow dynamics within cardiovascular systems,heat transfer and thermal management systems improve efficiency using porous materials with variable porosity.Keeping these important applications in view,in current study blood-based hybrid nanofluid flow has considered on a convectively heated sheet.The sheet exhibits the properties of a porous medium with variable porosity and extends in both the x and y directions.Blood has used as base fluid in which the nanoparticles of Cu and Cu O have been mixed.Thermal radiation,space-dependent,and thermal-dependent heat sources have been incorporated into the energy equation,while magnetic effects have been integrated into the momentum equations.Dimensionless variables have employed to transform the modeled equations into dimensionless form and facilitating their solution using bvp4c approach.It has concluded in this study that,both the primary and secondary velocities augmented with upsurge in variable porous factor and declined with escalation in stretching ratio,Casson,magnetic,and slip factors along x-and y-axes.Thermal distribution has grown up with upsurge in Casson factor,magnetic factor,thermal Biot number,and thermal/space-dependent heat sources while has retarded with growth in variable porous and stretching ratio factors.The findings of this investigation have been compared with the existing literature,revealing a strong agreement among present and established results that ensured the validation of the model and method used in this work. 展开更多
关键词 hybrid nanofluid Casson fluid MAGNETOHYDRODYNAMICS variable porous space space/thermaldependent heat sources velocity slip and thermal convective conditions
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计及需求侧资源的电力-交通系统协同负荷恢复随机优化方法:以建筑用能为例
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作者 李泽宁 孙宏斌 +2 位作者 薛屹洵 常馨月 苏珈 《中国电机工程学报》 北大核心 2025年第20期8024-8039,I0015,共17页
为保障灾后城市及时恢复供能,以建筑用能为例,提出一种考虑建筑热惯性的电力-交通系统协同负荷恢复随机优化方法。首先,基于需求侧建筑围护结构的蓄冷特性,并综合考虑电网与路网的运行约束,构建计及建筑热惯性的电力-交通系统协同负荷... 为保障灾后城市及时恢复供能,以建筑用能为例,提出一种考虑建筑热惯性的电力-交通系统协同负荷恢复随机优化方法。首先,基于需求侧建筑围护结构的蓄冷特性,并综合考虑电网与路网的运行约束,构建计及建筑热惯性的电力-交通系统协同负荷恢复数学模型;其次,利用空调(air conditioner,AC)的制冷灵活性与应急电源车(emergency power supply vehicle,EPSV)的时空灵活性,以最大化负荷的加权供电时间及最小化总网损为目标,提出多时段协同负荷恢复方法;然后,考虑到外界环境温度与车辆行驶速度的不确定性,利用机会约束规划将原问题转化为混合整数二阶锥问题进行求解;最后,以灾后故障场景为例,对比分析不同恢复方案对于恢复结果的影响。结果表明,所提方法可在不确定环境下充分利用楼宇与EPSV在恢复过程中能量的互补特性,提升关键负荷恢复效果。 展开更多
关键词 空调 建筑热惯性 机会约束规划 蓄冷特性 协同负荷恢复
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季铵盐-80在洗发香波中的应用性能研究
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作者 陈国静 陈以平 +2 位作者 吴嘉振 陈佳燕 袁立新 《中国洗涤用品工业》 2025年第9期68-77,共10页
