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Improvement of Surface Flashover Performance of Al_2O_3 Ceramics in Vacuum by Adopting A-B-A Insulation System 被引量:5
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作者 李盛涛 张拓 +3 位作者 黄奇峰 李巍巍 倪风燕 李建英 《Plasma Science and Technology》 SCIE EI CAS CSCD 2011年第2期235-241,共7页
A new insulation system with inorganic A-B-A insulators was proposed to improve the surface flashover performance in vacuum. Inorganic A-B-A insulator samples of Mo/Al2O3 cermet-Al2O3 ceramic-Mo/Al2O3 cermet were prep... A new insulation system with inorganic A-B-A insulators was proposed to improve the surface flashover performance in vacuum. Inorganic A-B-A insulator samples of Mo/Al2O3 cermet-Al2O3 ceramic-Mo/Al2O3 cermet were prepared, in which the conductivity and permittivity of the Mo/Al2O3 cermets were controlled through different amount of metallic molybdenum powder added. The effects of both conductivity and permittivity of Mo/Al2O3 cermets on the DC and impulse surface flashover voltage in vacuum were experimentally investigated. The result showed that the DC and impulse surface flashover voltage were improved by 52% and 95%, respectively. For the distribution of electric field, two triple junctions, i.e., vacuum-layer A-cathode (TJ1) and vacuum-layer A-layer B (TJ2) were prepared with the introduction of layer A into the A-B-A insulation system. Based on the electric field distribution obtained via electrostatic field simulation and Maxwell-Wagner three-layer model, the electric field of T J1 decreases while that of T J2 increases with the increase in conductivity and permittivity of layer A under applied DC and impulse voltage, respectively. Therefore, the improvement of surface flashover performance of A-B-A insulators has been reasonably explained. 展开更多
关键词 surface fiashover in vacuum A-B-A insulator triple junction electric field distribution CERMET
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Test research on IR radiation characteristics control of space target using cryogenic vacuum multilayer insulation film structure 被引量:1
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作者 卢春莲 周彦平 付森 《Journal of Harbin Institute of Technology(New Series)》 EI CAS 2011年第4期119-122,共4页
In order to achieve the objective of controlling IR radiation characteristics of space target,we design multilayer insulation film structure to cover the target.In space environment the structure comes to cryogenic va... In order to achieve the objective of controlling IR radiation characteristics of space target,we design multilayer insulation film structure to cover the target.In space environment the structure comes to cryogenic vacuum multilayer insulation film structure.It can quickly lower the surface temperature of space target,approaching to the ultra-low temperature of the space environment.A vacuum simulation verification test was designed and performed.Through the analysis of test results,we can see that the surface temperature of space target covered by the structure changes with the ambient temperature,having no direct relationship with internal temperature of the target.Therefore,the designed cryogenic vacuum multilayer insulation film structure has excellent IR radiation control performance.It can reduce the target’s IR radiation intensity so as to reduce the probability of detection by IR detectors. 展开更多
关键词 IR radiation CRYOGENIC vacuum insulation film space target
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Simulations of Heat and Moisture Conditions in a Retrofit Wall Construction with Vacuum Insulation Panels
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作者 Kjartan Gudmundsson Peyman Karami 《Journal of Civil Engineering and Architecture》 2013年第7期781-788,共8页
Vacuum insulation panels provide unprecedented possibilities for renovating the existing building stock in a manner that reduces the thermal losses through the building envelope. This study is focused on the implement... Vacuum insulation panels provide unprecedented possibilities for renovating the existing building stock in a manner that reduces the thermal losses through the building envelope. This study is focused on the implementation of VIPs (vacuum insulation panels) in energy retrofit projects with rendered outer walls. Particular emphasis is put on reducing the thermal bridges due to mechanical fasteners and at the joints of the panels. These are evaluated through a parametric study of the impact of the thermal conductivity of the joints of the panels and the adjacent insulation layer as well as the material of the fasteners. The study is carried out with 3D FEM (finite element method) simulations software. Furthermore, the moisture conditions in the construction are studied. The dynamic moisture behavior of a wall construction is modeled with a two dimensional FEM model. The long term effects of vapor diffusion are investigated in terms of accumulated moisture and the risk of condensation. The results illustrate that vacuum insulation on the outside of the wall construction does not pose a moisture problem to the construction. The simulations are based on a draft of a new technical solution for the refurbishment of a building that is typical for the great Swedish building program of the 1970s. 展开更多
关键词 vacuum insulation panels retrofit project thermal bridges parametric study moisture conditions FEM model.
