Microparticle indoor resuspension under periodic airflows : a numericalanalytical study and experimentations
kamel abou ghali, MOHAMAD BASSEL ADNAN KAZZAZ
كلية مارون سمعان للهندسة والعمارة-الجامعة الأمريكية في بيروت · لبنان
الموضوعات
علوم تطبيقية وتكنولوجية
الملخص
As particles may pose a threat to people during breathing close to surfaces, understanding and identifying the mechanisms by which these particles detach help in taking preventive measures during cleaning and dusting processes of surfaces, and in the selection and operation of ventilation systems when particles are airborne. This work presents a numerical–analytical coupled model to examine resuspension under the effect of oscillatory flows, taking into account the probabilistic approach of resuspension occurrence due to turbulent bursts for different particle diameters and surface roughness. The results of the model were validated with experiments conducted for flows alternating between constant blowing and suction for different flow velocities and frequencies. A parametric study using the validated model was conducted to study the particle detachment phenomenon under sinusoidal flows similar to human breathing flows under a variety of respiration velocities and rates, particle diameters and surfaces. Results showed that micro-particles of relatively high diameters pose a considerable threat over surfaces in indoor environment. The occurrence of resuspension is highly influenced by surface type and roughness. Parquet flooring was found to cause the resuspension of approximately 98percent of 80 micrometer lead particles compared to 64.5percent of the same particles over marble flooring at certain locations under the effect of normal breathing. Therefore, besides dust removal methods, the choice of flooring material is an essential preventive measure to reduce indoor particle resuspension.
روابط وملفات
التعريف والنوع
- رقم الوثيقة
- fa6d2f73-c1dd-4ed1-ae7a-b05d0e68548a
- رقم العقد
- 0
- نوع الوسائط
- Crawler
- نوع المحتوى
- الرسائل العلمية
- صيغة المصدر
- رسائل ماجيستير
- نوع الملف
- pdf text
- أسماء الملفات
- 1633511_1.pdf
بيانات النشر
- ألقاب المؤلفين
- [{"name_ar":"kamel abou ghali","title_ar":"اشراف","title_en":"Supervision"},{"name_ar":"MOHAMAD BASSEL ADNAN KAZZAZ ","title_ar":"اعداد","title_en":"Preparation"}]
- اللغة
- English
المصدر والدورية
- اسم المصدر
- Microparticle indoor resuspension under periodic airflows : a numericalanalytical study and experimentations
المحتوى والصفحات
- عدد الصفحات
- 0
إشراف وإعداد
- الإشراف
- kamel abou ghali
- الإعداد
- MOHAMAD BASSEL ADNAN KAZZAZ
الاقتباسات الببليوغرافية
APA
MLA