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热管式流化床水泥冷却器模型的试验研究
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作者 程群 《水泥》 CAS 北大核心 2009年第5期13-17,共5页
通过将热管技术和流态化技术相结合,提出了冷却高温水泥的新型模型,在理论计算的基础上进行了实物模拟试验,试验结果表明:供气量变化对水泥的冷却效果影响较小,热管束的布置形式对水泥的冷却效果影响较大。当热管束采用倾斜布置且水泥... 通过将热管技术和流态化技术相结合,提出了冷却高温水泥的新型模型,在理论计算的基础上进行了实物模拟试验,试验结果表明:供气量变化对水泥的冷却效果影响较小,热管束的布置形式对水泥的冷却效果影响较大。当热管束采用倾斜布置且水泥进口温度平均为112.6℃时,水泥平均出口温度可降至72.2℃。 展开更多
关键词 冷却器模型 水泥冷却 热管 流态化
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固气热交换与固液热交换的水泥冷却方法之比较
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作者 郑用琦 黎珀翔 《四川水泥》 2014年第2期119-121,共3页
该文通过介绍一种固气热交换的水泥直接冷却方法,与目前常见的两种固液间接与直接的水泥冷却方式进行了详尽的分析对比,从而为企业在选择水泥冷却方式上推出了一种全新的、高性价比冷却方式方法,它适于在所有水泥企业中推广应用。
关键词 水泥冷却 固液 固气 热交换
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多管螺旋组合式水泥冷却器的研究与应用 被引量:1
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作者 宋传杰 张晓阳 +2 位作者 林科举 周军 何正凯 《中国水泥》 CAS 2019年第8期106-108,共3页
多管螺旋组合式水泥冷却器是为出磨及入库水泥降温的一种新设备,其工作原理与现有的螺旋提升式水泥冷却器类似,但体积小、能耗低,冷却水采用内循环方式,工作环境更友好,加工运输和操作控制更方便。文中对其开发背景、工作原理和生产应... 多管螺旋组合式水泥冷却器是为出磨及入库水泥降温的一种新设备,其工作原理与现有的螺旋提升式水泥冷却器类似,但体积小、能耗低,冷却水采用内循环方式,工作环境更友好,加工运输和操作控制更方便。文中对其开发背景、工作原理和生产应用进行简要论述。 展开更多
关键词 多管螺旋组合式 水泥冷却 水泥降温
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我厂水泥冷却的经验
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作者 姚春生 《水泥》 CAS 1998年第11期11-12,共2页
水泥冷却是水泥粉磨及仓储包装的需要。第一次冷却是粉磨过程的冷却,以确保石膏不因超温而过分脱水;第二次冷却是出磨水泥的冷却,以满足仓储包装的要求,减少库凝及包装纸袋的破损。我厂的水泥磨为FL史密斯公司的Φ36m×... 水泥冷却是水泥粉磨及仓储包装的需要。第一次冷却是粉磨过程的冷却,以确保石膏不因超温而过分脱水;第二次冷却是出磨水泥的冷却,以满足仓储包装的要求,减少库凝及包装纸袋的破损。我厂的水泥磨为FL史密斯公司的Φ36m×12m康必丹磨,磨内设有喷水系统一套... 展开更多
关键词 水泥冷却 粉磨 喷水 温度控制 冷却水套 选粉机
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水泥冷却器
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《中国建材》 北大核心 2005年第10期85-85,共1页
本实用新型技术公开了一种水泥冷却器,主要解决磨机或选粉机排出的高温水泥不能在短期内降温的问题,其目的是提供了一种通过间接冷却的方式,既保证高温水泥在短期内迅速冷却,同时又可保证水泥质量的冷却器。其技术方案为:
关键词 水泥冷却 技术性能 水泥质量 旋转螺旋输送器
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全新水冷——热管式流化床水泥冷却器
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作者 刘永胜 《水泥科技》 2006年第4期I0001-I0002,共2页
最近,合肥水泥研究设计院设备及金属材料工程公司提出了热管式流化床冷却器项目,被立为安徽省2006年科技攻关项目,正在进行研制过程中。
关键词 热管式流化床水泥冷却 合肥水泥研究设计院 科技攻关项目 技术创新
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单筒冷却机的优化设计
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作者 常捷 《四川建材》 1989年第3期41-46,共6页
关键词 单筒冷却 冷却 水泥冷却设备
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一种磨料磨损试验装置及其性能测试与误差分析
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作者 樊静波 刘晶 《宁夏工程技术》 CAS 2003年第1期53-54,57,共3页
针对水泥蓖式冷却机低温段蓖板在实际服役过程中的运动形式和应力特点,以销-盘式中应力固定磨料磨损为模型,设计制作了一种磨料磨损试验装置,并在不同磨料硬度、粒度及载荷条件下对该装置进行了性能测试和试验误差分析.测试分析表明,该... 针对水泥蓖式冷却机低温段蓖板在实际服役过程中的运动形式和应力特点,以销-盘式中应力固定磨料磨损为模型,设计制作了一种磨料磨损试验装置,并在不同磨料硬度、粒度及载荷条件下对该装置进行了性能测试和试验误差分析.测试分析表明,该装置操作简便,运行稳定,所取得的试验数据的最大相对误差小于10%,达到了同类型试验机的试验精度标准要求,能够满足在新合金设计过程中筛选成分及优化工艺的要求.此外,该装置的设计思想对类似非常规性能试验机的设计具有积极的借鉴意义. 展开更多
关键词 磨料 磨损试验 误差分析 性能测试 试验装置 耐磨篦板材料 水泥蓖式冷却
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Springtime Monitoring of Passive Cool Roofs in Subtropical Climate
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作者 Carla Femanda Barbosa Teixeira Lucila Chebel Labaki 《Journal of Civil Engineering and Architecture》 2014年第11期1364-1370,共7页
Passive strategies for acclimatization of buildings have been studied by several authors in many countries, especially the evaporative and radiant cooling techniques. Fiber cement tiles are very common in popular cons... Passive strategies for acclimatization of buildings have been studied by several authors in many countries, especially the evaporative and radiant cooling techniques. Fiber cement tiles are very common in popular constructions due to their low cost. However, they have over twice of the value thermal transmittance indicated to this bioclimatic zone according to Brazilian guidelines. The objective is to present an alternative to reduce high temperatures on fiber cement tiles. In this paper, the monitoring of passive cooling of roofing during the spring season in a city with subtropical climate is described. Single and combined reflective and evaporative cooling systems were studied in different environmental conditions. Internal surface temperatures of tiles were monitored together with weather variables. Results show a decrease of about 6 ℃, 9 ℃, 10 ℃ and 11 ℃ as compared to the original tiles according to environment conditions and the combined passive cooling techniques. These results allow for the conclusion that the use of passive cooling techniques opens up new possibilities to attenuate the internal surface temperatures of tiles and to consequently decrease the roofing solar heat gain into buildings, thus, providing less air cooling energy consumption. 展开更多
