System Prototypes & Sizing workflow navigator

The System Prototypes & Sizing Navigator walks users through the process of ApacheHVAC system setup and sizing. It facilitates acquiring the blank Loads Data spreadsheet, HVAC profiles, and other data; loading selected prototype systems from the library into an ApacheHVAC file named proposed.asp; assigning rooms/zones to the systems; entering schedules of operation, control set points, setback control strategies, and other common design parameters; autosizing the systems; and finally generating and viewing sizing reports. As with all other VE workflow navigators, this navigator supports entering notes for later reference as well as tracking the completion of each step.
System Prototypes & Sizing Navigator provides a two-stage (room/zone level then system/plant level) autosizing process that includes tools for calculating ASHRAE 62.1 ventilation rates, numerous opportunities for user intervention, and ultimately system sizing reports. System performance can then be analyzed using the full array of VE simulation tools. Pre-defined systems can also be further modified in ApacheHVAC and resized at one or both levels, as needed. This facilitates more efficient exploration and comparison of system alternatives in all stages of design.
System Prototypes & Sizing Navigator
 
System Prototypes & Sizing workflow summary
The navigators provide a step-by-step process to guide users through system setup, load calculations, sizing, and generating system sizing reports in preparation for simulation. The summary of this process below is followed by more detailed descriptions of each step.
The user can repeatedly re-size systems after changes to the building model. So long as individual autosized values are manually overridden within the spreadsheet, these overrides can be maintained in future sizing runs and sizing data assignments.

The user is free, as always, to manually edit component and controller parameters and inputs within ApacheHVAC. While appropriate knowledge and experience are highly recommended, system, component, and controller configurations can also be substantially modified without breaking the autosizing functionality.
Finally, the user returns to the ApacheThermal view to simulate the building and systems. Whether in system-level autosizing or subsequent simulation for thermal comfort and energy analyses, there is interaction between the building zone loads (outdoor conditions, solar gain, room air nodes, surface temperatures, constructions, and internal gains), detailed solar calculations (if SunCast has been run), detailed daylighting data for sensors placed in the spaces (when RadianceIES sensors have been set up), bulk-airflow modeling of natural ventilation (when MacroFlo openings are included), and ApacheHVAC systems at each simulation time step. Time steps can be anywhere from 30 minutes for rough initial runs down to 1 minute for detailed analyses, with 6 minutes recommended for final runs in most projects.
Simulations can be carried out for the entire building project or just a small subset of it, as might be desirable when setting up and optimizing system configurations and zone-level controls. Having optimized the system using a small number of select zones and select dates or conditions from the simulation weather file, the user can assign additional zones to the ApacheHVAC systems, repeat the zone-level sizing run, and then perform system-level sizing for coil loads, plant equipment, and so forth.  Because systems within ApacheHVAC are created or modified independently of the thermal model, the VE allows users to create multiple systems that can be run with same the thermal model in Apache Sim.

Details of Zone and System-Level Loads, Ventilation, and Autosizing has been temporarily removed for a major overhaul and will be reinstated when revisions are complete.