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Feasibility Analysis on the Integrated Application of Solar Energy, Biogas, Coal-fired Boiler and Radiant Floor Heating for Rural Residence 被引量:3
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作者 JIN Junjie TANG Zhonghua +2 位作者 GAO Lifu TANG Li ZHANG Xiaodong 《Journal of Landscape Research》 2013年第4期12-14,共3页
The feasibility of adopting a balanced energy mix mode (domestic solar energy, biogas, coal-fired boiler and radiant floor heating) was proposed. Taking a typical rural residence in Zhengzhou City for example, the stu... The feasibility of adopting a balanced energy mix mode (domestic solar energy, biogas, coal-fired boiler and radiant floor heating) was proposed. Taking a typical rural residence in Zhengzhou City for example, the study through theoretical analysis and calculation showed that such a balanced energy mix is an economic way and efficient in saving energy and reducing air pollution, and elaborated the theoretical feasibility of popularizing such a heat supply mode in rural areas. 展开更多
关键词 Solar energy COLLECTOR BIOGAS Coal-fired boiler Radiant FLOOR heating
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Optimization Study of Active-Passive Heating System Parameters in Village Houses in the Southern Xinjiang Province
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作者 Xiaodan Wu Jie Li +1 位作者 Yongbin Cai Sihui Huang 《Energy Engineering》 EI 2024年第7期1963-1990,共28页
Aiming at the problems of large energy consumption and serious pollution of winter heating existing in the rural buildings in Southern Xinjiang,a combined active-passive heating system was proposed,and the simulation ... Aiming at the problems of large energy consumption and serious pollution of winter heating existing in the rural buildings in Southern Xinjiang,a combined active-passive heating system was proposed,and the simulation software was used to optimize the parameters of the system,according to the parameters obtained from the optimization,a test platform was built and winter heating test was carried out.The simulation results showed that the thickness of the air layer of 75 mm,the total area of the vent holes of 0.24 m^(2),and the thickness of the insulation layer of 120 mm were the optimal construction for the passive part;solar collector area of 28 m^(2),hot water storage tank volume of 1.4 m^(3),mass flow rate of 800 kg/h on the collector side,mass flow rate of 400 kg/h on the heat exchanger side,and output power of auxiliary heat source of 5∼9 kWwere the optimal constructions for active heating system.Test results showed that during the heating period,the system could provide sufficient heat to the room under different heating modes,and the indoor temperature reached over 18°C,which met the heating demand.The economic and environmental benefits of the system were analyzed,and the economic benefits of the systemwere better than coal-fired heating,and the CO_(2) emissionswere reduced by 3,292.25 kg compared with coalfiredheating.The results of the study showed that the combinedactive-passiveheating systemcouldeffectively solve the heating problems existing in rural buildings in Southern Xinjiang,and it also laid the theoretical foundation for the popularization of the combined heating systems. 展开更多
关键词 Trombe wall biomass boilers active-passive combined heating systems parameter optimization villages and towns
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On-Line Life Monitoring Technique for Tube Bundles of Boiler High-Temperature Heating Surface