关键词 Passive cooling roofing white coating water spraying subtropical climate.
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Applicability of cement-based grout for ground heat exchanger considering heating-cooling cycles 被引量:5
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作者 Moonseo PARK SunhongMIN +2 位作者 Jeehee LIM Jong Min CHOI Hangseok CHOI 《Science China(Technological Sciences)》 SCIE EI CAS 2011年第7期1661-1667,共7页
The applicability of cement grout (or cement-based grout) has been considered as an alternative to bentonite grout commonly used to backfill closed-loop vertical ground heat exchangers. In a geothermal heat pump sys... The applicability of cement grout (or cement-based grout) has been considered as an alternative to bentonite grout commonly used to backfill closed-loop vertical ground heat exchangers. In a geothermal heat pump system, repeated heating-cooling cycles may cause adverse effects on the integrity of cement grout in the ground heat exchanger. To account for the temperature cycling effect, the strength degradation of cement grout due to temperature cycling has been examined by measuring the unconfined compression strength of cured specimens in a humidity-temperature controlling chamber with applying temperature cycles between -5℃ and 50℃. There is a tendency that the unconfined compression strength decreases with an increase in the number of temperature cycles. On the other hand, an equivalent hydraulic conductivity of a pipe-embedded cement grout specimen was evaluated by carrying out a modified flexible wall permeameter test equipped with a water circulating system to control temperature inside the pipe section. The applied operating temperature range was from 5 to 35℃. After three cycles of heating-cooling circulation, the equivalent hydraulic conductivity becomes asymptotic to a constant value, which implies there is no severe detachment of the pipe from the cement grout. 展开更多
关键词 cement grout bentonite grout thermal conductivity WORKABILITY equivalent permeability coefficient
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Numerical simulation of heat transfer process in cement grate cooler based on dynamic mesh technique 被引量:6
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作者 SHAO Wei CUI Zheng +1 位作者 WANG NaiHua CHENG Lin 《Science China(Technological Sciences)》 SCIE EI CAS CSCD 2016年第7期1065-1070,共6页
A grate cooler is key equipment in quenching clinker and recovering heat in cement production. A two-dimensional numerical model based on a 5000 t/d cement plant is proposed to for a study on the gas-solid coupled hea... A grate cooler is key equipment in quenching clinker and recovering heat in cement production. A two-dimensional numerical model based on a 5000 t/d cement plant is proposed to for a study on the gas-solid coupled heat transfer process between the cooling air and clinker in a grate cooler. In this study, we use the Fluent dynamic mesh technique and porous media model through which the transient temperature distribution with the clinker motion process and steady temperature and pressure distribution are obtained. We validate the numerical model with the operating data of the cooling air outlet temperature. Then, we discuss the amount of mid-temperature air outlet and average diameter of clinker particles, which affect the heat effective utilization and cooling air pressure drop in clinker layer. We found that after adding one more mid-temperature air outlet, the average temperature of the air flowing into the heat recovery boiler increases by 29.04℃ and the ratio of heat effective utilization increases by 5.3%. This means heat recovery is more effective on adding one more mid-temperature air outlet. Further, the smaller the clinker particles, the more is the pressure drop in clinker layer; thus more power consumption is needed by the cooling fan. 展开更多
关键词 grate cooler gas-solid heat transfer dynamic mesh numerical simulation
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