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Numerical Simulation of the Thermal Conductivity of Thermal Insulation Pipeby Vacuum and High Pr essur e Ar gon Pre- filled
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作者 ZHOU Cheng-long XU Yong-xiang SHENG Hong-zhi 《科技视界》 2014年第34期217-218,共2页
By analyzing the insulation effect of argon-filled tubing and vacuum-insulated tubing before and after hydrogen permeation respectively,a conclusion can be drawn that the insulated tubing filled with high pressure arg... By analyzing the insulation effect of argon-filled tubing and vacuum-insulated tubing before and after hydrogen permeation respectively,a conclusion can be drawn that the insulated tubing filled with high pressure argon is better than the vacuum insulated tubing considering the lifetime and heat insulation effect. 展开更多
关键词 英语学习 学习方法 阅读知识 阅读材料
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Impact of the Insulator on the Electric Field and Generation Characteristics of Vacuum Arc Metal Plasmas 被引量:3
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作者 刘文正 王浩 窦志军 《Plasma Science and Technology》 SCIE EI CAS CSCD 2014年第2期134-141,共8页
The field electron emission plays a vital role in the process of vacuum discharge breakdown. The electric field strength at the cathode tip is significant to the generation char- acteristics of vacuum arc metal plasma... The field electron emission plays a vital role in the process of vacuum discharge breakdown. The electric field strength at the cathode tip is significant to the generation char- acteristics of vacuum arc metal plasmas. To increase the field strength at the cathode tip, a coaxial electrode plasma source was employed with an insulator settled between the electrodes. The math expression of the field strength is derived based on the Gauss theory. The impact of the insulator on the electric field and parameters of plasmas were investigated by MAXWELL 3D simulation software and the Langmuir probe. In addition, a composite insulator was adopted to further strengthen the field strength. A series of experiments were performed to focus on the role of the composite insulator in detail. The experimental and simulation results indicate that, a reasonable layout of the insulator, especially the composite insulator, can effectively increase the field strength at the cathode tip and the plasma density. 展开更多
关键词 vacuum metal plasmas insulATOR electric field generation characteristics
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PROPERTIES AND PERFORMANCE OF VACUUM INSULATED GLAZING
