Supported Codes

Design codes and standards available in MkaPEB.

MkaPEB brings loading standards, seismic provisions, steel member design, cold-formed member checks, reinforced concrete column design, and steel connection design workflows into one connected engineering environment.

Loading standards for snow, wind, crane, and thermal workflows.

MkaPEB supports code-based load generation workflows for environmental and operational actions used in single-storey steel building projects.

Snow Load Generation

The following standards are available:

EN 1991-1-3including National Annexes
ASCE 7-16Minimum Design Loads and Associated Criteria
IS 875:2015Indian Standard loading provisions

Wind Load Generation

The following standards are available:

EN 1991-1-4including National Annexes
ASCE 7-16Minimum Design Loads and Associated Criteria
IS 875:2015Indian Standard loading provisions

Overhead Crane Loads

The following standards are available:

EN 1991-3Actions induced by cranes and machinery
AISC Design Guide 7Industrial buildings: roofs to anchor rods

European National Annexes for Snow and Wind Loads

For snow and wind loads according to European Standards, the following National Annexes are available:

AustriaBelgiumBulgariaCroatiaCyprusCzech RepublicDenmarkFinlandFranceGermanyGreeceIcelandIrelandItalyMalaysiaNetherlandsNorwayPolandPortugalRomaniaRussiaSingaporeSlovakiaSloveniaSouth AfricaSpainSwedenTürkiyeUnited Kingdom

Seismic codes in MkaPEB according to continents.

Seismic provisions are organized by region so engineers can quickly identify the applicable earthquake design workflow for their project location.

Europe

Eurocode 8Included National Annexes

Included National Annexes

AustriaBulgariaCroatiaCyprusCzechiaFinlandGermanyGreeceIcelandItalyPolandPortugalRomaniaSlovakiaSloveniaSpainUnited Kingdom
TEC-2018Turkish Building Earthquake Code
EAK-2000Greek Code for Seismic Resistant Structures
P100-1/2013Romanian Code for Earthquake Resistant Design

Asia

IS 1893:2016Indian Standard: Criteria for Earthquake Resistant Design of Structures
GB 50011:2010Chinese Standard: Code for Seismic Design of Buildings
SBC 301:2016Saudi Arabia: Seismic Provisions in the Saudi Building Code
Dubai 2013United Arab Emirates: Seismic Design Code for Dubai, Dubai Municipality
BNBC 2020Seismic Provisions in the Bangladesh National Building Code
BCP 2021Seismic Provisions in the Building Code of Pakistan
NSCP 2010Seismic Provisions in the National Structural Code of the Philippines
SI 413:2019Israeli Standard: Design of Structures for Earthquake Resistance
Taiwan 2019Seismic Force Requirements for Buildings in Taiwan
Malaysia EC-8 NAMalaysia National Annex to MS EN 1998
Singapore EC-8 NASingapore National Annex to SS EN 1998
TCXDVN 375:2006Vietnamese Earthquake Design Code based on EN 1998

America

ASCE/SEI 7-16USA Standard: Minimum Design Loads for Buildings and Other Structures
ANSI/AISC 341-16USA Standard: Seismic Provisions for Structural Steel Buildings
NBCC 2020Canada: Seismic Provisions in the National Building Code of Canada
INPRES-CIRSOC 103Argentinean Standards for Earthquake Resistant Constructions
NDBS 2006Bolivia: Norma Boliviana de Diseño Sísmico
NCh433:2012Chile: Chilean seismic code
NSR-10Colombia: Reglamento Colombiano de Construcción Sismo Resistente
CRSC 2010Costa Rica: Código Sísmico de Costa Rica
MOC 2008Mexico: Normas Técnicas Complementarias para Diseño por Sismo

Africa

ECP-201:2012Egyptian Code of Practice for Calculation of Loads and Forces in Structures and Buildings, based on EN 1998
RPA-99:2003Algerian Earthquake Resistant Regulations
RPS-2011Morocco: Règlement de Construction Parasismique
SANS 10163-4South Africa: Seismic actions and general requirements for buildings, based on EN 1998

Hot-rolled steel member design standards.

Hot-rolled steel frame elements can be checked using internationally recognized steel design provisions.

ANSI/AISC 360-16Specification for Structural Steel Buildings
EN 1993-1-1:2005Eurocode 3: Design of steel structures — General rules and rules for buildings
IS 800:2007Indian Standard: General Construction in Steel — Code of Practice
CYTHYE-2016Türkiye: Regulation on Design, Calculation and Construction Principles of Steel Structures

Cold-formed steel member design standards.

Cold-formed steel provisions are used for secondary steel members such as purlins and girts.

EN 1993-1-3Eurocode 3: Design of steel structures — Supplementary rules for cold-formed members and sheeting

Reinforced concrete column design standards.

Reinforced concrete provisions are used where concrete columns are applicable in the selected structural system.

ACI 318-14Building Code Requirements for Structural Concrete
EN 1992-1-1Eurocode 2: Design of concrete structures — General rules and rules for buildings
TS 500:2000Turkish Standard: Requirements for Design and Construction of Reinforced Concrete Structures

Steel connection design standards.

Steel connection workflows support bolted and welded joint design according to recognized steel connection provisions.

AISC 360-16 & Design GuidesSpecification for Structural Steel Buildings and related connection design guides
EN 1993-1-8Eurocode 3: Design of steel structures — Design of joints

Need to confirm a project-specific code workflow?

Contact us to review the loading, seismic, material, and connection design standards required for your building project.