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作者 YangDong WangZhongyuan 《Electricity》 2005年第1期12-16,共5页
High-temperature heating surface such as superheater and reheater of large-sized utility boiler all experiences a relatively severe working conditions. The failure of boiler tubes will directly impact the safe and eco... High-temperature heating surface such as superheater and reheater of large-sized utility boiler all experiences a relatively severe working conditions. The failure of boiler tubes will directly impact the safe and economic operation of boiler. An on-line life monitoring model of high-temperature heating surface was set up according to the well-known L-M formula of the creep damages. The tube wall metal temperature and working stress was measured by on-line monitoring, and with this model, the real-time calculation of the life expenditure of the heating surface tube bundles were realized. Based on the technique the on-line life monitoring and management system of high-temperature heating surface was developed for a 300 MW utility boiler. An effective device was thus suggested for the implementation of the safe operation and the condition-based maintenance of utility boilers. 展开更多
关键词 utility boiler high-temperature heating surface tube wall metal temperature CREEP life assessment on-line monitoring
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A simulation Study on the System Combined Solar Energy with Biogas Boiler for Floor Radiant Heating and Fuel 被引量:1
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作者 LI Na LI Cheng-xiang 《科技视界》 2015年第15期169-170,268,共3页
A mathematical model was built for simulating an innovative design system combined solar energy with biogas boiler for floor radiant heating and fuel. Effects of the ambient air temperature on the performance of the s... A mathematical model was built for simulating an innovative design system combined solar energy with biogas boiler for floor radiant heating and fuel. Effects of the ambient air temperature on the performance of the system had been examined. And the results also support theoretical feasibility of the system. 展开更多
关键词 太阳能 锅炉 数学模型 温度
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Heating and Cooling Hybrid System with Gas Mixture Sourced Heat Pump and Heating Boiler
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作者 S. Egnatosyan Z. Melikyan 《Journal of Energy and Power Engineering》 2011年第11期1021-1029,共9页
Preliminary investigation shows that air sourced type heat pumps by energy efficiency are competitive with gas boilers having 93% of coefficient of performance (COP) if heat pumps are used in climatic zones, having ... Preliminary investigation shows that air sourced type heat pumps by energy efficiency are competitive with gas boilers having 93% of coefficient of performance (COP) if heat pumps are used in climatic zones, having outside air temperature higher than (-3 ℃ to -5 ℃). But, in such conditions the heat pump's evaporator is covered by ice crust, which cuts off the flow of outside air-heat source through the evaporator of heat pump. For avoiding stating problems it is recommended to use as heat source a mixture of waste warm gases. In this article a high efficiency heating-cooling system is developed, consisting of warm gases mixture sourced heat pump, heating boiler operating simultaneously with heat pump and solar air heater. The heating demand of the served house is shared between boiler and heat pump. Instead of outside air the warm gases mixture enters into evaporator of heat pump. A new construction of heat exchanger was developed. The article presents the structure and principle of operation, as well as the method for optimization and design of suggested system. Analysis proved high energy efficiency and cost effectiveness of the new system. 展开更多
