These documents require Microsoft Excel. We always effort to show a picture with HD resolution or at least with perfect images. Each spreadsheet contains formulas, reference code sections, and graphic drawings. Grillage models * based on stiffness matrix analysis are available for 1- or 2-beam footbridges, 4-, 6- and 8-beam normal or skewed 1 to 3-span bridge decks, deck slab, abutment and wing walls. The Structural Engineer (thestructuralengineer.info) uses third party cookies to improve our website and your experience when using it. Its content is under intensive development so check regularly, or subscribe to the newsletter, to stay up to date with the latest releases. The entire problem is inclusive on one spreadsheet; the user can see input, formulas, intermediate calculated values, and output on one sheet. These tools were previously packaged together and posted to the TxDOT Engineering Software webpage as UTCGAT - UT Curved Girder Analysis Tools. We don't intend to display any copyright protected images. CAD drawings are available in the Wisconsin engineering CAD drawings section. The e-book edition is accompanied by a downloadable .zip file for the Excel files. Application of excel in any engineering as well as professional sectors is very important. The software are nice and easy on all Win Tablet/Phone. Files > Download Combined Footing Design EXCEL Spreadsheet - CivilEngineeringBible.com (FREE!) He discusses the problems with spreadsheets from the perspective of an academic but a lot of this translates to practising engineers too. The top benefit of the software is VAB Events, which is the same as blockchain. The Texas Board of Professional Engineers protects the health, safety, and welfare of the people in Texas by licensing qualified engineers and by regulating the practice of engineering. Engineering Spreadsheets Finite Element Structural Analysis on an Excel Spreadsheet. This web site provides structural design software which created using Microsoft Windows Excel 2010/2013 or 2016 Office 365. This portion of the site is used to provide you with engineering tools (mostly in the form of Microsoft Excel spreadsheets) to help you understand difficult concepts (or speed up the calculations of difficult concepts). The spreadsheets are divided into the following groups: Lateral Analysis Group. Masonry Design Group. (Based on the End User License Agreement, if a purchaser does not want to update, the purchaser can use the Package on the licensed computer without expire. Most if not all spreadsheets contain macros. Item Details: Today, the spreadsheet is an essential tool for engineers. excel structural spreadsheets free download. Our content is updated every week so please sign up for our newsletter or follow us on Facebook or Twitter to keep up to date with the latest releases and special … See more ideas about structural engineering, civil engineering, civil engineering design. Also, construction materials, shoring system design, water retaining structures, crack width calculations, etc. Structechnique is a provider of low-cost Excel* spreadsheet solutions for civil and structural engineering elements and design related issues. Structural Analysis Excel: Given below, a plethora of existing structural engineering spreadsheets useful for structural engineering design and analysis. spreadsheet form, combining the power of FE method with the versatility of a spreadsheet format. Infolinks is an In Text advertising service: they take my text and create links within it. ($1850), Two Package License for two users with five computers (two Laptops or Tablets/PADs ok). All of our spreadsheets are free to download, and are fully working. Each spreadsheet contains formulas, reference code sections, and graphic drawings. These excel sheets are created following American structural codes (ACI, AISC, etc). Downloads:2057 Analysis Of Ice Loading On Structural Steel Per Asce 7-05 Code If you hover with your mouse over these double underlined links, you will see a small dialog box containing advertisement related to … UT Lift is an easy to use, macro-programmed Excel spreadsheet for determining the behavior during lifting of straight and horizontally curved steel I-girders with one crane and two lift clamps. To