Wind loads on buildings and other structures according to ASCE 7-22

المحاضر: م.إيهاب شاكر

نبذة عن كورس Wind loads on buildings and other structures according to ASCE 7-22

الكورس يغطي شرح تطبيق احمال الرياح على المباني والمنشآت الأخرى والتي تم تغطيتها في الكود من خلال أحكام و متطلبات الكود في الفصول المتعلقة بأحمال الرياح وهي (Chapters 26,27,28,29,30,31)، ويتضمن الكورس 20 شيت إكسل وملف بي دي إف 370 صفحة و25 مثال محلول بخلاف التطبيقات على برنامجي SAP & ETABS Wind tunnel test بخلاف تقريرين لبرجين في دولة الإمارات (Wind tunnel test + EXCEL + ETABS)
مرفق مع الكورس المراجع والكودات المعتمدة المتعلقة بأحمال التشغيل ومراجع تحتوي على أمثلة استخدمت في الكورس لمسائل في حساب أحمال الرياح

بالإضافة الى :

✅يتم المتابعه عن طريق جروب مخصص للأسئلة والأجوبة
✅بتقدر تستفيد من اى أضافات للكورس بشكل مجانى خلال فترة الإشتراك .
✅ ️جودة تسجيل احترافية صوت وصورة عالية الوضوح .
✅يمكنك الاشتراك بالدورة من أي مكان فى خطوات معدودة.
✅لا توجد حاجة للإتصال بالإنترنت لمشاهدة محتوى الدورة.
✅طرق مدفوعات متنوعة.

الفئة المُستهدفة من الكورس:

  • جميع مهندسين مدني وطلبة كلية الهندسة قسم مدني داخل وخارج مصر

أساسيات لازمة قبل البدء فى الكورس:

  • معرفة معقولة بأساسيات الاوتوكاد و الاكسل

ما الذي ستكتسبه بنهاية الكورس:

  • القدرة على تطبيق احمال الرياح على المباني والمنشآت الأخرى طبقاً لـ ASCE 7-22

البرامج المستخدمة فى الدورة:

  • CSI ETABS
  • CSI SAP

الموضوعات التى يتناولها الكورس:

