流体机械
流體機械
류체궤계
FLUID MACHINERY
2014年
9期
81-85
,共5页
陈思林%秋实%胡昊%杨欢%陈忠凯
陳思林%鞦實%鬍昊%楊歡%陳忠凱
진사림%추실%호호%양환%진충개
单人舱室%室内空气品质%置换通风%室内流场%数值模拟
單人艙室%室內空氣品質%置換通風%室內流場%數值模擬
단인창실%실내공기품질%치환통풍%실내류장%수치모의
single cabin%IRQ%displacement ventilation%internal flow field%numerical simulation
针对置换通风方式下舱室内流场分布情况,采用RNG k-ε涡粘性湍流数学模型,建立了常用的3种不同置换通风方式下的舱室分析模型,对舱室内速度场、温度场及污染物浓度分布情况进行了数值分析。根据《乘用车内空气质量评价指南GB/T 27630-2011》中的评价方法,对3种通风方式进行了对比分析。结果表明:前进后出置换通风方式能够有效降低舱室内工作区域CO2浓度,温度调节能力强,且温度变化梯度小,可使舱室内工作区域得到品质较高的空气分布、较好的热舒适度和较高的通风效率。该种置换通风方式可用于舱室内空调通风系统的设计。
針對置換通風方式下艙室內流場分佈情況,採用RNG k-ε渦粘性湍流數學模型,建立瞭常用的3種不同置換通風方式下的艙室分析模型,對艙室內速度場、溫度場及汙染物濃度分佈情況進行瞭數值分析。根據《乘用車內空氣質量評價指南GB/T 27630-2011》中的評價方法,對3種通風方式進行瞭對比分析。結果錶明:前進後齣置換通風方式能夠有效降低艙室內工作區域CO2濃度,溫度調節能力彊,且溫度變化梯度小,可使艙室內工作區域得到品質較高的空氣分佈、較好的熱舒適度和較高的通風效率。該種置換通風方式可用于艙室內空調通風繫統的設計。
침대치환통풍방식하창실내류장분포정황,채용RNG k-ε와점성단류수학모형,건립료상용적3충불동치환통풍방식하적창실분석모형,대창실내속도장、온도장급오염물농도분포정황진행료수치분석。근거《승용차내공기질량평개지남GB/T 27630-2011》중적평개방법,대3충통풍방식진행료대비분석。결과표명:전진후출치환통풍방식능구유효강저창실내공작구역CO2농도,온도조절능력강,차온도변화제도소,가사창실내공작구역득도품질교고적공기분포、교호적열서괄도화교고적통풍효솔。해충치환통풍방식가용우창실내공조통풍계통적설계。
For the cabin flow field distribution under the displacement ventilation mode,the author using the RNG k-εturbu-lent eddy viscosity math model established the cabin analysis models under three commonly-used different displacement ventilation mode to carry out the numerical analysis on the cabin interior velocity field,temperature field and pollutant concentration distribu-tion. According to the evaluation method in“Air Quality Assessment Guidelines on Passenger Car GB/T27630-2011”,the three ventilation methods were compared and analyzed. The results show that:the displacement ventilation mode of intaking air in the front and venting in the back can effectively reduce the CO2 concentration in the working area of the cabin,and its temperature regulating ability is high,while the temperature gradient is small,so that it can make the work area of the cabin get higher air dis-tribution quality,better thermal comfort and a higher ventilation efficiency. This kind of displacement ventilation mode can be used in air conditioning and ventilation system design of the cabin.