find out more about the cookies we use and how to delete them visit our Cookies page. This web site provides structural design software which created using Microsoft Windows Excel 2010/2013 or 2016 Office 365. Low Cost Easy to Use Spreadsheets for Engineering Calculations Available at Engineering Excel Spreadsheets At Engineering Excel Spreadsheets, we have low cost, easy to use spreadsheets for engineering calculations, including pipe flow, flow measurement, stormwater measurement, heat transfer coefficients, open channel flow, structural analysis of beams, and more. Structural engineering programs include wood, masonry and concrete design. Excel is a huge program with a lot of great potential, but how do you know if you’re using it to its fullest capabilities? As an engineer, you’re probably using Excel almost every day. The user is provided with a Microsoft Excel spreadsheet that solves FE two dimensional (2D) frame-type structural engineering problems. Thank you for visiting Structural Design Excel Spreadsheets. The software are nice and easy on all Win Tablet/Phone. Element designs with notes and discussions have added to get comprehensive knowledge. Analysis Of Ice Loading On Structural Steel Per Asce 7-05 Code. ASCE705I is a spreadsheet program written in MS-Excel for the purpose of determining ice loading due to freezing rain on structural steel members per the ASCE 7-05 Code. Mechanical Engineering Spreadsheets. EurocodeApplied.com is a free online service that civil engineers can use to perform structural design calculations according to the latest Eurocodes (EN1990 to EN1998) and the associated European Norms (ENs). Excel, for example, is a powerful spreadsheet with VBA robust programming capabilities that can be a powerful tool for teaching civil engineering concepts. If you found any images copyrighted to yours, please contact us and we will remove it. Bridge Design Group. This spreadsheet is simplistic in comparison to commercial software and much more limited in capabilities, but is Christy provides the tools needed to quickly apply the powerful analytic capability of Microsoft Excel to structural engineering applications. Here is a website that contains a wide range of structural design spreadsheets in a variety of civil engineering disciplines according to multiple codes. Combined Footing Design calculator, Combined foundation design calculator, excel spreadsheet, download civil engineering sheetsfree, free download, 2017,civil engineering, courses, articles The Example is intended for re-use and is loaded with floating comments as well as ActiveX pull-down menus for variable choices. Crack width calculation for (BS 8110 BS 8007) by The Concrete Center, Reinforced Concrete Retaining Wall Design to BS 8110 by The Concrete Center, Continuous Beam Analysis and Design to EC2 by Reinforced Concrete Council, Subframe Analysis to EC2 by Reinforced Concrete Council, Column Chart Generation to BS 8110 by Reinforced Concrete Council, Two Way Slab Design to BS 8110 by Reinforced Concrete Council, Continuous Beam Design to BS 8110 by Reinforced Concrete Council, Staircase Design to BS 8110 by Reinforced Concrete Council, One Way Slab Design to BS 8110 by Reinforced Concrete Council, Advantages and Disadvantages of Reinforced Concrete, Carbonation of Concrete - In-depth Overview, Different Types of Lateral Loads [ All Types on Buildings], Types of Loads on Structures [all different loads], Borehole investigation and Borehole layout planning, Design and Construction of Tunnel Junctions, Geotechnical Investigation - a guide to design. On average a spreadsheets get updated seven times in its life . Beneficial to professionals and college students alike, Engineering with the Spreadsheet is an indispensable resource for structural engineers. The designer must understand the assumptions and calculations contained in the spreadsheets and is responsible for their use. Application of excel in any engineering as well as professional sectors is very important. The spreadsheet is used to teach all the steps in a finite element problem. Structural Guide © 2021. I just watched an interesting talk on youtube by Colin Caprani who's a lecturer in structural engineering. Share. mec-engineering-spreadsheets.com Mechanical