شماره ركورد :
1069194
عنوان مقاله :
بررسي آزمايشگاهي مقاومت جريان در كانال عريض با جداره ثابت
عنوان به زبان ديگر :
A Laboratory Investigation of Flow Resistance in a Wide Rigid Boundary Channel
پديد آورندگان :
حسن زاده وايقان، وحيد دانشگاه اروميه - دانشكده فني و مهندسي , محمدي، ميرعلي دانشگاه اروميه - دانشكده فني و مهندسي
تعداد صفحه :
10
از صفحه :
73
تا صفحه :
82
كليدواژه :
كانال عريض و مدل فيزيكي , دبي - عمق و مقاومت جريان , ريب زبري مانينگ , n , كانال عريض با جداره ثابت
چكيده فارسي :
كانال ها و رودخانه هاي عريض به جهت داشتن نسبت عرض به عمق جريان،b/h، زياد، خصوصيات هيدروليكي متفاوت تري نسبت به كانال هاي روباز معمولي دارند. در اين تحقيق با استفاده از يك مدل فيزيكي صحرايي، كانالي عريض به طول 60 متر و عرض 1.5 متر كه داراي نسبت عرض به عمق جريان بين 12 تا 56 است، مشخصات هيدروليكي كانال هاي عريض با جداره ثابت بتني، شامل الگوي جريان، منحني دبي اشل و مقاومت جريان مورد بررسي قرار گرفته است. بر اساس مقادير اعداد بي بعد فرود، رينولدز و رينولدز برشي جريان بدست آمده، مشخص گرديد كه رژيم جريان از نوع زيربحراني آشفته است. طبق نمودار دبياشلtailgate مشخص مي شود كه با افزايش دبي جريان، ارتفاع tailgate مورد نياز در پايين دست كانال عريض براي ايجاد عمق نرمال، كاهش مي يابد. نتايج تحقيق گوياي آن است كه براي دبي هاي بزرگتر از 35 ليتر بر ثانيه ضريب زبري مانينگ، n، اندازه گيري شده، به مقادير n ارائه شده در منابع هيدروليك براي كانال بتني بسيار نزديك است. ولي براي دبي هاي كوچكتر از 35 ليتر بر ثانيه ضريب زبري مانينگ اندازه گيري شده n، 15% بيش از مقدار ارائه شده در منابع هيدروليك مي باشد. همچنين بر اساس نتايج، با افزايش عمق جريان، ضريب زبري مانينگ، n، كاهش و با افزايش عدد رينولدز، ضريب زبري n به صورت خطي ملايم كاهش پيدا مي كند. نتايج تحقيق نشان مي دهد كه در كانال عريض، با افزايش عدد فرود جريان از 0.26 تا 0.40، ضريب زبري مانينگ، n، در محدوده0.022 تا 0.016 كاهش مي يابد
چكيده لاتين :
The stage-discharge relationship is a type of resistance to flow evaluation that is used to determine the depth or the hydraulic radius if the flow discharge, channel cross-sectional shape and the properties of bed materials are specific. Wide channels as well as plane bed rivers, due to having higher ratios of width to depth, b/h, they have specific hydraulic characteristics than that of the normal open channels. In this research work, the hydraulic characteristics of widening channels including flow pattern, stage-discharge relationship and flow resistance, by using a physical model of a rigid boundary with 60 m length, 1.5 m wide and a bed slope of 0.001 that has b/h ratios of 12 to 56 are experimentally investigated. The construction material of channel model is concrete bed and concrete block walls were used. To insulate the channel bed and walls, a thick layer under the concrete was also used. Due to its wide width and length, the physical model of this study has low scale effects and the obtained results are closer to the normal open channels as well as the plain bed rivers. Based on the values of obtained for the Froude, Reynolds and Shear Reynolds numbers in model, it was found that the flow regime is subcritical and turbulent. According to the results of model, stage-discharge-tailgate relationship is shown plotted and it is found that as the flow rate increases, the tailgate height that required at the downstream end of the channel to produce a normal depth, increases. On the basis of normal depths obtained in the widen channel model, a reliable stage-discharge relationship is presented. The results show that this relationship has a higher coefficient than that of a natural channel stage-discharge relationship. Results, also reveals that between the calculated and measured the Manning coefficient, n, in the wide channel model, a difference (about 10%) is observed. The results of the research show that, for discharges greater than 35 lit/s, the measured Manning roughness coefficient, n is very close to the n values presented in literature. However, for the discharges less than 35 lit/s, the measured values of Manning’s n is 15% higher than the amounts provided in literature. The results of the present research show that by increasing the ratio of hydraulic radius to the roughness height of the bed (Rh/ks), the Manning roughness, n, decreases linearly. Also, based on the results, it was found that by increasing flow depth, The Manning roughness, n, decreases and by increasing Reynolds number, Re, the Manning n decreases linearly. The results also show that in the wide channel model, the Manning roughness coefficient, n, decreases from 0.022 to 0.016 by increasing Froude number, Fr, from 0.26 to 0.4, but n values increases by increasing depth ratio, b/h. According to the results of the experiments, in a range of Reynolds number, 700
سال انتشار :
1397
عنوان نشريه :
مهندسي عمران مدرس
فايل PDF :
7606728
عنوان نشريه :
مهندسي عمران مدرس
لينک به اين مدرک :
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