主要研究了硅油改性季铵盐-80(INCI:QUATERNIUM-80)原料的毛鳞片修护、热保护、抗静电特点,对比测试了其与传统阳离子调理剂(阳离子瓜儿胶、聚季铵盐-10)在洗发香波配方中的应用差异。数据表明,季铵盐-80具有抚平毛鳞片、抗静电和降低... 主要研究了硅油改性季铵盐-80(INCI:QUATERNIUM-80)原料的毛鳞片修护、热保护、抗静电特点,对比测试了其与传统阳离子调理剂(阳离子瓜儿胶、聚季铵盐-10)在洗发香波配方中的应用差异。数据表明,季铵盐-80具有抚平毛鳞片、抗静电和降低高温处理后发束摩擦力8.73%的效果;洗发香波配方中,0.4%C-162、0.4%PQ-10、0.2%C-162+0.2%Q80、0.2%PQ-10+0.2%Q80、0.4%Q80调理剂搭配的配方透明度和干、湿发梳理改善度依次递增;阳离子沉积量实验中,0.4%C-162、0.4%PQ-10、0.2%C-162+0.2%Q80、0.2%PQ-10+0.2%Q80、0.4%Q80组红值a分别为6.9、4.1、3、2.1、0.8;消费者测试中,0.4%Q80的致痒性最低,冲水顺滑感和干发顺滑度最好。研究证实季铵盐-80凭借独特的分子结构优势,在洗发香波中具有优异的综合性能,为高端护发产品的开发提供重要参考。 展开更多
关键词 季铵盐-80 阳离子调理剂 热保护 抗静电 阳离子沉积
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“双碳”目标下汽车热管理系统能效优化技术应用
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作者 胡珂 王巧军 +1 位作者 阮先轸 张凯 《制冷与空调》 2025年第8期1-7,共7页
在国家“双碳”目标明确提出后,对汽车热管理系统的能效提出了更高的要求。文章从“开源”和“节流”两个方面,全面梳理了当前热管理领域各项技术的进展,并结合笔者亲身参与的工作经历,对各项技术的技术原理、推进思路等进行了分析说明... 在国家“双碳”目标明确提出后,对汽车热管理系统的能效提出了更高的要求。文章从“开源”和“节流”两个方面,全面梳理了当前热管理领域各项技术的进展,并结合笔者亲身参与的工作经历,对各项技术的技术原理、推进思路等进行了分析说明,最后对汽车热管理领域各项技术的发展前景进行了展望。 展开更多
关键词 汽车空调 热管理系统 能效 “双碳”目标
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耦合服务器结构特性的数据中心气流组织数值分析与优化
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作者 胡姝凡 曹军 《制冷与空调》 2025年第9期28-35,49,共9页
文章在考虑服务器结构特点的基础上,通过构建数值仿真模型,进一步明确了气流组织形式对数据中心温度场分布特性的影响规律。从仿真结果可知,机房中封闭冷通道可以有效解决换热不充分及冷热气流掺混现象等问题,机房内气流均匀性更好,空... 文章在考虑服务器结构特点的基础上,通过构建数值仿真模型,进一步明确了气流组织形式对数据中心温度场分布特性的影响规律。从仿真结果可知,机房中封闭冷通道可以有效解决换热不充分及冷热气流掺混现象等问题,机房内气流均匀性更好,空调送风均匀,冷却效果好且没有局部热点风险,有效提高冷量利用率。列间空调的不同摆放方式也对机房热环境有小幅度影响,空调斜对布置比正对布置形式下降温效果更好。在房间级地板下送风工况下,在空调进风口处添加弧形隔板,以及在机柜内空置区域安装盲板,均可以有效提高冷量利用率,优化机房热环境。最后,运用热环境评价指标来评价机房热环境,进一步验证计算结果。 展开更多
关键词 空调 数据中心 气流组织 数值模拟 热环境 评价指标
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挂壁式空调器室内机异响(热胀冷缩声)的解决方案
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作者 石磊 《日用电器》 2025年第6期86-92,共7页
随着用户对空调舒适性和静音性能的要求不断提升,空调运行过程中由热胀冷缩引发的异响问题日益显著,尤其在夜间环境中,显著影响用户的休息与使用体验。本文结合多年产品开发经验,针对室内机运行及停机过程中出现的热胀冷缩异响问题,提... 随着用户对空调舒适性和静音性能的要求不断提升,空调运行过程中由热胀冷缩引发的异响问题日益显著,尤其在夜间环境中,显著影响用户的休息与使用体验。本文结合多年产品开发经验,针对室内机运行及停机过程中出现的热胀冷缩异响问题,提出了多项结构与材料改进方案,并通过实验验证其有效性,显著改善了空调异响现象。 展开更多
关键词 挂壁式空调器 室内机 热胀冷缩 结构优化 低噪音材料
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移动“新风”空调:最优位置与温度设置研究
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作者 万蔚琦 李雁妮 +3 位作者 郭思睿 高凤娇 万瑾 刘道军 《上海师范大学学报(自然科学版中英文)》 2025年第4期424-431,共8页
随着科技的快速发展和人们对舒适生活的追求,移动“新风”空调作为一种灵活高效的室内环境调节设备,越来越受到人们的青睐.本研究旨在通过数学建模、数据分析对比的方法,合理运用k-ε湍流模型、单方程湿度输运模型来模拟移动新风空调的... 随着科技的快速发展和人们对舒适生活的追求,移动“新风”空调作为一种灵活高效的室内环境调节设备,越来越受到人们的青睐.本研究旨在通过数学建模、数据分析对比的方法,合理运用k-ε湍流模型、单方程湿度输运模型来模拟移动新风空调的运作场,并在引入新风和节能(温度限定在26~28℃范围内)条件下,适当地移动空调位置和设置温度,从而在节能减排的前提下,为人体提供舒适的室内环境. 展开更多
关键词 移动空调 新风系统 人体舒适性 热环境
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