Engineering Spreadsheets ; Excel & VBA. Integral or ‘ladder’ type decks can also be analysed using rotational springs … Structural loads, structural analysis and structural design are simply explained with the worked example for easiness of understanding. TurboExcel: Compile Excel Formulas & VBA Savvysoft introduces TurboExcel, the utility for compiling your Excel spreadsheet (cell formulas and VBA code) into C++ code. Download from so many useful civil engineering files for free! have discussed in addition to other aspects. It doesn’t matter what industry you are in; Excel is used EVERYWHERE in engineering. Element designs with notes and discussions have added to get comprehensive knowledge. On this website you will find Excel spreadsheets for Architects, Contractors, Civil and Structural Engineers (professionals and students). Given below, a plethora of existing structural engineering spreadsheets useful for structural engineering design and analysis. Foundation Design Group. It is free to download, by click software name, for limited version (demo only). ), Two Story Moment Frame Analysis using Finite Element Method, X-Braced Frame Analysis using Finite Element Method, Wind Analysis for Open Structure (Solar Panels) Based on ASCE 7-16, 10 & 05, Wind Load, on Roof Screen / Roof Equipment, Based on ASCE 7-16, 10 & 05, Axial Capacity of 1 1/2" Type "B" Roof Deck Based on ICBO ER-2078P, Column Deformation Compatibility Design using Finite Element Method, Discontinuous Shear Wall Analysis Using Finite Element Method, Flexible Diaphragm with an Opening Analysis, Handrail Design Based on AISC 360-10/16 & ACI 318-19, Interior Wall Lateral Forces Based on 2018 IBC / 2019 CBC, Live Load Reduction Based on ASCE 7-16, 2018 IBC / 2019 CBC, Support Design, for New Loads on Existing Roof, Based on ASCE 41-17, AISC 360-16 & ACI 318-19, Shear Wall Analysis for Shear Wall with Opening Using Finite Element Method, Relative Rigidity Determination for Shear Wall with New Opening, Rigidity for Shear Wall & Shear Wall with Opening Using Finite Element Method, Sign Design Based on AISC 360-10/16, ACI 318-19, and IBC 1807.3, Wind Analysis for Freestanding Wall & Sign Based on ASCE 7-16, 10 & 05, Snow Load Analysis Based on ASCE 7-16, 10, 05, & UBC, Lateral Force for One-Story Wall Based on 2019 CBC, Lateral Force for One-Story Wall Based on 2019 CBC/2018 IBC, High-Rise Structural Embedded Design Based on 2019 CBC/2018 IBC, Wind Girt Deflection Analysis of Wood, Metal Stud, and/or Steel Tube, Lateral Loads of Storage Racks, with Hilti & Red Head Anchorage, Based on ASCE 7-16, Wind Analysis for Building with h < 60 ft, Based on 2018 IBC/ASCE 7-16, Suspended Ceiling Seismic Loads Based on ASCE 7-16, Wind Analysis for Tornado and Hurricane Based on 2019 CBC/2018 IBC 423 & FEMA 361/320, Stiffness Matrix Generator for Irregular Beam/Column, Lateral Drift Mitigation for Cantilever Column (Monorail Column) using Post-Tensioning, Blast/Explosion Deformation Mitigation for Gravity Column using Post-Tensioning, Wind Design for Rooftop Solar Panels Based on ASCE 7-16, Wind Analysis Based on ASCE 7-10, Including Roof Solar Panel Loads, Self-Centering Lateral Frame Design Based on ASCE 7-16, AISC 360-10/16 & ACI 318-19, General Beam Analysis, including Lateral-Torsional Buckling Length, Wind Analysis for Trussed Tower Based on ASCE 7-16, Post-Tensioned Lateral Frame Analysis using Finite Element Method, Beam Strengthening Analysis Using External Post-Tensioning Systems, Lateral Drift Compatibility Analysis using Finite Element Method, Seismic Analysis for Sloped Flexible Diaphragm, Two-Way Floor Vibration Design Based on The Structural Engineer, Vol. 94-1, 2016, Retrofit Soft, Weak, or Open-Front Story Based on FEMA P807/ASCE 41-17 (LA Ordinance 183893 & 184081), Four Story Moment Frame Analysis using Finite Element Method, Lateral Loads of 4 Level Shelving, with Hilti Anchorage, Based on ASCE 7-16, Box Moment Frame Analysis for Enhanced/New Wall Opening, Three, Two, and One Story Comparison of Seismic and Wind Based on 2018 IBC / 2019 CBC, Flexible Diaphragm Retrofit Design with Tension Rod Cross Bracing, Base Isolated Building Design Based on ASCE 7-16, Wind Load on Canopy Based on ASCE 7-16 Section 30.11, Seismic Analysis Based on 