关键词 GAS MIXTURE heat pump boiler hybrid system heating cooling.
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Equation of Radiation Heat Transfer in Multiple Combustion Boiler Furnace of Fluidized Bed and Pulverized Coal Firing
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作者 赵广播 朱群益 +1 位作者 高志宏 秦裕琨 《Journal of Harbin Institute of Technology(New Series)》 EI CAS 1998年第2期23-25,共3页
The equation for radiation heat transfer in a multiple combustion boiler furnace with nuidized bed and pulverized coal firing is derived from direct calculation of radiation heat transfer.
关键词 Pulverized COAL boiler fluidized BED boiler radiation heat transfer
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Power Generation Systems Using Continuous Blowdown Waste Heat from Drum Boilers Driving an Organic Rankine Cycle 被引量:2
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作者 LIU Qiang DUAN Yuanyuan WAN Xucai 《中国电机工程学报》 EI CSCD 北大核心 2013年第35期I0001-I0014,共14页
提出了一种利用汽包锅炉排污系统余热的有机朗肯循环发电系统,有机工质回收扩容器疏水的热量,并通过气轮机发电。建立了系统的热力性能分析模型,并对R227ea、RC318、R236ea、R245fa、R245ca、R123和R113等7种工质的热力性能进行了优化... 提出了一种利用汽包锅炉排污系统余热的有机朗肯循环发电系统,有机工质回收扩容器疏水的热量,并通过气轮机发电。建立了系统的热力性能分析模型,并对R227ea、RC318、R236ea、R245fa、R245ca、R123和R113等7种工质的热力性能进行了优化。结果表明,临界温度高的工质,其o2循环的最佳主气温度(蒸发温度)反而低;亚临界循环采用干流体时,过热不利于余热的利用;超临界循环可以改善热源与工质间的温度匹配,有利于增大系统输出功,但是其运行压力高、大比热区的传热恶化等问题是实际运行和设计需要考虑的因素;R236ea的热力性能优于其余6种工质。 展开更多
关键词 朗肯循环 余热驱动 连续排污 发电系统 锅炉 燃煤电厂 标准煤耗率 发电量
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The Application of Radiation Shields for Thermal Control of Superheater Tubes in Boiler
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作者 Shahram Falahatkar Tayeb Pour-Reza Habib Karimi 《Energy and Power Engineering》 2012年第2期77-84,共8页
Superheater tubes temperature control is a necessity for long lifetime, high efficiency and high load following capability in boiler. This study reports a new approach for the control strategy design of boilers with s... Superheater tubes temperature control is a necessity for long lifetime, high efficiency and high load following capability in boiler. This study reports a new approach for the control strategy design of boilers with special shields. The presented control strategy is developed based on radiation thermal shields with low emissivity coefficient and high reflectivity or scattering coefficient. In order to simulate the combustion event in boiler and heat transfer to superheater tubes, an effective set of computational fluid dynamic (CFD) codes is used. Results indicate a successful identification of over- heated zones on platen superheater tubes and effect of radiation shields for solving this problem. 展开更多
关键词 Platen SUPERheatER heat TRANSFER COMBUSTION RADIATION Thermal SHIELDS boiler CFD
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WHR (Waste Heat Technology) Method in Tri-generation Model 被引量:2
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作者 Imrich Discantiny 《Journal of Geological Resource and Engineering》 2015年第1期37-41,共5页
This paper is focused on description of cool production in using WHR (Waste Heat Technology) Technology-a new method of centralized production of heat by using the waste heat from generated exhaust gas, which has be... This paper is focused on description of cool production in using WHR (Waste Heat Technology) Technology-a new method of centralized production of heat by using the waste heat from generated exhaust gas, which has been in 2009 developed and operated by companies HELORO s.r.o, and COMTHERM s.r.o. 展开更多
