Application of a Lumped Multi-Section Model for Analyzing the Thermal Performance of a Small-Scale Biomass Boiler

被引:0
作者
POLESEK-KARCZEWSKA Sylwia
WARDACH-?WI?CICKA Izabela
KARDA? Dariusz
TURZY?SKI Tomasz
机构
[1] RenewableEnergyDepartment,SzewalskiInstituteofFluid-FlowMachinery,PolishAcademyofSciences
关键词
D O I
暂无
中图分类号
TK229 [各种类型锅炉];
学科分类号
080703 ;
摘要
The stationary lumped-cell model was developed and used to simulate the thermal characteristics of domestic biomass boiler with helically coiled tube heat exchanger(HCHE). The device serves as the heat source for ORC(Organic Rankine Cycle) unit and utilizes the thermal oil as the medium transferring the heat to the unit. Most of studies available in the literature refer to the CFD simulations for water flow in tube coils or in one-or two-turn coil elements. These investigations are basically focused on the determination of Nusselt number. The proposed herein model aims at determining the thermal performance of flue gas-oil HCHE while providing low CPU time. To demonstrate the model possibilities, it was used to predict the flue gas temperatures at the inlet and outlet from the heat exchange zone, based on measurement data regarding the outlet temperature of thermal oil. Six test series were considered. The computation results appeared to be in satisfactory agreement with experimental results(the discrepancies do not exceed 12%). The investigations showed that the used approach may be recommended as an alternative method that allows for fast prediction of thermal parameters for units of complex geometries, in particular the multi-coil heat exchangers.
引用
收藏
页码:1034 / 1045
页数:12
相关论文
共 21 条
[1]  
Turbulent Convective Heat Transfer of Methane at Supercritical Pressure in a Helical Coiled Tube[J]. WANG Chenggang,SUN Baokun,LIN Wei,HE Fan,YOU Yingqiang,YU Jiuyang.Journal of Thermal Science. 2018(01)
[2]  
Experimental Investigation of Local Heat Transfer and Skin Friction in Tube Coils[J]. PovilasPoskas ,RobertasPoskas.Journal of Thermal Science. 2002(03)
[3]  
Experimental development of a kilowatt-scale biomass fired micro – CHP unit based on ORC with rotary vane expander[J] . Jakub Mascuch,Vaclav Novotny,Vaclav Vodicka,Jan Spale,Zbynek Zeleny.Renewable Energy . 2020 (Pt 3)
[4]   Isothermal laminar fluid flow in spiral tube coils [J].
Patil, Rahul Harishchandra .
HEAT AND MASS TRANSFER, 2018, 54 (12) :3673-3693
[5]  
Experimental investigation on air displacement and air excess effect on CO, CO 2 and NO x emissions of a small size fixed bed biomass boiler[J] . Gianluca Caposciutti,Marco Antonelli.Renewable Energy . 2018
[6]   Experimental investigation of heat transfer and pressure drop of turbulent flow inside tube with inserted helical coils [J].
Sharafeldeen, M. A. ;
Berbish, N. S. ;
Moawed, M. A. ;
Ali, R. K. .
HEAT AND MASS TRANSFER, 2017, 53 (04) :1265-1276
[7]  
Numerical simulation on the flow and heat transfer characteristics in the one-side heating helically coiled tubes[J] . Xiaojuan Niu,Shuaishuai Luo,Liang-Liang Fan,Liang Zhao.Applied Thermal Engineering . 2016
[8]  
Calculation Code for Helically Coiled Heat Recovery Boilers[J] . Alberto Sogni,Paolo Chiesa.Energy Procedia . 2014
[9]   Correlations for heat transfer coefficient and pressure drop in the annulus of concentric helical coils [J].
Gomaa, Abdalla ;
Aly, Wael I. A. ;
Omara, M. ;
Abdelmagied, Mahmoud .
HEAT AND MASS TRANSFER, 2014, 50 (04) :583-586
[10]   Heat transfer simulation in a helically coiled tube steam generator [J].
Hassanzadeh, Bazargan ;
Keshavarz, Ali ;
Ebrahimi, Masood .
HEAT AND MASS TRANSFER, 2014, 50 (01) :13-21