2019 CBC/2015 IBC (Equivalent Lateral Force Procedure, ASCE 7-10), Wind Analysis for Bin or Silo, Supported by Columns, Based on ASCE 7-16, Seismic Analysis for Family Dwellings Based on 2018 IBC / 2019 CBC & ASCE 7-16, Reversed Lateral Frame Design Based on ASCE 41-17 & 7-16, AISC 360-16 & ACI 318-19 (LA Ordinance 183893 & 184081), Wind Analysis for Open Arch Roof Based on ASCE 7-16, Knee Braced Moment Resisting Frame (KBRF) Analysis using Finite Element Method, Green Roof Seismic Analysis Based on 2018 IBC, ASCE 41-17 & ASCE 7-16, Pole Mount Clamp Design Based on ACI 318-19 & AISC 360-16, Ponding Design for Roof Beam Based on 2018 IBC, 2019 CBC, & AISC 360-16, Typical Truss Analysis by Finite Element Method Based on 2018 IBC / 2019 CBC, Fink Truss Analysis by Finite Element Method Based on 2018 IBC / 2019 CBC, Howe Truss Analysis by Finite Element Method Based on 2018 IBC / 2019 CBC, Attic Truss Analysis by Finite Element Method Based on 2018 IBC / 2019 CBC, Flat Truss Analysis by Finite Element Method Based on 2018 IBC / 2019 CBC, Solar Carport Pole & Footing Design Based on AISC 360-16, ACI 318-19, and 2018 IBC 1807.3, Masonry Shear Wall Design Based on 2019 CBC Chapter A (both ASD and SD), Masonry Shear Wall Design Based on TMS 402-16/13 & 2018 IBC (both ASD and SD), Fastener Anchorage Design in Masonry Based on TMS 402-16/13, Masonry Flush Wall Pilaster Design Based on 2019 CBC Chapter A, Masonry Flush Wall Pilaster Design Based on TMS 402-16/13 & 2018 IBC, Design of Masonry Bearing Wall with Opening Based on TMS 402-16/13, Design for Bending Post at Top of Wall, Based on TMS 402-16/13, Development & Splice of Reinforcement in Masonry Based on TMS 402-16/13 & 2018 IBC & 2019 CBC, Elevator Masonry Wall Design Based on 2019 CBC Chapter A & 2018 IBC, Design for Girder at Masonry Wall Based on TMS 402-16/13, Masonry Wall Design at Horizontal Bending Based on TMS 402-16/13, Masonry Beam Design Based on TMS 402-16/13, Allowable & Strength Design of Masonry Bearing Wall Based on 2019 CBC Chapter A, Allowable & Strength Design of Masonry Bearing Wall Based on TMS 402-16/13, Masonry Column Design Based on 2019 CBC Chapter A, Masonry Column Design Based on TMS 402-16/13 & 2018 IBC, Beam to Wall Anchorage Design Based on TMS 402-16/13, Collector to Wall Connection Design Based on TMS 402-16/13, Hybrid Masonry Wall Design Based on TMS 402-16/13, Post-Tensioned Masonry Shear Wall Design Based on TMS 402-16/13 (LEED Gold), Masonry Shear Wall with Opening Design Using Finite Element Method, Anticipated Cracking Design of Masonry Wall Based on TMS 402-16, Existing Column Enhancement Based on 2015 IEBC, ASCE 41-17 & ACI 318-19/TMS 402-16, Existing Wall Enhancement Based on 2015 IEBC, ASCE 41-17 & ACI 318-19/TMS 402-16, Design for Grillage Beam Masonry Wall Based on TMS 402-16, Masonry Plate/Shell Element Design (ASD) Based on 2018 IBC & TMS 402-16, To Fix Sagging Girder, by Bent HSS Tube Arch, Based on NDS 2018 & AISC 360-16, To Fix Sagging Beam, Using External Post-Tensioning Systems, Based on NDS 2018, Perforated Shear Wall Design Based on 2018 IBC / 2019 CBC / NDS 2018, Wood Shear Wall with an Opening Based on 2018 IBC / 2019 CBC / NDS 2018, Gravity Wood Beam Design Based on NDS 2018, Connection Design for Wall & Diaphragm Based on 2018 IBC / 2019 CBC, Double Joist Design for Equipment Based on NDS 2018, ICC PFC-4354 & PFC-5803, Equipment Anchorage to Wood Roof Based on NDS 2018 / 2018 IBC / 2019 CBC, Lag Screw Connection Design Based on NDS 2018, Toe-Nail Connection Design Based on NDS 2018, Top Plate Connection Design Based on NDS 2018, Wood Joist Design Based on NDS 2018 / NDS 01, ICC PFC-4354 & PFC-5803, Shear Wall Design Based on 2018 IBC / 2019 CBC / NDS 2018 (Why Ev NOT Applied? These excel sheets are created following American structural codes (ACI, AISC, etc). Founded in 1990, Excel Engineering, Inc. is a full-service, employee-owned design firm located in Fond du Lac, Wisconsin that has grown to include over 200 professional architects, engineers and associates. (The blockchain doesn't disrupt databases, but it disrupts how databases get SYNCHRONIZED between each other.) ... Spreadsheets. But if the purchaser wants to update new IBC/CBC Package license, including new software that released from the