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作者 Neil McSporran 《Journal of Green Building》 2014年第1期60-74,共15页
As energy codes become more stringent, maximising the energy efficiency of the glazing used in buildings becomes of greater importance. Many new solutions have been proposed to reduce heat transfer through windows. On... As energy codes become more stringent, maximising the energy efficiency of the glazing used in buildings becomes of greater importance. Many new solutions have been proposed to reduce heat transfer through windows. One such technology that is currently growing in prominence is vacuum insulated glazing (VIG). VIG has been manufactured successfully in Japan for over 16 years, and although used primarily in Asian markets, its use has been growing in both Europe and North America over the last five years. VIG is different from other insulated glass technologies, providing excellent energy efficiency whilst maintaining an ultra-thin form factor-6.2 mm being the thinnest. A large range of product options are available and will be described in detail in this article, as well as a number of examples of their use. The advantages of using VIG in both retrofit of older buildings and the glazing of new construction will be detailed and new developments in the technology discussed. It will be demonstrated that VIG will be a key technology in the future, giving new options to building designers. 展开更多
关键词 energy efficiency high performance glazing vacuum insulated glazing
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Generation characteristics of a metal ion plasma jet in vacuum discharge 被引量:2
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作者 Jia TIAN Wenzheng LIU +1 位作者 Weisheng CUI Yongjie GAO 《Plasma Science and Technology》 SCIE EI CAS CSCD 2018年第8期35-41,共7页
To improve the performance of a metal ion plasma jet in vacuum discharge, an anode-insulated cone-cylinder electrode with insulating sleeve is proposed in this paper. Discharge characteristics and generation character... To improve the performance of a metal ion plasma jet in vacuum discharge, an anode-insulated cone-cylinder electrode with insulating sleeve is proposed in this paper. Discharge characteristics and generation characteristics of plasma of the electrode are investigated, effects of diameter of insulating sleeve, variety of cathode material and length of the insulating sleeve on characteristics of metal ion plasma jet are discussed. Results indicate that a directional and steady plasma jet is formed by using the novel electrode with insulating sleeve under high vacuum conditions. Moreover, the properties of metal ion plasma jet are improved by using the aluminum cathode and thin and long insulating sleeve. The study provides strong support for research of vacuum metal ion plasma thruster and ion implantation technology. 展开更多