关键词 NG (natural gas) GB (gas boiler CHP (combined heat power) CHPC (combined heat power cool) CGU(co-generation unit) ABSU (absorption unit) TC (thermal condenser) HE1 HE2 heat exchanger).
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An Efficient Method for Heat Recovery Process and Temperature Optimization
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作者 Basim Kareem Naser Mohammed Dauwed +3 位作者 Ahmed Alkhayyat Mustafa Musa Jaber Shahad Alyousif Mohammed Hasan Ali 《Computers, Materials & Continua》 SCIE EI 2023年第4期1017-1031,共15页
Flue gas heat loss accounts for a significant component of theoverall heat loss for coal-fired boilers in power plants. The flue gas absorbsmore heat as the exhaust gas temperature rises, which reduces boiler efficien... Flue gas heat loss accounts for a significant component of theoverall heat loss for coal-fired boilers in power plants. The flue gas absorbsmore heat as the exhaust gas temperature rises, which reduces boiler efficiencyand raises coal consumption. Additionally, if the exhaust gas temperatureis too high, a lot of water must be used to cool the flue gas for the wetflue gas desulfurization system to function well, which has an impact onthe power plant’s ability to operate profitably. It is consequently vital totake steps to lower exhaust gas temperatures in order to increase boilerefficiency and decrease the amount of coal and water used. Desulfurizationperformance may be enhanced and water use can be decreased by reasonableflue gas characteristics at the entry. This study analyzed the unit’s energyconsumption, investment, and coal savings while proposing four couplingstrategies for regulating flue gas temperature and waste heat recovery. Agraded flue gas conditioning and waste heat recovery plan was presentedunder the condition of ensuring high desulfurization efficiency, along withthe notion of minimizing energy loss owing to energy inflow temperaturedifference. Numerical results show that the proposed methods improved thesystem performance and reduced the water consumption and regulated theboiler temperature. 展开更多
关键词 heat exchange system boiler energy optimization temperature control
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Laws of Heat Radiation from Surfaces and Gas Volumes
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作者 Anatoliy Nikolaevich Makarov 《World Journal of Engineering and Technology》 2015年第4期260-270,共11页
It is proven that the law of radiation from solid bodies, Stefan-Boltzmann law shall not be used to calculate heat radiation from gas volumes which are formed in fuel flaring. The determining influence on heat fluxes ... It is proven that the law of radiation from solid bodies, Stefan-Boltzmann law shall not be used to calculate heat radiation from gas volumes which are formed in fuel flaring. The determining influence on heat fluxes density of the torch to the heating surfaces has not only a temperature, but power, dimensions, geometrical position of radiative gas volumes. The laws of radiation from gas volumes disclosed in 2001 and the method for calculating heating fluxes from gas volumes, developed on its basis, which takes into account the radiation from full set of particles in gas volume are stated. The torch model in the form of radiative gas volume is used to calculate heat transfer in torch heating furnaces, steam boiler boxes, turbogas unit combustors. The disclosure has enabled us to create new furnaces, fire boxes, combustion chambers, enhance unit performance, and decrease fuel rate, pollutant emissions. 展开更多