purchased date, the purchaser has to pay the upgrading fee within each year). Free Structural spread sheets for beam design, slab design, column design, foundation design and many others designs can be download from this page. Slope (Wild Fired Mountain) Stability Analysis Based on AASHTO 17th & 2018 IBC, Basement Concrete Wall Design Based on ACI 318-19, Flagpole Footing Design Based on 2018 IBC Chapter 18, Masonry Retaining / Fence Wall Design Based on TMS 402-16/13 & ACI 318-19, Concrete Retaining Wall Design Based on ACI 318-19, Retaining Wall Design, for Masonry Top & Concrete Bottom, Based on TMS 402-16/13 & ACI 318-19, Concrete Pier (Isolated Deep Foundation) Design Based on ACI 318-19, Drilled Cast-in-place Pile Design Based on ACI 318-19, Pile Cap Design for 4, 3, 2-Piles Pattern Based on ACI 318-19, Determination of Pile Cap Balanced Loads and Reactions, Design of Conventional Slabs on Expansive & Compressible Soil Grade Based on ACI 360, Caisson Design Based on 2018 IBC & 2019 CBC, Eccentric Footing Design Based on ACI 318-19, Basement Masonry Wall Design Based on TMS 402-16/13, Basement Column Supporting Lateral Resisting Frame Based on ACI 318-19, Grade Beam Design for Moment Resisting Frame Based on ACI 318-19, Grade Beam Design for Brace Frame Based on ACI 318-19, Two Pads with Grade Beam Design Based on ACI 318-19 & AISC 360-10/16, Circular Footing Design Based on ACI 318-19, Combined Footing Design Based on ACI 318-19, Design of Footing at Piping Based on ACI 318-19, Soil Pressure Determination for Irregular Footing, Plain Concrete Footing Design Based on ACI 318-19, Restrained Retaining Masonry & Concrete Wall Design Based on TMS 402 & ACI 318, Retaining Wall Design Based on 2019 CBC Chapter A, Temporary Tank Footing Design Based on ACI 318-19, Under Ground Well Design Based on ACI 350-06 & ACI 318-19, Footing Design for Stud Bearing Wall Based on 2018 IBC / ACI 318-19, Footing Design of Shear Wall Based on ACI 318-19, Fixed Moment Condition Design Based on ACI 318-19, Concrete Floodway Design Based on ACI 350-06 & ACI 318-19, Lateral Earth Pressure of Rigid Wall Based on AASHTO 17th & 2018 IBC, Sheet Pile Wall Design Based on 2018 IBC / 2019 CBC / ACI 318-19, Composite Element (Tension Pile) Design Based on AISC 360-10/16 & ACI 318-19, Seismic Earth Pressure of Deep Stiff Wall Based on FEMA P-750 & AASHTO/IBC, Free Standing Masonry & Conctere Wall Design Based on TMS 402-16/13 & ACI 318-19, Rectangular Machine or Tank Footing Design Based on ACI 318-19, Sheet Pile Wall, with Tieback Anchors, Design Based on AASHTO (HB-17), 2018 IBC & ACI 318-19, Screw Pile Design Based on 2018 IBC & AISC 360-16, Design of PT Slabs on Expansive Soil Ground Based on PTI DC10.5-12 & PTI 3rd Edition, Underground Utilities Way Design Based on AASHTO-17th & 2018 IBC, Landslide Repair Design Based on 2018 IBC, ACI 318-19 & AASHTO 17th, Ring Foundation Design Based on 2018 IBC & ACI 318-19, Driven Precast Concrete Pile Design Based on 2018 IBC & ACI 318-19, Foundation Design for Dynamic Equipment Based on ACI 351.3 & ACI 318-19, Counterfort Retaining Wall Design Based on 2018 IBC & ACI 318-19, Retaining Wall Repair Design Based on AASHTO/2018 IBC & TMS 402-16, RC Mat Slab Design Based on 2018 IBC, ACI 318-19, AASHTO 17th Edition & ACI 360, Trapezoidal Loads Retaining Wall Design Based on ACI 318-19, Tree Root Foundation Design Based on AASHTO (HB-17), 2018 IBC & 2019 CBC, Elastic Strip Foundation Analysis using Finite Element Method Based on 2018 IBC, Design of PT Slabs with Rebar Stiffening Beam Based on ACI 318-19, PTI DC10.5-12 & PTI 3rd Edition, Flexural & Axial Design for Custom Metric Bars Based on Linear Distribution of Strain (ACI 318-19), Voided Two-Way Slab Design Based on ACI 318-19, Base Plate and Group Anchors Design Based on ACI 318-19 & AISC 360-10/16, Anchorage to Pedestal Design Based on ACI 318-19 & AISC 360-10/16, Circular Column Design Based on ACI 318-19, Concrete Column Design Based on ACI 318-19, Super Composite Column Design Based on AISC 360-10/16 & ACI 318-19, Special Concrete Shear Wall Design Based on ACI 318-19 & 2019 CBC Chapter A, Ordinary Concrete Shear Wall Design Based on ACI 318-19, Corbel Design Based on 2018 IBC / ACI 318-19, Typical Member Section (Non Deep Beam) Design