  • Lecture 1 :  General definitions and requirements – 1
    •  Wind loads procedures in ASCE7-22
    • How is wind pressure calculated in ASCE7?
    • Wind flow characteristics
  • Lecture 2 :  General definitions and requirements – 2
    • Surface Roughness Categories
    • Velocity pressure
    • Velocity pressure exposure coefficient (Kz)
    • Effect of open areas on exposure category B
  • Lecture 3 :  General definitions and requirements – 3
    • Roughness Change
    • Case of single Roughness Change
    • Case of Multiple Roughness Change
    • Solved examples (1,2)
  • Lecture 4 : General definitions and requirements – 4
    • Topographic effects & Topographic factor (Kzt)
    • Basic wind speed
    • Review on Risk category of buildings
    • Mean roof height (h)
    • Gust factor (G)
  • Lecture 5 :  General definitions and requirements – 5
  • Enclosure classification of buildings
  • Important notes about openings
  • Protection of Glazed Openings
  • Internal Pressure Coefficient (GCpi)
  • Lecture 6 : Directional procedure method- 1
    • When is it not permitted to determine wind loads by (ASCE7-22)
    • The most dangerous phenomena that some structures may be exposed to and that are not covered by the code
    • Wind directionality factor ( Kd ))
    • Directional procedure method
    • External pressure coefficients …(Cp)
  • Lecture 7 :  Directional procedure method- 2
    • Design wind pressure on roof overhangs
    • Design wind pressure for the effect of parapets on MWFRS
    • Design Wind Load Cases The MWFRS
    • How we can apply torsion load cases on buildings with flexible or semi- rigid diaphragms?
    • Eccentricity e for flexible buildings
    • Building Exempted from Torsional wind load cases
  • Lecture 8 & Lecture 9 : Directional procedure method- 3
  • What is meant by low-rise building in ASCE7-22?
  • An alternative to performing an analysis to determine the approximate building natural frequency
  • Solved example 3 – Low rise building
  • Lecture 10 : Directional procedure method- 4
    • Solved example 4 – Tall building with 15 typical floors
  • Lecture 11 : Directional procedure method- 5
    • Example 5 – Tall building located on Escarpment
    • ETABS
  • Lecture 12 : Directional procedure method- 6
    • Example 6 – Structure with mono slope roof with overhang
    • ETABS
  • Lecture 13 & Lecture 14 : Directional procedure method- 7
    • Example 7 – (MWFRS) wind loads for elevated buildings
    • Excel & ETABS
  • Lecture 15 & Lecture 16 : Directional procedure method- 8
    • Design wind pressure (p) for Open Buildings
    • Horizontal Wind Loads on Open or Partially Enclosed Buildings with Transverse Frames and Pitched Roofs
    • Example 8 – Open building with gable roof Excel & SAP
  • Lecture 17 : Directional procedure method- 9
    • Example 9- Design wind loads on the (MWFRS) FOR 3- Story (L-Shaped with gable roof) house
    • Excel & ETABS
  • Lecture 18 : Envelope procedure method
    • Example 10 – Design wind loads on warehouse metal building
    • SAP & EXCEL Sheets
  • Lecture 19 : Directional procedure method – 10
    • Example 11- Design wind loads on domes
    • SAP & EXCEL Sheets
  • Lecture 19-2 : Directional procedure method – 9
    • Modeling of domes in SAP
  • Lecture 20 : Wind loads on building appurtenances And other structures- 1
    • Design wind for Rooftop Structures and Equipment for Buildings
    • Example 12: wind load for a rooftop Equipment
    • Design wind load for solid free standing walls and solid signs Example 13: Wind load for solid free standing wall
  • Lecture 21 : Wind loads on building appurtenances And other structures- 2
    • Example 14 – Design wind loads on billboard signs SAP & EXCEL
  • Lecture 21-2 : Wind loads on building appurtenances And other structures- 2
    • Modeling of billboard signs in SAP
  • Lecture 22 : Wind loads on building appurtenances And other structures-3
    • (chimneys, tanks, open signs, single-plane open frames, isolated tanks and trussed towers)
    • Example 15: Design wind loads for Isolated circular tank
    • SAP & EXCEL Sheets
    • Lecture 22-2 : Wind loads on building appurtenances And other structures-3
    • Modeling of the Isolated circular tank in SAP
  • Lecture 23 : Wind loads on building appurtenances And other structures- 4
    • Example 16: Wind loads on a minaret
    • SAP & EXCEL Sheets
  • Lecture 24 : Wind tunnel testing
    • Wind pressure on components & cladding
    • General requirements
    • Part 1: Low rise buildings – 1
    • Wind loads on C & C for low rise building
    • The effective area of components & Cladding
    • External pressure coefficients (GCp) & pressure zones (floors & walls)
      Special case for pressure zones
      Case of nonrectangular plan
  • Lecture 25-1 : Wind pressure on components & cladding Part 1: Low rise buildings – 2
    • Example 16 Wind loads on C & C for low rise building with gable roof in (example 10)
    • Wind loads on C & C in SAP 2000 (Modelling & Results)
  • Lecture 25-2 : SAP2000… Loading and results Wind pressure on components & cladding Part 1: Low rise buildings – 2
    • SAP2000 … Loading and results
  • Lecture 26-1 : Wind pressure on components & cladding Part 1: Low rise buildings – 3
    • Example 17 Wind loads on C & C for low rise building (Mono slope roof with overhang)
    • The design wind pressure on C & C for roof overhangs
  • Lecture 26-2 : Wind pressure on components & cladding Part 1: Low rise buildings – 3
    • The design wind pressure on C & C for roof overhangs
  • Lecture 27 : Wind pressure on components & cladding Part 1: Low rise buildings – 4
    • Example 18 Wind loads on C & C for 3- Stories (L-Shaped) house with gable roofs
  • Lecture 28 : Wind pressure on components & cladding Part 1: Low rise buildings – 5
    • Wind loads on C & C for dome roofs and arched roofs
  • Lecture 29 : Wind pressure on components & cladding Part 2: Buildings with h > (18.3 m)
    • Example 20: wind pressure on components and cladding For the office building with 15 typical floors
    • Wind loads on components & Cladding elements of roof parapet
  • Lecture 30 : Wind pressure on components & cladding Part 3: Open buildings
    • Example 21: Gaz station canopy with flat roof
    • Example 22: Bus station canopy with mono slope roof
  • Lecture 31
    • Wind pressure on components & cladding PART 4: Building appurtenances, rooftop structures and equipment
    • Rooftop Structures and equipment for buildings Attached canopies on buildings
  • Lecture 32
    • Wind pressure on components & cladding PART 5: Nonbuilding structures Circular bins, silos, and tanks
    • Wind pressure on C&C of isolated circular bins, silos, and tanks with (h,D < 36.6 m) and (0.25 < H/D < 4.0)
    • External pressure coefficients (GCp) of Exterior Walls of Isolated Open-Topped Circular Bins, Silos, and Tanks
    • External pressure coefficients (GCp) for C&C for roofs of isolated circular bins, silos, and tanks
    • External pressure coefficients (GCp) for the undersides of elevated circular bins, silos, and tanks
    • External pressure coefficients, GCp, for roofs of grouped circular bins, silos, and tanks (h, D < 36.6 m & 0.25 < H/D < 4.0)
    • External pressure coefficients, GCp, for walls of grouped circular bins, silos, and tanks (h, D < 36.6 m & 0.25 < H/D < 4.0)
  • Lecture 33 : Wind pressure on components & cladding PART 5: Nonbuilding structures Circular bins, silos, and tanks
    • Modelling of pressure zones of walls and roofs of isolated and grouped circular bins, silos, and tanks in SAP2000
  • Lecture 34 : Serviceability design of tall buildings Under wind loads
    • Performance objectives & Acceptance criteria
    • Acceleration limits for accupant comfort
    • Motion sickness assesment
    • Drifts in tall buildings
    • Enviromental wind study
    • Strength design & Load combinations
  • Lecture 35 : Wind tunnel test – 1
    • When is the Wind tunnel testing mandatory?
    • Wind simulation in wind tunnel test
    • Types of wind tunnel tests
    • Data required for wind tunnel testing by the structural engineer
    • Wind tunnel test results
  • Lecture 36 : Wind tunnel test – 2
    • Review of the wind tunnel test report for a building (43 floors) in the United Arab Emirates
  • Lecture 37 : Wind tunnel test – 3
    • Input of wind tunnel test loads into ETABS
  • EXCEL Sheets
    • velocity pressure Without topographic effects (Flat terrain)
    • velocity pressure with topographic effects
    • Gust factor for flexible buildings (Gf)
    • Design wind pressure (p) for (MWFRS)(Directional procedure)-1
    • Design wind pressure (p) for (MWFRS)(Directional procedure )-2
    • Load cases (Directional procedure)
    • Design wind pressure (p) for Open Buildings
    • Design Wind Pressure – (Envelope procedure method)
    • Wind pressure on domes
    • Wind pressure on C&C – Low rise buildings (Walls)
    • Wind pressure on C&C – Low rise buildings (Gable Floors)
    • Wind pressure on C&C – Low rise buildings (Mono slope Floors-1)
    • Wind pressure on C&C – Low rise buildings (Mono slope Floors-2)
    • Wind pressure on C&C – Tall buildings (Walls & floors)
    • Wind pressure on C&C – Circular tanks, Silos, Bins
    • Wind pressure on C&C – Domes
    • Wind pressure on C&C – Arches
    • Wind pressure on C&C – Open buildings with flat roofs
    • Wind pressure on C&C – Attached conopies
    • Wind pressure on C&C – Attached conopies
    • Wind tunnel test results

