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高燃速推进剂研制现状分析 被引量:14
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作者 冉秀伦 杨荣杰 《飞航导弹》 北大核心 2006年第9期44-50,共7页
对高燃速固体推进剂研制采用的技术途径进行了分析,归纳出了六类提高推进剂燃速的方法,包括燃烧催化剂法、增加热传导法、采用纳米微粉或超细固体粒子法、新型含能材料法、金属粉/氧化剂复合粒子法和基于对流燃烧机理的方法。找出了在... 对高燃速固体推进剂研制采用的技术途径进行了分析,归纳出了六类提高推进剂燃速的方法,包括燃烧催化剂法、增加热传导法、采用纳米微粉或超细固体粒子法、新型含能材料法、金属粉/氧化剂复合粒子法和基于对流燃烧机理的方法。找出了在高燃速推进剂达到的燃速水平、提高燃速所采用的技术途径方面存在的差距,指出基于对流燃烧机理的快燃物方法具有对推进剂配方能量影响小、燃速提高幅度大、适应性广等优点,具有广阔的应用前景。 展开更多
关键词 高燃速推进剂 燃烧速度 燃速调节剂 对流燃烧快燃物
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Simulation study on combustion system of tankless gas water heater
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作者 邱步 张小松 窦礼亮 《Journal of Southeast University(English Edition)》 EI CAS 2010年第2期187-191,共5页
This paper simulates the combustion system of a regular tankless gas water heater under different static pressure conditions.The simulation results are in accordance with the test results.It proves that the used physi... This paper simulates the combustion system of a regular tankless gas water heater under different static pressure conditions.The simulation results are in accordance with the test results.It proves that the used physical and mathematical models are reasonable.The results show that the flame height and the excess air ratios depend on the system pressure drop but not on the absolute pressure at the combustion chamber.The pressure drop and the amount of combustion air have an inverse relationship with CO generation,and they also impact on the temperature and velocity fields.To reduce CO emission,a stronger fan is needed to provide extra pressure head to ensure that enough combustion air is introduced into the system.This study provides a useful research tool to develop products through computational fluid dynamic analysis and laboratory testing. 展开更多
关键词 tankless gas water heater combustion system CO emission computational fluid dynamics(CFD) static pressure
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Numerical investigation of optimal geometry parameters for ejectors of premixed burner
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作者 刘凤国 张蕊 +2 位作者 刘文博 翟军 郑斌 《Journal of Central South University》 SCIE EI CAS 2014年第3期1011-1016,共6页
An ejector of low NO~ burner was designed for a gas instantaneous water heater in this work. The flowing and mixing process of the ejector was investigated by computational fluid dynamics (CFD) approach. A comprehen... An ejector of low NO~ burner was designed for a gas instantaneous water heater in this work. The flowing and mixing process of the ejector was investigated by computational fluid dynamics (CFD) approach. A comprehensive study was conducted to understand the effects of the geometrical parameters on the static pressure of air and methane, and mole fraction uniformity of methane at the outlet of ejector. The distribution chamber was applied to balance the pressure and improve the mixing process of methane and air in front of the fire hole. A distribution orifice plate with seven distribution orifices was introduced at the outlet of the ejector to improve the flow organization. It is found that the nozzle exit position of 5 mm and nozzle diameter d 〉1.3 mm should be used to improve the flow organization and realize the well premixed combustion for this designed ejector. 展开更多
关键词 EJECTOR computational fluid dynamics (CFD) bumer distribution orifice premixed combustion
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Improvement of Emissions and Burning Limits in Burner Combustion using an Injector on the Concept of Fuel-Water Internally Rapid Mixing
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作者 Tomoaki Yatsufusa Yoshiyuki Kidoguchit Daisuke Nakagawa 《Journal of Energy and Power Engineering》 2014年第1期11-19,共9页
This study tried to apply biomass fuel to clean burner combustion under high load conditions by water addition. A newly developed injector mixes fuel rapidly with water inside of the injector with support of atomizing... This study tried to apply biomass fuel to clean burner combustion under high load conditions by water addition. A newly developed injector mixes fuel rapidly with water inside of the injector with support of atomizing air. The mixture composed of three-fluid is injected as spray into a flame stabilizer of burner. Investigation of emission performance of this injector shows that the internally rapid mixing type of injector is hopeful technique to introduce water into burner combustion. Combustion by this injector emits exceedingly less particulate matters at high load. NOx emission is strongly dependent on water flow rate. 展开更多
关键词 COMBUSTION low-quality fuel water addition emulsified fuel.