Based on ACI 318-19, Design for Equipment Anchorage Based on ASCE 7-10 Supplement 1 & 2019 CBC Chapter A, Verify Existing Concrete Shear Wall Based on ASCE 41-17 / 2019 CBC / 2018 IBC, Shear Friction Reinforcing Design Based on ACI 318-19, Pipe Concrete Column Design Based on ACI 318-19, Design of Post-Tensioned Concrete Floor Based on ACI 318-19, Concrete Slab Perpendicular Flexure & Shear Capacity Based on ACI 318-19, Voided Section Design Based on ACI 318-19, Concrete Diaphragm in-plane Shear Design Based on ACI 318-19, Seismic Design for Special Moment Resisting Frame Based on ACI 318-19, Special Reinforced Concrete Shear Wall Design Based on ACI 318-19 & 2018 IBC, Suspended Anchorage to Concrete Based on 2018 IBC & 2019 CBC, Wall Pier Design Based on 2019 CBC & 2018 IBC, Design for Concrete Beam with Penetration Based on ACI 318-19, Column Supporting Discontinuous System Based on ACI 318-19, Plate/Shell Element Design Based on ACI 318-19, Concrete Diaphragm Design for a Discontinuity of Type 4 out-of-plane offset irregularity, Concrete Silo / Chimney / Tower Design Based on ASCE 7-16, ACI 318-19 & ACI 313-16, Concrete Beam Design, for New or Existing, Based on ACI 318-19, Anchorage Design, with Circular Base Plate, Based on ACI 318-19 & AISC 360-10/16, Composite Beam/Collector Design, without Metal Deck, Based on AISC 360-10/16 & ACI 318-19, Multi-Story Tilt-Up Wall Design Based on ACI 318-19, Composite Moment Connection Design Based on ACI 318-19, Development & Splice of Reinforcement Based on ACI 318-19, Two-Way Slab Design Based on ACI 318-19 using Finite Element Method, Existing Concrete Beam Enhancement Based on 2015 IEBC, ASCE 41-17 & ACI 318-19, Existing Concrete Floor Enhancement Based on 2015 IEBC, ASCE 41-17 & ACI 318-19, Bearing Wall Design of Insulated Concrete Form (ICF) Based on ACI 318-19 & 2018 IBC, Lintel Design of Insulated Concrete Form (ICF) Based on ACI 318-19 & 2018 IBC, Design for Connection to Wall Based on AISC 360-16 & ACI 318-19, Irregular Section Design of Concrete Beam/Column Based on & ACI 318-19, Bridge Design and Repair, by Added New Arch, using Finite Element Method, Bridge Column Design Based on AASHTO 17th & ACI 318-19, Bridge Design for Prestressed Concrete Box Section Based on AASHTO 17th Edition & ACI 318-19, Concrete Tunnel Design Based on AASHTO-17th & ACI 318-19, Prestressed Double Tee Design Based on AASHTO 17th Edition & ACI 318-19, Concrete Box Culvert Design Based on AASHTO 17th Edition & ACI 318-19, Steel Road Plate Design Based on AASHTO 17th Edition & AISC 360-10/16 using Finite Element Method, Flange Tapered Plate Girder Design Based on AISC 360-10/16, Prestressed Concrete Circular Hollow Pole/Pile Design Based on ACI 318-19 & AASHTO 17th, Falsework Design for Steel Girder Bridge Based on NDS 2018 & AASHTO 17th, Polygon Section Member (Tubular Steel Pole) Design Based on ASCE 48-14, Mounting Design on Concrete Wall/Tunnel Based on FEMA E-74, 2018 IBC, and 2019 CBC Chapter A, Truss Analysis using Finite Element Method, Prestressed Concrete Girder Design for Bridge Structure Based on AASHTO 17th Edition & ACI 318-19, Vehicular Barrier Wall Design Based on ASCE 7-16 & ACI 318-19, Footbridge Vibration Design Based on The Structural Engineer, Vol. Your blocked IP address is: 40.77.167.44 The hostname of this server is: server179.web-hosting.com You can try to unblock yourself using ReCAPTCHA: We have hundreds of excel spreadsheets designed to complete a wide range of civil and structural engineering calculations. 94-1, 2016, Design of Mechanically Stabilized Earth Wall Based on AASHTO/2018 IBC & TMS 402-16/13, Elastomeric Bearing Bridge Analysis using Finite Element Method, Cable Structure Design Based on ASCE 19-10 & AASHTO 17th, Arch Bridge Analysis using Finite Element Method, Arch Bridge Limits Analysis Based on ACI 318-19, AISC 360-16 & AASHTO-17th, Bollard/Flagpole Anchorage Design Based on ACI 318-19, Wildlife Crossing Design Based on AASHTO-17th & ACI 318-19, Curved Steel HSS (Tube, Pipe) Member Design Based on AISC 360-16, Articulating Concrete Block (ACB) Design Based on NCMA ACB Manual 2nd Edition, Hybrid Retaining Structural Design Based on 2018 IBC/AASHTO, TMS 402-16 & AISC 360-16, Super Composite Girder Design Based on 2019 CBC/2018 IBC, AISC 