مقتطفات من شرح م.إيهاب شاكر

عن المحاضر:

نبذة عن م. إيهاب شاكر محمد

بكالوريوس مدني ١٩٩١ خبرة ٢٥ سنة في مجالي التصميم الانشائي والتنفيذ والإشراف لعدد كبير من المشروعات في القاهرة والاسكندرية.

الأسئلة الشائعة عن الكورس

لا، لا يلزم أي حضور مباشر أو التزام بمواعيد ثابتة. جميع الكورسات والدبلومات مسجلة بالكامل بجودة عالية ، مما يتيح لك مرونة تامة في المشاهدة والدراسة في أي وقت ومن أي مكان يناسبك.

كل الداتا مرفوعة على الكلاود الخاص بينا وبتقدر تحملها تحميل مباشر بعد الإشتراك في الكورس.

في نهاية إجتيازك للكورس هتحصل علي شهادة معتمدة من اكاديمية مدني ستور

نوفر طرق دفع متعددة وميسرة لتناسب جميع المهندسين في الوطن العربي والعالم، وتشمل الدفع الإلكتروني المباشر عبر بطاقات الفيزا، الماستركارد، التحويل البنكي، أو انستاباي او تحويل المحافظ لعملائنا داخل مصر.

رخصة تشغيل الكورس أو الدبلومة مخصصة للعمل على جهاز كمبيوتر أو لابتوب واحد فقط لحفظ الحقوق. وفي حال تلف جهازك ، يمكنك دائماً التواصل مع الدعم الفني لإلغاء الترخيص القديم وتفعيل ترخيص جديد لجهازك مجاناً .