关键词 vacuum-gap discharge metal ion plasma jet generation characteristics anode- insulated cone-cylinder electrode
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CO_2 Capture by Vacuum Swing Adsorption Using F200 and Sorbead WS as Protective Pre-layers
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作者 徐冬 Penny Xiao +3 位作者 李刚 张军 Paul Webley 翟玉春 《Chinese Journal of Chemical Engineering》 SCIE EI CAS CSCD 2012年第5期849-855,共7页
In order to solve the water issues when 13X zeolite was applied to capture CO 2 from wet flue gas by vacuum swing adsorption process, multi-layered adsorption system was considered regarding activated alumina F200 and... In order to solve the water issues when 13X zeolite was applied to capture CO 2 from wet flue gas by vacuum swing adsorption process, multi-layered adsorption system was considered regarding activated alumina F200 and silica gel based Sorbead WS as pre-layer materials. LBET (extended Largmuir-BET) model and extended CMMS (cooperative multimolecular sorption) equation were simulated respectively to describe water loading on F200 and Sorbead WS. The two equations can be well added into our in-house simulator to simulate double-layered CO 2 -VSA (vacuum swing adsorption) process. Results indicated that water can be successfully stopped in pre-layers with a good CO 2 capture performance. 展开更多
关键词 CO2 capture vacuum swing adsorption multi-layered adsorption water vapor
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Vacuum Magnetron Sputtering System
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《China's Foreign Trade》 1994年第4期17-17,共1页
The Vacuum magnetron sputtering system co-developed by the Qinghuangdao Changcheng Plating Technique Inc. and domestic aviation materials research departments, is hightech equipment, specially for making vacuum plated... The Vacuum magnetron sputtering system co-developed by the Qinghuangdao Changcheng Plating Technique Inc. and domestic aviation materials research departments, is hightech equipment, specially for making vacuum plated building glass. Heat reflective glass film layer made by this system compares favorably 展开更多
关键词 aviation MAGNETRON SPUTTERING REFLECTIVE specially insulation vacuum REQUIREMENT
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真空绝热板芯材的研究进展与展望
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作者 赵伟刚 张倩倩 +4 位作者 蓝钰玲 闫雯 周晓剑 范毜仔 杜官本 《化工进展》 EI CAS CSCD 北大核心 2024年第7期3910-3922,共13页