360-16 & ACI 318-19, Tower Drift Analysis for Cable Stayed Bridge by Finite Element Method, Masonry Vault Design Based on 2018 IBC & TMS 402-16, Subgrade Design for Heavy Haul Railway on Soft Soil Based on AASHTO & ACI 318-19, Underground Rectangular Section Design using Finite Element Method, Seismic Analysis Based on 2018 IBC/ASCE 7-16 (Equivalent Lateral Force Procedure & Modal Response Spectrum Analysis), Wind Analysis for Shade Open Structure Based on ASCE 7-16, 10 & 05, Wind Analysis for Circular Structure Based on ASCE 7-16, MCE Level Seismic Design for Metal Pipe/Riser Based on ASCE 7-16 & AISI S100, Rotation Analysis of Rigid Diaphragm Based on 2018 IBC / 2019 CBC (Why not Semi-Rigid? These links are part of a pay per click advertising program called Infolinks. All Rights Reserved. Engineering spreadsheets are used across multiple different jobs by many different engineers for several years. Sling Pro, the industry standard lifting sling design program is … ), Tables for Wood Post Design Based on NDS 2018, Wood Diaphragm Design for a Discontinuity of Type 4 out-of-plane offset irregularity, Wood Post, Wall Stud, or King Stud Design Based on NDS 2018, Composite Strong Wall Design Based on ACI 318-19, AISI S100/SI-10 & ESR-3064P, Connection Design for Bending Post at Concrete Column Based on NDS 2018 & ACI 318-19, Curved Wood Member (Wood Torsion) Design Based on NDS 2018, Wood Member (Beam, Column, Brace, Truss Web & Chord) Design Based on NDS 2018, 4E-SMF with Wood Nailer Design Based on AISC 358-10/16 & NDS 2018, Hybrid Member (Wood & Metal) Design Based on NDS 2018, AISI S100 & ESR-3064P, Beam Reinforcement Design by Finite Element Method, Wood Pole or Pile Design Based on NDS 2018, Shear Wall Design, using Laminated Bamboo, Based on NDS 2018, Wood Repair & Protection Design Based on 2016 CEBC, ASCE 41-17, ACI 318-19 & NDS 2018, Shear Wall Design, using Cross-Laminated Timber (CLT), Based on NDS 2018, Mechanically Laminated Decking Design Based on 2019 CBC/2018 IBC 2304.9, Two-Way Floor Design Based on NDS 2018, using Cross-Laminated Timber (CLT), by FEM, Flitch Plate Beam Design Based on AISC 360-16 & NDS 2018, Sill Plate/Nailer Connection Design Based on NDS 2018, Cantilever Wood Diaphragm Design Based on NDS 2018, Notching Design for Wood and Steel Beam Based on 2018 IBC, NDS 2018, & AISC 360-16, Filled Composite Column Design Based on AISC 360-10/16 & ACI 318-19, Cellular Beam Design Based on AISC 360-10/16, Double Angle Capacity Based on AISC 360-10/16, Metal Member Design Based on AISI S100/SI-10 (2018 IBC) & ESR-3064P, Seismic Design for Special Moment Resisting Frames Based on 2019 CBC, Seismic Design for Special Concentrically Braced Frames Based on CBC/IBC & AISC 341-10/16, Bracing Connection Design, with Perpendicular Gusset, Based on CBC/IBC & AISC 341-10/16, Connection Design for Column above Beam, Based on AISC Manual & AISC 360-10/16, Steel Gravity Beam Design Based on AISC 360-10/16, WF Simply Supported Beam Design with Torsional Loading Based on AISC 360-10/16, HSS (Tube, Pipe) Member Design with Torsional Loading Based on AISC 360-10/16, Fixed Bolted Joint, with Beam Sitting on Top of Column, Based on AISC 358-10/16 8ES/4ES & FEMA-350, Typical Bracing Connection Capacity Based on AISC 360-10/16, Buckling-Restrained Braced Frames Based on AISC 360-10/16 & AISC 341-10/16, Bolted Seismic Moment Connection Based on AISC 341-10/16, 358-10/16, 360-10/16 & FEMA-350, Bolted Non-Seismic Moment Connection Based on AISC 341-10/16, 358-10/16, 360-10/16 & FEMA-350, Channel Steel Member Capacity Based on AISC 360-10/16, Composite Collector Beam with Seismic Loads Based on 2019 CBC / 2018 IBC, Composite Beam Design Based on AISC Manual 9th, Composite Beam Design Based on AISC 360-10/16 / 2018 IBC / 2019 CBC, Composite Girder Design Based on AISC 360-10/16 / 2018 IBC / 2019 CBC, Drag Connection Based on AISC 360-10/16 & AISC 341-10/16, Seismic Design for Eccentrically Braced Frames Based on 2019 CBC & AISC 341-10/16, Seismic Design for Eccentrically Braced Frames Based on 2018 IBC & AISC 341-10/16, Enhanced Composite Beam Design Based on AISC 360-10/16 / 2018 IBC / 2019 CBC, Enhanced Steel Beam Design Based on AISC 360-10/16, Exterior Metal Stud Wall Design Based on AISI S100/SI-10 & ESR-3064P, Depressed Floor Deck Capacity (Non-Composite), Metal Shear Wall Design Based on AISI S100/SI-10, ER-5762 & ESR-3064P, Metal Shear Wall with an Opening Based on AISI S100/SI-10, ER-5762 & ESR-3064P, Metal Z-Purlins Design Based on AISI S100/SI-10, Ordinary Concentrically Braced Frames Based on 2019 CBC & AISC 341-10/16, Ordinary Concentrically Braced Frames Based on 2018 IBC & AISC 341-10/16, Web-Tapered Cantilever Frame Design Based on AISC-ASD 9th, Appendix F, Intermediate/Ordinary Moment Resisting Frames Based on 2019 CBC, Intermediate/Ordinary Moment Resisting Frames Based on 2018 IBC, Plate Girder Design Based on AISC 360-10/16, Rectangular Section Member Design Based on AISC 360-10/16, Design of 1 1/2" Type "B" Roof Deck Based on ICBO ER-2078P, Base Plate Design Based on AISC 360-10/16, Special Moment Resisting Frames Based on 2018 IBC, AISC 341-10/16 & 358-10/16, Seismic Design for Special Plate Shear Wall Based on AISC 341-10/16 & AISC 360-10/16, Steel Column Design Based on AISC 360-10/16, Steel Stair Design Based on AISC 360-10/16, Simply Supported Member of Triple W-Shapes Design Based on AISC 360-10/16, Portal Frame Analysis using Finite Element Method, Web Tapered Portal Design Based on AISC-ASD 9th Appendix F and/or AISC Design Guide 25, Web Tapered Frame Design Based on AISC-ASD 9th Appendix F and/or AISC Design Guide 25, Web Tapered Girder Design Based on AISC-ASD 9th Appendix F and/or AISC Design Guide 25, Weld Connection Design Based on AISC 360-10/16, Check Capacity of WF Beam at Opening Based on AISC 360-16, Check Capacity of HSS Tube Beam at Opening Based on AISC 360-16, Beam Bolted Splice Design Based on AISC 360-10/16, Composite Plate Shear Wall Design Based on AISC 341-16 & ACI 318-19 - Concrete Filled (C-PSW/CF), Multi-Tiered Braced Frame Design Based on AISC 341-16, Tube, Pipe, or WF Member Capacity Based on AISC 360-10/16, T-Shape Member Capacity Based on AISC 360-10/16, Cantilever Column & Footing Design Based on AISC 360-16, ACI 318-19, and IBC 1807.3, Light Gage Truss Design Based on AISI S100/SI-10 & ESR-3064P, Sleeve Joint Connection Design, for Steel Cell Tower / Sign, Based on AISC 360-10/16, Moment Connection Design for Beam to Weak Axis Column Based on AISC 360-10/16, Beam Connection Design Based on AISC 360-10/16, Seismic Bi-axial Moment Frame Design Based on AISC 358-10/16 & ACI 318-19, Bolt Connection Design Based on AISC 360-10/16, Cantilever Column System (SCCS/OCCS) Design Based on AISC 341-10/16/360-10/16 & ACI 318-19, Non-Prismatic Composite Girder Design Based on AISC 360-10/16 / 2019 CBC / 2018 IBC, Endplate Splice Moment Connection Based on AISC 341-10/16, 358-10/16, 360-10/16 & FEMA-350, Flexure Capacity for Z-Profile Tread and Riser Based on AISC 360-10/16, Strong-Column Weak-Beam Design Based on AISC 341-10/16 and AISC 360-10/16, Thin Composite Beam/Collector Design Based on AISC 360-10/16 & ACI 318-19, Angle Steel Member Capacity Based on AISC 360-10/16, Filled Composite Column (FCC) Design for C-SMF/C-IMF/C-OCF Based on ASCE 7-16, AISC 341-16 & ACI 318-19, Plastic Mechanism Analysis, for Capacity-Limited Horizontal Seismic Load Effect, Based on AISC 341-16, Double-Tee Connection Design for SMF Based on AISC 341-10/16, 358-16, 360-10/16, Steel Corbel Design Based on AISC-ASD 9th, Appendix F, Proportions and Stiffeners Design for I-Shaped Member Based on AISC 360-16, Moment Connection Design for Beam to Tube Column Based on AISC 360-16, Prestressed Steel Arch Design Based on 2018 IBC/2019 CBC & AISC 360-16, Web-Tapered Roof Girder Design Based on AISC-ASD 9th Appendix F and 2018 IBC/2019 CBC 1605, Design for Fully Restrained Moment Connection across Girder Based on AISC 360-10/16, Aluminum I or WF Member Capacity Based on Aluminum Design Manual 2015 (ADM-I), Aluminum C or CS Member Capacity Based on Aluminum Design Manual 2015 (ADM-I), Aluminum RT Member Capacity Based on Aluminum Design Manual 2015 (ADM-I), Aluminum PIPE Member Capacity Based on Aluminum Design Manual 2015 (ADM-I), Glass Wall/Window/Stair Design, Based on ASTM E1300, using Finite Element Method, P-Delta Effect Analysis by Finite Element Method, Single Package License for single user with one computer (one Laptop or Tablet/PAD ok). 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