关键词 DISCLOSURE heat Radiation TORCH Fire Box FURNACE Combustion CHAMBER Steam boiler Turbogas Unit
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Transforming Waste Heat into“Renewable Heat”
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作者 Imrich Discantiny 《Journal of Geological Resource and Engineering》 2021年第2期38-42,共5页
Introduction:The current worldwide electric power&heat&cool production has a negative impact on the environment by emissions and enormous leaks of low-potential waste heat.Transformation of unused industrial l... Introduction:The current worldwide electric power&heat&cool production has a negative impact on the environment by emissions and enormous leaks of low-potential waste heat.Transformation of unused industrial low power heat into“renewable heat”useful to enhance the efficiency of the system is essential and actual innovation in the field of worldwide environmental protection.By introducing and defining the terminology of low-potential,“renewable”,“green heat”has created a new,parallel category of research in the energy sector.Traditional co-generation systems produce heat for space heating and hot water and generate electricity.Moving to tri-generation allows growing demand for air conditioning for homes,offices and commercial spaces such as server rooms and switchboards to be met simultaneously or on a seasonal basis.Tri-generation,or combined cooling,heat and power,is the process by which some of the heat produced by a co-generation plant is used to generate chilled water for air conditioning or refrigeration.Usually an absorption chiller is linked to the plant to provide this functionality.The technical solution is related to the new efficient manner and system of simultaneous generation of heat/cold from multiple heat sources,which has not yet been known,but in practice required.New system also enables advantageous utilization of solar power in supporting of the cooling output.The innovative system can be operated also within the existing central heating distribution systems. 展开更多
关键词 Natural gas(NG) gas boiler(GB) combined heat&power(CHP) combined heat&power&cool(CHPC) co-generation unit(CGU) absorption cooling unit(AU) renewable heat sources(RES) 3-generation technology(3GT) renewable heat(RH) waste heat recovery technology(WHRT).
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电厂锅炉实验虚拟仿真系统建设与应用 被引量:1
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作者 张伟 张紫涵 +3 位作者 李斌 徐博 王小亮 许加达 《实验室研究与探索》 CAS 北大核心 2024年第4期69-73,98,共6页
为开展能动专业核心课程“锅炉原理”的实验教学,校企合作开发了电厂锅炉实验虚拟仿真系统。基于两相流动与辐射对流传热原理构建的仿真系统,由风烟和汽水两大模型构成,严格遵守质量、能量、动量守恒方程。变负荷虚拟实验显示,随锅炉负... 为开展能动专业核心课程“锅炉原理”的实验教学,校企合作开发了电厂锅炉实验虚拟仿真系统。基于两相流动与辐射对流传热原理构建的仿真系统,由风烟和汽水两大模型构成,严格遵守质量、能量、动量守恒方程。变负荷虚拟实验显示,随锅炉负荷增加,热效率降低、燃料耗量增加。根据辐射传热原理,结合火焰平均温度计算发现:只有炉膛出口烟温增加,才能保证炉膛传热负荷增加,继而抬升排烟温度,导致排烟热损失变大、锅炉热效率降低。锅炉原理实验虚拟仿真,可训练学生运用锅炉本体热力计算原理分析问题的思维,是落实创新能力培养的重要举措。 展开更多
关键词 虚拟仿真 实验系统 电厂锅炉 燃烧传热 实践能力
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燃煤锅炉改燃兰炭燃烧工艺及效益分析 被引量:1
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作者 何海军 《现代化工》 CAS CSCD 北大核心 2024年第7期221-224,共4页
兰炭因热值高、硫含量低的特点被广泛应用于散煤替代,燃煤锅炉改燃兰炭是实现资源合理利用、降低污染物排放和改善企业经济效益的有效途径。以河北某循环流化床锅炉改燃兰炭工程为例,燃烧系统采用掺烧灰渣的方法,解决改燃后机械未完全... 兰炭因热值高、硫含量低的特点被广泛应用于散煤替代,燃煤锅炉改燃兰炭是实现资源合理利用、降低污染物排放和改善企业经济效益的有效途径。以河北某循环流化床锅炉改燃兰炭工程为例,燃烧系统采用掺烧灰渣的方法,解决改燃后机械未完全燃烧导致损失大和物料循环不稳定问题,确定了兰炭和灰渣的最佳掺混比为9∶1;配风系统采用控制总量并降低一次风率的方法,解决兰炭着火困难的问题,确定了最佳一次风比例为55%;换热系统采用增加锅炉尾部受热面的方法,解决因燃料热值提升较大产生的蒸汽超温和锅炉效率下降问题。改燃扩容后锅炉烟尘、SO2和NOx排放分别比原锅炉降低了73%、94%和55%,以原锅炉35 t/h的额定功率运行,每小时节约燃料成本5.51%,产吨蒸汽所需燃料成本降低6.47元。 展开更多