随着我国经济的迅速发展和人们对生活水平的要求越来越高,节能减排对实现“碳达峰”和“碳中和”的目标显得越来越重要。真空绝热板(vacuum insolation panels,VIP)是一种新型的高效保温隔热材料,其中,芯材作为VIP的核心和骨架结构,不... 随着我国经济的迅速发展和人们对生活水平的要求越来越高,节能减排对实现“碳达峰”和“碳中和”的目标显得越来越重要。真空绝热板(vacuum insolation panels,VIP)是一种新型的高效保温隔热材料,其中,芯材作为VIP的核心和骨架结构,不仅承担着支撑作用,而且是板内热量传递的主要通道,对保证VIP的保温性能具有关键作用。基于此,本文首先重点介绍了真空绝热板在绿色建筑和冷链物流领域应用的意义,明确了目前制约真空绝热板领域发展的关键问题;随后综述了真空绝热板芯材的研究现状和进展,比对了不同种类芯材(颗粒类芯材、泡沫类芯材、纤维类芯材、生物质材料类芯材和复合类芯材)在原料来源、保温性能、生产工艺及环境保护方面的优劣,将绿色、可再生的生物质基材料用作真空绝热板芯材进行了对比探讨;最后对真空绝热板芯材未来的研究方向和发展前景进行了总结和展望。本文指出,传统以玻璃纤维、有机泡沫或者气相二氧化硅为芯材的真空绝热板,存在生产成本高、不可再生、难降解、污染环境等问题,所以通过功能化手段获得新型、绿色、低成本、具有良好微观孔隙结构和高热阻的芯材是制约真空绝热板发展的关键。生物质材料具有来源广泛、成本低廉、绿色环保、孔隙结构丰富等优点,是一种极具潜力的VIP芯材原料,也将是真空绝热板芯材的重要研究方向。因此,生物质基芯材真空绝热板未来的发展还需进一步拓宽其原料来源、改善制备方法和工艺、明确老化和使役性能、关注复合芯材的开发,不断提高VIP的性能,扩展其应用领域。 展开更多
关键词 真空绝热板 芯材 保温性能 传热 生物质 热传导 复合材料
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航空机载液氢储罐绝热性能及轻量化研究 被引量:1
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作者 陈红 杨鑫磊 王晓月 《航空科学技术》 2024年第1期36-46,共11页
对航空机载液氢储罐进行绝热结构的绝热性能及轻量化综合研究是提高飞机续航能力的关键解决路径。本文以液氢储量为1450kg的液氢储罐为例,对泡沫/冷屏复合绝热结构(SOFI/VCS)及变密度多层真空夹套绝热结构(VD-MLI真空夹套)进行绝热及轻... 对航空机载液氢储罐进行绝热结构的绝热性能及轻量化综合研究是提高飞机续航能力的关键解决路径。本文以液氢储量为1450kg的液氢储罐为例,对泡沫/冷屏复合绝热结构(SOFI/VCS)及变密度多层真空夹套绝热结构(VD-MLI真空夹套)进行绝热及轻量化对比研究。当两种绝热结构的绝热性能一致,储罐日蒸发率≤4%时,VD-MLI真空夹套绝热结构重量相较于SOFI/VCS复合绝热结构减轻50%,此时适合采用双胆储罐结构;当储罐日蒸发率增大到6%左右时,两种绝热结构的重量相差较小,SOFI/VCS复合绝热结构仅比VD-MLI真空夹套绝热结构重约50kg;而当储罐的日蒸发率>7%时,SOFI/VCS复合绝热结构在轻量化方面更具优势,此时储罐宜采用单壁结构,且日蒸发率越大,单壁储罐轻量化优势越明显。本文通过探究两种绝热结构绝热性能与重量的对应变化规律,为航空机载液氢储罐绝热结构及轻量化的方案设计提供理论依据,同时为液氢的高效长时间存储技术发展奠定一定的基础。 展开更多
关键词 机载液氢存储 SOFI/VCS VD-MLI真空夹套 绝热性能 轻量化
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低温容器用多层绝热材料的绝热性能研究进展 被引量:4
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作者 马晓勇 陈叔平 +6 位作者 金树峰 朱鸣 王洋 熊珍艳 吴慧敏 于洋 王鑫 《材料导报》 EI CSCD 北大核心 2024年第1期238-248,共11页
多层绝热材料被广泛应用于低温容器,其绝热性能是人们重点关注的性能指标。真空良好下,影响其绝热性能的因素包括夹层真空度、材料型号和种类、层数、层密度、等密度或变密度布置以及材料包覆工艺等;真空失效下,夹层气体压力、破空气体... 多层绝热材料被广泛应用于低温容器,其绝热性能是人们重点关注的性能指标。真空良好下,影响其绝热性能的因素包括夹层真空度、材料型号和种类、层数、层密度、等密度或变密度布置以及材料包覆工艺等;真空失效下,夹层气体压力、破空气体种类以及绝热结构参数等会对多层绝热材料的绝热性能产生影响。本文综述了多层绝热材料绝热性能的预测公式。应用Lockheed分析模型对不同边界温度、不同层数下的多层绝热材料的绝热性能进行预测,得到最佳层密度和最小热流密度;在层数一定的条件下,应用Layer-by-layer传热模型对等密度和变密度多层绝热方案的绝热性能进行预测,分析获得了两种实用性较高的多层绝热方案。 展开更多
关键词 多层绝热材料 绝热性能 变密度 低温容器 真空良好 真空失效
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金属罐体对真空灭弧室内部电场分布的影响 被引量:1
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作者 李烁 修士新 +3 位作者 贾申利 罗海洋 田志强 陈军平 《高电压技术》 EI CAS CSCD 北大核心 2024年第2期570-578,共9页
