Dimensions
Length, area and volume per wall, floor, roof, column and beam. Gross and net, with openings taken into account.
Data from models and drawings
A model is not a picture. In a BIM model every building element carries dimensions, material, storey and classification; a 3D CAD assembly already contains the entire bill of materials; the NC files of a steel structure hold the profile, length and holes of every position; and in a 2D drawing every block can be counted and every contour measured. After the design stage that data is usually left unused, while estimating, purchasing and work preparation enter the same information again by hand. HIDAIA extracts the data from the model and passes it on to the rest of your process.
In your browser
Choose a building model (IFC), a 3D assembly (STEP), a 2D drawing (DXF) or the NC files of a steel structure (DSTV-NC1), and you get quantities, a bill of materials, counts or a cutting list. Do you only have a PDF? Then you set the scale and measure lengths and areas yourself.
The model does not leave your computer. Reading and calculating take place entirely in your browser. Nothing is uploaded and nothing is stored.
This software uses facilities of Open CASCADE Technology. They are used to read STEP files; IFC files are read with web-ifc; we read DXF and DSTV-NC1 with our own code; we display PDF drawings with pdf.js. Licences and source code.
The examples are fictional and were made by us. Large models work best on a desktop or laptop; in Firefox a large STEP model takes noticeably longer. Save a DWG drawing as DXF in AutoCAD first.
Result
This trial shows what is in your files. In an assignment we supply the same data where you need it: as an Excel file, or directly in the format of the estimating, ERP or planning package you work with.
Rich data
It is already in there, because the designer needed it to design. If you extract it, you do not have to work it out again further down the line.
Length, area and volume per wall, floor, roof, column and beam. Gross and net, with openings taken into account.
Which material, and for composite constructions every layer with its thickness. From that follows the volume per material.
Which storey a building element is on, whether it is external or internal, load-bearing or not. The basis for phasing and ordering moments.
The NL-SfB code and the type. With these a building element connects to your own cost breakdown or article file.
Which parts are in which assembly, and how many times. Four wheel sets with four bolts each is sixteen bolts: the bill of materials works itself out.
Volume and surface area from the real geometry, not estimated. From that follow the weight per material and the surface area to be treated.
The bounding dimensions per part. A first indication for cutting length, sheet size or packaging.
The part name or article number the designer assigned. With these the bill of materials connects to your ERP or purchasing list.
Every repeated component that has been drawn as a block can be counted: columns, supports, doors, light fittings. How many times, and on which layer.
What the designer attached to a block, such as type, height or make. With these the count splits out per variant.
The line length per layer and the area of every closed contour: metres of gutter, square metres of bay or floor.
A drawing does not know that a block is a column. We record that translation with you once; after that every subsequent drawing counts itself.
A PDF that comes from a drawing package contains the lines as vectors. Measuring points therefore snap to the real vertices, not to a pixel nearby.
The scale is often stated in the title block. Calibrating on one dimensioned line is more reliable: a PDF has not always been produced at true size.
You click the line or the area; the tool calculates metres and square metres and adds them up.
Everything the drawing package knew disappeared when the PDF was made. That is why this remains measuring, not counting. If you receive the model itself, it happens automatically.
Which profile or which plate, in which steel grade. Added up per profile, that is the purchasing list.
The length per piece and how many pieces. From that follow the cutting list and the total metres per profile.
Every hole with its diameter and position. Counted per diameter, you know what has to be drilled or punched.
Weight per metre or per square metre, plus order, drawing and position number for the connection to your ERP.
From practice
If you adopt quantities blindly, you adopt the errors too. That is why our reader recalculates every building element from its 3D shape and reports where model and shape contradict each other.
Further in your process
The gain lies in what no longer has to be done by hand afterwards. Which step yields the most for you depends on how you work now.
Where we stand now. The reader works with IFC (IFC2x3 and IFC4), tested on exports from Revit; with STEP (AP203, AP214 and AP242), tested on public test models up to 15 MB; with DSTV-NC1, tested on public test files from three packages; and with DXF (R12 up to and including 2018), for which the result on ten test drawings equals that of an independent library. On PDF drawings you measure yourself; on our example drawing with known dimensions the result matches to the millimetre. We have not yet tested STEP, NC1, DXF and PDF on files from day-to-day practice. That is exactly where the surprises are; we would be glad to read those together with you. We do not read DWG directly: save the drawing as DXF.