ASHRAE LO-09-058-2009 Effects of Jet Inclination Angle and Geometrical Parameters on Air Curtain Performance《喷射倾角和几何参数对气帘性能的影响》.pdf
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1、2009 ASHRAE 617ABSTRACT Tilted air jet planes are used as barriers between two envi-ronments of different temperature, humidity and quality. Entrainment of one environment Fluid (air) into the curtain by shear layer mixing contributes to both the sensible and the latent heat load on the other enviro
2、nment and the impingement of the air curtain formed. Perturbation of one side affects the shape of the air jet and might endanger its integrity. Protrusion present in the direction of the flow impacts the performance of the air curtain and defeats its purpose of existence.Computational Fluid Dynamic
3、s (CFD) method is used to evaluate the performance of the air curtain formed by the tilted jet plane and is also validated by comparing the CFD calcu-lations results with experimental results.Qualitative design combination of various parameters and various levels of obstruction in the direction of t
4、he flow(s) are proposed in order to achieve optimal performance of the air curtain.INTRODUCTIONTilted air plane jets can be used as dynamic barriers to control and ensure invisible separation between two environ-ments. Quality control and conditions of the environments including temperature, contami
5、nants, pressure and humidity can be maintained independently upon the provision of the specific parameters that will allow the maintenance of the integrity of the air plane jets.The performance of this dynamic non-physical barrier will be under continuous threat of fluctuating due to the easy existe
6、nce of perturbation that could result from a change in the various conditions of thermal and pressure conditions on one side of the environment, or from the intrusions of personnel, hands or insects resulting in breaking the integrity of the barrier and requirement of further periods of time to rebu
7、ild the jet coupled with consequences of such broken integrity. The complexity of maintaining the quality and condi-tion of one environment from changes due to influence of another adjacent environment necessitates identification of the combination of factors and in specific the angle causing the ti
8、lt of the air jet, that affect the optimal performance of the tilted air jet separating the two environments. Such mainte-nance is managed upon the consideration of the dynamic nature, the balance between the jet momentum flux and the pressure difference between the two environments, surface stresse
9、s, infiltration, entrainment, turbulence generation, internal interactions, physical obstruction by objects and people and nature of work space.A typical application of the tilted air jet plane is being used in refrigerated display cabinets that exist practically in any commercial outlet, supermarke
10、t or mall. Air curtain is used, as a replacement of a see- through glass door. Surveys indicated that such rigid glass door may affect the propensity of the consumers to pick goods from the display cabinet. With the continuous increase of energy cost, the generation of suitable refrigerated environm
11、ent became a concern for owners in specific when such environment is not protected well against the infiltration of the opposite side of the curtain environment which is usually at different temperature and humidity condi-tions. If infiltration rate accounts for 70% -80% of a typical case cooling lo
12、ad and if the refrigeration accounts for 50% of typical store electric load, then efforts should be undertaken to mini-mize the infiltration rate aiming at reducing the energy cost.Having identified the need for the tools which enable identification of the performance of a tilted air jet, the object
13、ive Effects of Jet Inclination Angle and Geometrical Parameters on Air Curtain PerformanceSamir R. Traboulsi, PEng Ali Hammoud, PhD M. Farid Khalil, PhDMember ASHRAESamir R. Traboulsi is a senior lecturer in the Department of Engineering Management, American University of Beirut, Lebanon. Ali Hammou
14、d is a professor of fluid mechanics, Department of Mechanical Engineering, Beirut Arab University, Beirut, Lebanon. M. Farid Khalil is a professor in the Department of Mechanical Engineering, Alexandria University, Alexandria, Egypt.LO-09-058 2009, American Society of Heating, Refrigerating and Air-
15、Conditioning Engineers, Inc. (www.ashrae.org). Published in ASHRAE Transactions 2009, vol. 115, part 2. For personal use only. Additional reproduction, distribution, or transmission in either print or digital form is not permitted without ASHRAEs prior written permission.618 ASHRAE Transactionsof th
16、is present work is to develop a model-based design meth-odology for the establishment of tilted air jet plane, that will facilitate the design and or evaluate existing designs and in particular the effects of the inclination angle of the jet on the performance of the air curtain. Air jet planes can
17、be vertical, horizontal or tilted and were introduced for the first time in year 1916. Function and tightness studies were performed in the last 40 years and mainly concentrated on the vertical and horizontal types. Under several titles, air jet planes were immensely considered in research work in b
18、oth domains: experimental and compu-tational. Some were successful in addressing those parameters that have significant impact on the performance of the jet. Identification of those parameters and quantification allowed some how the determination of certain rates like infiltration and or entrainment
19、 expressions.Many have contributed in developing a number of math-ematical models to aid in the design and performance predic-tion of the air jets. Explicit method was employed to solve the differential equations describing the flow and to prove that the performance of the air jet can be simulated e
20、ffectively using the finite difference technique; Hetsroni and Hayes, 1. Finite element method as well as other several patents were taken out on open protection devices with few investiga-tions have been reported; M. Havet et al. 2, who made the study on an air curtain used as a dynamic barrier to
21、separate two environments indicated that the curtain is strongly sensitive to perturbations such as draughts. Studies taking into consider-ation all major parameters affecting the air curtain flow field by the utilization of modern analytical, computational and exper-imental techniques, were done by
22、 H. Navaz et al. 3, by Bran-don S. Field, Eric Loth,4 and by M. Amin, et al. 5, on the entrainment of ambient air on vertical air curtain upon varying the Reynolds numbers (4200-8000) and the Richardson Number (013-0.58) which again showed that the entrainment of the ambient air was governed by vari
23、ety of eddy engulfing structures. Also, a numerical simulation was utilized on the two dimensional solution of a vertical down ward-blowing plane jet, J.J Costa et al.6, and on the flow and heat transfer char-acteristics of vertical air curtain in a vertical display cabinet with a two fluid turbulen
24、ce model; K-Z Yuet al.7. However, many experimental works were done on the air jet with little on tilted angle in comparison with the hori-zontal and vertical air barriers. Works indicated that a breaking point for air curtains occurs if the deflection modulus is below the minimum value for the part
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