利用真空开断技术以及环保气体绝缘技术开发罐式真空断路器是高压真空断路器的一个重要发展方向。为此,建立了126 kV单断口真空灭弧室以及罐式断路器的电场仿真模型,分别从触头表面电场分布、触头间隙有效击穿面积以及内部电场分布对称... 利用真空开断技术以及环保气体绝缘技术开发罐式真空断路器是高压真空断路器的一个重要发展方向。为此,建立了126 kV单断口真空灭弧室以及罐式断路器的电场仿真模型,分别从触头表面电场分布、触头间隙有效击穿面积以及内部电场分布对称性三个方面,探究了布置在金属罐中的真空灭弧室内部电场的变化。结果表明,金属罐体引起真空灭弧室内部动、静两侧的电场分布不对称,出现高电位侧电场强度增大,而低电位侧电场强度减小的情况。针对这一情况,建立等效电路模型,从电路层面分析。结果表明,对地杂散电容增大引起了主屏蔽罩的电位降低。进一步地,通过将主屏蔽罩电位设置为一系列的固定值,研究了主屏蔽罩电位对于真空灭弧室内部电场分布的影响。当控制主屏蔽罩电位相同时,布置在金属罐中的真空灭弧室与单个真空灭弧室相比,两者内部电场分布基本一致,这为罐式断路器中的真空灭弧室内部电场的优化提供了参考。 展开更多
关键词 高压真空灭弧室 气体绝缘开关设备 电场仿真 等效电路 主屏蔽罩电位
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MV级真空绝缘堆考核实验平台研制及其应用
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作者 周亚伟 呼义翔 +4 位作者 杨实 何德雨 尹佳辉 罗维熙 张信军 《强激光与粒子束》 CAS CSCD 北大核心 2024年第5期105-109,共5页
为解决绝缘堆真空沿面闪络的问题,研制了面向脉冲功率装置应用的真空绝缘堆耐压考核实验平台,建立了绝缘堆考核实验平台等效电路模型,分析了真空绝缘堆环间闪络对绝缘堆电压的影响。基于该平台开展了三种材料绝缘堆的真空沿面耐压考核实... 为解决绝缘堆真空沿面闪络的问题,研制了面向脉冲功率装置应用的真空绝缘堆耐压考核实验平台,建立了绝缘堆考核实验平台等效电路模型,分析了真空绝缘堆环间闪络对绝缘堆电压的影响。基于该平台开展了三种材料绝缘堆的真空沿面耐压考核实验,验证了真空绝缘堆考核实验平台的实用性与可靠性。该工作的开展为脉冲功率装置真空绝缘堆的工程化研制提供参考,同时为新型绝缘材料的应用研究提供考核实验平台。 展开更多
关键词 脉冲功率 真空绝缘堆 电压 沿面闪络
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液氦储罐高真空多层绝热结构影响研究
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作者 郭壮 李长俊 +4 位作者 贾文龙 徐敬 张财功 蒲子银 朱浩宇 《中国安全生产科学技术》 CAS CSCD 北大核心 2024年第2期104-110,共7页
为了明确液氦储罐真空多层绝热结构的最佳层密度,采用Lockheed模型研究热流密度与层密度的关系,确定最佳层密度,探讨绝热层厚度、环境温度、绝热空间真空度对液氦储罐绝热性能的影响。研究结果表明:液氦储罐最佳层密度为41层/cm;绝热层... 为了明确液氦储罐真空多层绝热结构的最佳层密度,采用Lockheed模型研究热流密度与层密度的关系,确定最佳层密度,探讨绝热层厚度、环境温度、绝热空间真空度对液氦储罐绝热性能的影响。研究结果表明:液氦储罐最佳层密度为41层/cm;绝热层真空度减小,热流密度下降,真空度下降到一定值后,热流密度几乎不再下降;热流密度与环境温度、绝热层厚度分别呈正、负相关,当厚度增加到一定值后,热流密度下降速率减小。在实际确定绝热层厚度和真空度时,应兼顾经济性和绝热性能。研究结果可为液氦储罐高真空多层绝热结构的设计提供参考。 展开更多
关键词 液氦储罐 高真空多层绝热 层密度 热流密度 Lockheed模型
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发热保温冒口套在特种焊丝用钢907A模铸中的应用研究 被引量:1
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作者 成建强 张靖 +2 位作者 顾晔 胡显军 王雷 《铸造》 CAS 2024年第1期49-52,共4页
针对特种焊丝用钢907A模铸用发热保温冒口的材质进行改良设计,并对冒口内不同位置钢液的温降进行数值模拟。结果显示,钢温从1580℃降至1522℃需要约41 min。将该材质的发热保温冒口套用于9炉907A钢的真空熔铸试验,浇注温度1640~1650℃,... 针对特种焊丝用钢907A模铸用发热保温冒口的材质进行改良设计,并对冒口内不同位置钢液的温降进行数值模拟。结果显示,钢温从1580℃降至1522℃需要约41 min。将该材质的发热保温冒口套用于9炉907A钢的真空熔铸试验,浇注温度1640~1650℃,浇注速度375~400 kg/min,切除冒口后,铸锭锭身无二次缩孔,有效提高铸锭成材率;将铸锭冒口成分与浇注前钢液成分对比,未发现冒口套在使用过程中,会对合金成分和气体含量产生不利影响。 展开更多
关键词 发热保温冒口 907A钢 真空熔铸 二次缩孔
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真空绝热板内保温板缝漏热的测试与解决措施
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作者 陈燕辉 王万江 +2 位作者 宋克昌 唐志强 关亚楠 《城市建筑》 2024年第18期167-172,共6页
真空绝热板是一种具有低导热系数和高防火性能的保温材料,因此在严寒和寒冷地区受到越来越多的关注。由于真空绝热板的尺寸一般是固定的,其用于建筑墙体需要拼接且容易产生热桥效应,通过实验研究几组真空绝热板发现板缝处的传热系数相... 真空绝热板是一种具有低导热系数和高防火性能的保温材料,因此在严寒和寒冷地区受到越来越多的关注。由于真空绝热板的尺寸一般是固定的,其用于建筑墙体需要拼接且容易产生热桥效应,通过实验研究几组真空绝热板发现板缝处的传热系数相较于板中心较高。当采用双真空绝热板与单层真空绝热板+聚苯乙烯泡沫板的保温墙体时,板缝处的传热系数明显降低且两种组合方式都可以满足75%标准的墙体节能要求,同时,文章还提出了减小真空绝热板产生热桥效应的外墙构造做法。 展开更多
关键词 内保温 真空绝热板 传热系数 构造
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采用真空绝热板的冷热双效保温箱设计