关键词 循环流化床锅炉 兰炭 燃烧 配风 换热
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水蒸气载热式锅炉烟气余热回收系统的节能量测量方法
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作者 李天成 张茂勇 +4 位作者 李先庭 石文星 卢剑勇 倪文岗 尹全亮 《暖通空调》 2024年第8期14-20,共7页
烟气余热回收可有效降低锅炉的排烟热损失,减少燃料耗量和温室气体排放。近年来,作为一种高效的全热热回收方式,水蒸气载热式锅炉烟气余热回收系统已在实际工程中得到一定的应用,但由于其流程及能量转化关系较为复杂,人们对该系统节能... 烟气余热回收可有效降低锅炉的排烟热损失,减少燃料耗量和温室气体排放。近年来,作为一种高效的全热热回收方式,水蒸气载热式锅炉烟气余热回收系统已在实际工程中得到一定的应用,但由于其流程及能量转化关系较为复杂,人们对该系统节能量如何判定存在争议。本文在分析烟气余热回收系统及其各环节的能量平衡与转化关系基础上,提出了采用温度传感器、热计量表等常规仪表间接测量整个余热回收系统及其锅炉助燃风预热节能量的方法,并以山东临邑恒利热电厂为例给出了采用水蒸气载热式锅炉烟气余热回收前、后的测量结果。数据分析表明,对于蒸发量为176.90 t/h的锅炉,整个烟气余热回收系统的总节能量为10.86 MW,占锅炉产热量的8.46%,其中通过锅炉的进风预热加湿使锅炉加热助燃风节能1.73 MW,占余热总回收量的16%。该测量方法为水蒸气载热式锅炉烟气余热回收系统规模化应用提供了节能量在线实时监测的技术支撑。 展开更多
关键词 锅炉 烟气余热回收 全热热回收 进风加湿 间接测量法
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新疆克州地区学校建筑供暖系统设计研究
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作者 秦振春 魏霖 +2 位作者 顾锡莲 袁小清 吕禧星 《工程建设与设计》 2024年第1期74-76,共3页
研究了新疆克州地区某中学供暖系统设计的思路和流程,包括热源的选择、供暖系统设计,换热站设计等,深入探讨和分析了调试过程中出现的问题,对设计和施工阶段需要关注的设计调研、施工规范等关键环节进行了总结与反思,并提出了解决方案。
关键词 区域锅炉房 热负荷 干式地暖 湿式地暖
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GB/T 24747-2023《有机热载体安全技术条件》国家标准解读
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作者 石顺友 赵艳丽 《润滑油》 CAS 2024年第4期38-44,共7页
作为有机热载体炉的传热介质,有机热载体的质量对锅炉的安全运行至关重要。GB/T 24747-2023《有机热载体安全技术条件》于2023年5月23日发布和实施。该国家标准对有机热载体的应用、质量监测和问题处置等多方面进行了详细规定,对确保有... 作为有机热载体炉的传热介质,有机热载体的质量对锅炉的安全运行至关重要。GB/T 24747-2023《有机热载体安全技术条件》于2023年5月23日发布和实施。该国家标准对有机热载体的应用、质量监测和问题处置等多方面进行了详细规定,对确保有机热载体炉的安全运行,防止事故发生和人员伤亡,促进能源高效利用和环境保护具有重大意义。文章对该国家标准进行了解读,以供读者参考。 展开更多
关键词 有机热载体 锅炉 技术 标准
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超大型侧吹熔池熔炼余热锅炉烟气流动及烟尘黏附研究
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作者 李东波 胡杰 +4 位作者 邹贵阳 杨世亮 杨贵 张敏 胡建杭 《有色金属(冶炼部分)》 CAS 北大核心 2024年第8期11-19,共9页
富氧侧吹熔池熔炼广泛应用于铜、铅、锌等有色金属的提取,其后端的余热锅炉承载着余热回收利用、沉降烟尘的重要作用。但在实际生产过程中,炉内烟气流场混乱,烟尘易黏附积灰,炉壁与部件磨损严重等,导致了余热回收效率降低,低负荷运行甚... 富氧侧吹熔池熔炼广泛应用于铜、铅、锌等有色金属的提取,其后端的余热锅炉承载着余热回收利用、沉降烟尘的重要作用。但在实际生产过程中,炉内烟气流场混乱,烟尘易黏附积灰,炉壁与部件磨损严重等,导致了余热回收效率降低,低负荷运行甚至被迫停机。针对上述问题,采用多相网格质点方法,对年处理150万t精矿超大型富氧侧吹熔池熔炼余热锅炉内烟气流动特性、烟尘沉降与黏附开展数值模拟研究。结果表明:炉内的烟气涡旋会导致烟尘回流至入口烟道;挡板前移会导致挡板受击与堵塞情况加剧;增大挡板间距能有效减小挡板的堵塞;增大辐射室空间能大幅度减小挡板受到的冲击。 展开更多
关键词 富氧侧吹 余热锅炉 烟气流场 烟尘沉降 挡板侵蚀 数值模拟
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空气源热泵生物质锅炉联合供热系统应用性能模拟
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作者 尚少文 包诗钰 +1 位作者 李艺泽 程思凡 《建筑技术》 2024年第20期2466-2470,共5页
为研究我国北方农村地区利用可再生能源生物质能与空气源热泵相结合的供热系统的实际应用性能,以沈阳市农村某小区建筑为案例,采用TRNSYS动态系统搭建空气源热泵与生物质锅炉联合供热系统仿真模型进行模拟研究。该系统通过时间模块调控... 为研究我国北方农村地区利用可再生能源生物质能与空气源热泵相结合的供热系统的实际应用性能,以沈阳市农村某小区建筑为案例,采用TRNSYS动态系统搭建空气源热泵与生物质锅炉联合供热系统仿真模型进行模拟研究。该系统通过时间模块调控采取两种控制策略,与单一的空气源热泵供热系统进行对比,并对这3种模式的系统运行特性进行分析比较。联合供热系统模式1整个采暖季平均耗电量较单一空气源热泵供热系统降低56%;平均制热性能系数提高0.19;可再生能源利用率和一次能源利用率分别增幅25.21%和63%,当供水温度45℃、生物质锅炉供热占比60%时总投资费用相对较低,空气源热泵与生物质锅炉联合供热系统运行更高效节能。 展开更多
关键词 联合供热 生物质锅炉 空气源热泵 TRNSYS仿真 可再生能源
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供热锅炉选型与经济性分析
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作者 何海军 《煤炭加工与综合利用》 CAS 2024年第9期120-124,129,共6页
循环流化床锅炉、煤粉工业锅炉因能效高、环保性能好,是燃煤工业锅炉的重要发展方向,为满足锅炉选型需要,从技术性能、运行维护、经济、环保等方面对两种炉型对比分析,并结合项目案例进行实践比选。项目案例表明:因所在地周边无集中制... 循环流化床锅炉、煤粉工业锅炉因能效高、环保性能好,是燃煤工业锅炉的重要发展方向,为满足锅炉选型需要,从技术性能、运行维护、经济、环保等方面对两种炉型对比分析,并结合项目案例进行实践比选。项目案例表明:因所在地周边无集中制粉厂家,该案例煤粉工业锅炉需要炉前制粉,煤粉工业锅炉方案建设投资比循环流化床锅炉方案高626万元,蒸汽生产成本比循环流化床锅炉方案低33.6万元/a;由于煤粉工业锅炉附属制粉工艺安全隐患较多,因此,从经济性和安全性考虑,项目案例选用循环流化床锅炉方案。两种炉型没有绝对的优劣,循环流化床锅炉适应煤质范围宽,煤粉工业锅炉更适应周边环境要求高、自动化水平高的区域,要根据具体场景、条件,选择最适宜的炉型。 展开更多
关键词 工业锅炉 燃煤锅炉 性能对比 经济分析 集中供热
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