环境工程学报
環境工程學報
배경공정학보
CHINESE JOURNAL OF ENVIRONMENTAL ENGINEERING
2009年
12期
2285-2290
,共6页
颜学升%张敏%王助良%杜滨
顏學升%張敏%王助良%杜濱
안학승%장민%왕조량%두빈
颗粒层除尘器%过滤%除尘效率%压力损失%沉积密度
顆粒層除塵器%過濾%除塵效率%壓力損失%沉積密度
과립층제진기%과려%제진효솔%압력손실%침적밀도
granular bed duster%filtration%dust removal efficiency%pressure loss%deposit density
根据固定床颗粒层内气流含尘浓度的连续方程、颗粒层过滤规律和新型颗粒层的过滤特点,建立了同定床颗粒层过滤过程和新型颗粒层过滤性能的宏观数学模型;根据颗粒层的过滤机理和实际灰尘颗粒粒径的分布状态,在实验的基础上,修正了过滤速度对颗粒层过滤效率的影响;根据实验结果对过滤效率方程式、床层压降方程式中的特征参数进行了回归,得到了具体过滤介质的颗粒层宏观过滤数学模型.模型表明新型颗粒层过滤过程是一个不随过滤时间变化的准稳态过程,只与过滤介质特性和循环清灰周期有关,模型计算值能准确地反映颗粒层的过滤性能.
根據固定床顆粒層內氣流含塵濃度的連續方程、顆粒層過濾規律和新型顆粒層的過濾特點,建立瞭同定床顆粒層過濾過程和新型顆粒層過濾性能的宏觀數學模型;根據顆粒層的過濾機理和實際灰塵顆粒粒徑的分佈狀態,在實驗的基礎上,脩正瞭過濾速度對顆粒層過濾效率的影響;根據實驗結果對過濾效率方程式、床層壓降方程式中的特徵參數進行瞭迴歸,得到瞭具體過濾介質的顆粒層宏觀過濾數學模型.模型錶明新型顆粒層過濾過程是一箇不隨過濾時間變化的準穩態過程,隻與過濾介質特性和循環清灰週期有關,模型計算值能準確地反映顆粒層的過濾性能.
근거고정상과립층내기류함진농도적련속방정、과립층과려규률화신형과립층적과려특점,건립료동정상과립층과려과정화신형과립층과려성능적굉관수학모형;근거과립층적과려궤리화실제회진과립립경적분포상태,재실험적기출상,수정료과려속도대과립층과려효솔적영향;근거실험결과대과려효솔방정식、상층압강방정식중적특정삼수진행료회귀,득도료구체과려개질적과립층굉관과려수학모형.모형표명신형과립층과려과정시일개불수과려시간변화적준은태과정,지여과려개질특성화순배청회주기유관,모형계산치능준학지반영과립층적과려성능.
According to continuity equation of dust concentration in gas current,filtration principle and fil-tration characteristics of a new granular layer,a macroscopic mathematical model was built for describing fixed bed granular layer filtration process and predicting filtration performance of the new granular layer. With filtration mechanism and practical distribution of dust particle diameters,influence of filtration speed on filtration efficien-cy was amended based on experiments. Regression was conducted on characteristic parameters in filtration effi-ciency equation and bed layer pressure drop equation in terms of experiment results,a macroscopic mathematical model was deduced for granular layer fihration involving concrete medium. The model indicated that filtration process of the new granular layer was quasi-steady and did not vary with filtration period,and only related to fil-tration medium and dust removal cycle. Computed results by the model could accurately reflect granular layer fil-tration performance.