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作者 于凌爽 张婷婷 +2 位作者 阚安康 陈照峰 张亮亮 《制冷与空调》 2024年第2期6-10,21,共6页
设计一种真空绝热板(VIPs)与半导体制冷技术相结合的保温箱,为了对比内保温(半导体制冷装置-导温板-VIPs)和外保温(VIPs-半导体制冷装置-导温板)2种设计方案的保温箱内部温度分布均匀性,建立三维模型进行模拟,在同样的条件下进行试验,... 设计一种真空绝热板(VIPs)与半导体制冷技术相结合的保温箱,为了对比内保温(半导体制冷装置-导温板-VIPs)和外保温(VIPs-半导体制冷装置-导温板)2种设计方案的保温箱内部温度分布均匀性,建立三维模型进行模拟,在同样的条件下进行试验,并测试2~8℃的保温时长。结果表明:内保温设计方案保温箱内部温度分布均匀;当半导体制冷装置未启动时,外保温设计方案保温箱内壁面温度差异较大;内保温设计方案优于外保温设计方案,采用内保温设计方案的保温箱内2~8℃的最长保温时间为35h。 展开更多
关键词 冷链运输 保温箱 真空绝热板 半导体制冷
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大口径低温真空绝热管道漏热分析
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作者 李玲 宋舟航 《山东化工》 CAS 2024年第3期220-223,共4页
真空多层管道漏热由辐射传热、对流传热以及导热组成,导热主要考虑热桥及支撑件。本文对航天领域使用较多的低温真空管道进行漏热分析,以DN400大口径真空多层绝热管道为例进行说明,分别对内管和外管的管道强度以及三种传热方式进行计算... 真空多层管道漏热由辐射传热、对流传热以及导热组成,导热主要考虑热桥及支撑件。本文对航天领域使用较多的低温真空管道进行漏热分析,以DN400大口径真空多层绝热管道为例进行说明,分别对内管和外管的管道强度以及三种传热方式进行计算,求出总漏热量。并利用ANSYS软件对漏热量进行分析校核计算。经计算及ANSYS模拟分析漏热量均满足低温管道漏热指标。 展开更多
关键词 低温 真空绝热 漏热分析
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A Method to Measure Thermal Conductivity of Vacuum Insulation Panel Using Enhanced Extreme Learning Machine Model 被引量:1
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作者 XIA Rongfei CHEN Yifei FENG Yongjian 《Journal of Thermal Science》 SCIE EI CAS CSCD 2020年第3期623-631,共9页
Thermal conductivity is an important quantity which represents the characteristic of Vacuum Insulation Panel’s(VIP’s)performance.Precise measurement of thermal conductivity provides better quality assurance for the ... Thermal conductivity is an important quantity which represents the characteristic of Vacuum Insulation Panel’s(VIP’s)performance.Precise measurement of thermal conductivity provides better quality assurance for the users.In this paper,we presented a novel embedded sensor method to measure the thermal conductivity of VIP.The proposed method evaluated the quality of VIP primarily based on the relationship between thermal conductivity and frequency characteristic of the output signal.In addition,we presented a new mean ridge regression extreme leaning machine(M-RRELM)model via improving extreme learning machine(ELM)by ridge regression to modify the relationship between the thermal conductivity and the output signal frequency characteristic.Experiments have shown that the M-RRELM model has higher precision compared with the traditional ELM.The proposed method achieved good performance and was faster than the well known methods. 展开更多
关键词 vacuum insulation panel thermal conductivity extreme learning machine ridge regression
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