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针对石油化工火灾特点和扑救方法的研究 被引量:2
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作者 沈武 刘锋 《中国石油和化工标准与质量》 2017年第19期79-80,共2页
石油化工厂内部存在大量的易燃易爆物品及设备,在日常的生产过程中,高温高压环境极易让物料发生法学反应,引起火灾,并快速蔓延,造成无法估量的财产损失与人员伤亡。所以,做好石油化工火灾特点及扑救方法的研究,降低火灾影响十分具有现... 石油化工厂内部存在大量的易燃易爆物品及设备,在日常的生产过程中,高温高压环境极易让物料发生法学反应,引起火灾,并快速蔓延,造成无法估量的财产损失与人员伤亡。所以,做好石油化工火灾特点及扑救方法的研究,降低火灾影响十分具有现实意义。 展开更多
关键词 石油化工厂 火灾 危险性 燃烧快 统一指挥 冷却防爆
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Rapidity distribution of protons from the potential version of Ur QMD model and the traditional coalescence afterburner 被引量:1
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作者 Qing Feng Li Yong Jia Wang +1 位作者 Xiao Bao Wang Cai Wan Shen 《Science China(Physics,Mechanics & Astronomy)》 SCIE EI CAS CSCD 2016年第2期36-39,共4页
Rapidity distributions of both E895 proton data at AGS energies and NA49 net proton data at SPS energies can be described reasonably well with a potential version of the Ur QMD in which mean-field potentials for both ... Rapidity distributions of both E895 proton data at AGS energies and NA49 net proton data at SPS energies can be described reasonably well with a potential version of the Ur QMD in which mean-field potentials for both pre-formed hadrons and confined baryons are considered, with the help of a traditional coalescence afterburner in which one parameter set for both relative distance R_0 and relative momentum P_0,(3.8 fm, 0.3 Ge V/c), is used. Because of the large cancellation between the expansion in R_0 and the shrinkage in P_0 through the Lorentz transformation, the relativistic effect in clusters has little effect on the rapidity distribution of free(net) protons. Using a Woods-Saxon-like function instead of a pure logarithmic function as seen by FOPI collaboration at SIS energies, one can fit well both the data at SIS energies and the Ur QMD calculation results at AGS and SPS energies. Further, it is found that for central Au+Au or Pb+Pb collisions at top SIS, SPS and RHIC energies, the proton fractions in clusters are about33%, 10%, and 0.7%, respectively. 展开更多
关键词 rapidity distribution of protons UrQMD model coalescence model Lorentz transformation
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Ultra-fast densification of CNTs reinforced alumina based on combustion reaction and quick pressing 被引量:3
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作者 FU ZhengYi HUANG LiWei +1 位作者 ZHANG JinYong TODD Richard 《Science China(Technological Sciences)》 SCIE EI CAS 2012年第2期484-489,共6页
An ultra-fast densification method based on high heating rate from the combustion reaction for producing carbon nanotubes (CNTs) reinforced alumina ceramics is reported. The heat generated by combustion reaction is ... An ultra-fast densification method based on high heating rate from the combustion reaction for producing carbon nanotubes (CNTs) reinforced alumina ceramics is reported. The heat generated by combustion reaction is adopted to act as a high temperature source to the sample, which results in a heating rate of 1660℃/min of the sample. Then a great mechanical pressure is applied to the sample when the sample gets the expected temperature. The densification process is finished in several minutes. The results indicate that the densification method is beneficial to protect the CNTs from destruction and creates good interracial combination between the nanotubes and the matrix. With the addition of 1 wt% CNTs, the fracture toughness of the ceramics prepared increases about 50%. 展开更多
关键词 carbon nanotubes ALUMINA combustion reaction quick pressing
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Fast Ignition and Stable Combustion of Coarse Coal Particles in a Nonslagging Cyclone Combustor
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作者 Biao Zhou X. L.Wang +1 位作者 R. X. Li Lixing Zhou(Department of Engineering Mechanics, Tsinghua University, Beijing 100084, China) 《Journal of Thermal Science》 SCIE EI CAS CSCD 1995年第2期136-140,共5页
A combustion set-up of an innovative nonslagging cyclone combustor called 'Spouting-Cyclone Combustor (SCC)' ) with two-stage combustion, organized in orthogonal vortex flows, was established and the experime... A combustion set-up of an innovative nonslagging cyclone combustor called 'Spouting-Cyclone Combustor (SCC)' ) with two-stage combustion, organized in orthogonal vortex flows, was established and the experimental studies on the fast ignition and stable combustion of coarse coal particles in this combustor were carried out. The flame temperature versus ignition time and the practical faSt ignition procedure were obtained; The stable coal combustion can be achieved after a short period ignition, and the temperature fields in SCC were obtained. These results show that it is possible to obtain highly efficient and clean combustion of unground coal particles by using this technology. 展开更多
关键词 coal combustion coal ignition cyclone combustor.
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A Novel Approach to Predict the Stability Limits of Combustion Chambers with Large Eddy Simulation 被引量:1
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作者 B.Pritz F.Magagnato M.Gabi 《Journal of Thermal Science》 SCIE EI CAS CSCD 2010年第3期261-265,共5页
Lean premixed combustion,which allows for reducing the production of thermal NOx,is prone to combustion instabilities.There is an extensive research to develop a reduced physical model,which allows-without time-consum... Lean premixed combustion,which allows for reducing the production of thermal NOx,is prone to combustion instabilities.There is an extensive research to develop a reduced physical model,which allows-without time-consuming measurements-to calculate the resonance characteristics of a combustion system consisting of Helmholtz resonator type components (burner plenum,combustion chamber).For the formulation of this model numerical investigations by means of compressible Large Eddy Simulation (LES) were carried out.In these investigations the flow in the combustion chamber is isotherm,non-reacting and excited with a sinusoidal mass flow rate.Firstly a combustion chamber as a single resonator subsequently a coupled system of a burner plenum and a combustion chamber were investigated.In this paper the results of additional investigations of the single resonator are presented.The flow in the combustion chamber was investigated without excitation at the inlet.It was detected,that the mass flow rate at the outlet cross section is pulsating once the flow in the chamber is turbulent.The fast Fourier transform of the signal showed that the dominant mode is at the resonance frequency of the combustion chamber.This result sheds light on a very important source of self-excited combustion instabilities.Furthermore the LES can provide not only the damping ratio for the analytical model but the eigenfrequency of the resonator also. 展开更多
关键词 compressible large-eddy simulation combustion instabilities oscillating flow damping ratio
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