Concrete Boom Pump Reach and Setup Radius

A boom pump's advertised reach is a vertical number and a horizontal number that cannot both be achieved at once.

Run the calculator

Example

You enter

You get

Details, formula, and sources

A boom pump's advertised reach is a vertical number and a horizontal number that cannot both be achieved at once, and what a crew needs on a site visit is whether the boom reaches the far corner from the only place the truck can set up. That is a triangle. Treating the envelope as a circle of the boom's total reach gives the horizontal distance available at a working height as the square root of the reach squared less the height squared, and the amount lost to elevation is the number that surprises people reading a spec sheet: a boom advertised at 110 ft gives about 100 ft at 45 ft up. THE CIRCLE IS A SCREEN AND THE MANUFACTURER'S REACH DIAGRAM IS THE TRUTH. A multi-section boom's envelope is not a circle: it has dead zones close in and near the mast, and its reach at a given height depends on which unfolding configuration is used. The circle is good enough to answer whether a pour is plausible from a given setup and much faster than pulling the chart, and it is not good enough to commit to. THE TWO CONSTRAINTS THAT DECIDE A SETUP ARE ALMOST NEVER REACH. Outrigger ground bearing is the first: boom pump outrigger loads are concentrated and large, and one outrigger set over a utility vault, a basement wall, or soft backfill is how a pump goes over. The bearing pressure is reported here so the size of the problem is visible, and sizing the cribbing or mats against an allowable bearing from a geotechnical source is a separate calculation. Power line clearance is the second and it is absolute. A boom is a long conductor swinging near overhead lines, and the required clearances under OSHA 1926.1408 apply to concrete pumps as they do to cranes; a setup that reaches beautifully and puts the boom inside the clearance envelope is not a setup, whatever the reach diagram permits. This does not evaluate boom capacity, the weight of line and concrete in the boom, wind limits on boom operation, or machine stability, all of which are manufacturer limits, and it does not size outrigger mats or address line pressure. The pump manufacturer's reach and load charts, OSHA, and the contractor's competent person govern.

horizontal reach at a height = sqrt(total reach squared - height squared), the circle approximation; outrigger bearing pressure = load / pad area; power line margin = measured distance - the required clearance.

The reach geometry approximation by name, with the manufacturer's reach diagram and OSHA 1926.1408 named as governing. A multi-section boom's real envelope is a published reach diagram with configuration-dependent limits and dead zones, not a circle. Sizing outrigger mats against an allowable bearing needs a geotechnical source and is a separate calculation. The pump manufacturer's reach and load charts, OSHA, and the contractor's competent person govern.

One square root on two numbers off a spec sheet; no reach diagram is reproduced.

Estimate. AHJ and licensed professional govern.

Field names used by the API: boom_reach_ft, required_distance_ft, required_height_ft, boom_centre_offset_ft, outrigger_load_lb, outrigger_pad_area_ft2, power_line_distance_ft, required_line_clearance_ft, reach_at_height_ft, reach_lost_to_height_ft, reach_margin_ft, max_height_at_distance_ft, outrigger_pressure_psf, power_line_margin_ft

Related tools