Ingegneria E Conoscenza

Fondamenti E Ingegneria

Calcoli del carico Hvac

The accurate calculation of heating and cooling loads is essential to provide a sound bridge between fundamental building design decisions and an operating building. If loads are substantially underestimated, occupants and users will likely be hot or cold. If loads are substantially overestimated, equipment will be oversize (usually wasting money, reducing efficiency, increasing energy consumption, and often imperiling comfort).

Angoli Solari - Fondamenti di Posizionamento Solare

Two fundamental parameters determine how effectively your solar panels capture sunlight: orientation and tilt. These factors, when properly calculated, can significantly increase your system’s efficiency and return on investment.

Understanding Solar Radiation: Earth’s Powerful Energy Source

Solar energy is the result of electromagnetic radiation released from the sun by the thermonuclear reactions occurring inside its core. All of the energy resources on earth originate from the sun (directly or indirectly), except for nuclear, tidal, and geothermal energy.

Precedente

Standard E Conformità

Design del condotto HVAC: perdita di attrito dei raccordi per condotti

Complete guide to HVAC duct fittings friction loss using Carrier standards covering loss coefficients, pressure drop calculations, and system optimization for efficient air distribution design.

Design del condotto HVAC: smorzatori, attenuatori e perdita di attrito bobine

Complete guide to HVAC dampers, attenuators, and coils friction loss using SMACNA standards covering pressure drop calculations, component selection, and system optimization for efficient air distribution design.

Design del condotto HVAC: condotto a rettangolare equivalente

Complete guide to HVAC round-to-rectangular duct equivalency using ASHRAE standards covering conversion formulas, performance considerations, and system optimization for space-constrained installations.

Design del condotto HVAC: perdita di attrito del condotto

Complete guide to HVAC duct friction loss calculations using ASHRAE standards covering friction charts, pressure drop analysis, and system optimization for efficient air distribution design.

Design del condotto HVAC: classificazione della pressione del condotto

Complete guide to HVAC duct pressure classification using SMACNA standards covering pressure class selection, construction requirements, and testing protocols for safe and efficient ductwork systems.

Design del condotto HVAC-Dimensiosi di condotti di estrazione di contaminante (fumo | grasso | gas | polvere secca e umida)

ASHRAE’s Pocket Guide lists minimum conveying velocities that keep contaminants airborne while they travel through exhaust ductwork. Table 2.9 (2013 edition, Ch. 02, pp. 60

Design del condotto HVAC: dimensionamento del condotto della cucina commerciale

Complete guide to commercial kitchen duct sizing using ASHRAE and NFPA standards covering exhaust hood design, grease management, fire safety, and make-up air systems for food service operations.

Design del condotto HVAC: dimensionamento del condotto per velocità e criteri di rumore (NC)

Complete guide to HVAC duct sizing using velocity and noise criteria with ASHRAE and CIBSE standards covering acoustic design, velocity limits, and noise control for sensitive applications.

Design del condotto HVAC: dimensionamento del condotto con un metodo di attrito uguale

Complete guide to HVAC duct sizing using the equal friction method with SMACNA and ASHRAE standards covering calculation procedures, friction rate selection, and system optimization for effective air distribution design.

Design del condotto HVAC: raccomandazioni di Smacna di dimensionamento del condotto

Complete guide to HVAC duct sizing using SMACNA recommendations covering equal friction, velocity, and static regain methods with design calculations and system optimization for effective air distribution.


Strumenti E Risorse Digitali

Filtri Dell'aria Classificazione Dell'efficienza

ASHRAE 52.2: Filter testing was originated from America in 1930 (ASHVE and AFI code). It was then reviewed and modified in 1967 and 1968. ASRHAE collaborated with American National Standard Institude (ANSI) in 1992 to create ASHRAE-ANSI 52.1. Finally updated to ASHRAE 52.2 in 2007.

Funzioni di programmazione psicrometrica

ibrary of psychrometric functions to calculate thermodynamic properties of air for Python, C, C#, Fortran, JavaScript and VBA/Excel

Refrigeranti nel 2025: proprietà, applicazioni e compatibilità

Mentre l'industria HVAC e di refrigerazione continua a evolversi con le normative ambientali e i progressi tecnologici, la comprensione delle proprietà del refrigerante rimane cruciale per ingegneri, tecnici e gestori di strutture. Questa guida completa fornisce una panoramica aggiornata dei refrigeranti comuni, delle loro composizioni e delle applicazioni nel mercato di oggi.

Software Carrier Hap

Carrier’s Hourly Analysis Program is two powerful tools in one package – versatile features for designing HVAC systems for commercial buildings AND powerful energy analysis capabilities for comparing energy consumption and operating costs of design alternatives.

Software Trace 700

TRACE 700 enables building designers to optimize the building, system and equipment designs on the basis of energy utilization and life-cycle cost. The Trane software for TRACE 700 facilitates analysis of the energy and economic effects of virtually any chiller plant configuration by allowing users to manipulate a wide range of variables and create a profile of their specific building.

Scarica Evap-Cond 5.0: lo strumento di simulazione dello scambiatore di calore finale per gli ingegneri HVAC

Sia che tu stia progettando un nuovo scambiatore di calore, ottimizzando un sistema esistente o ricercando refrigeranti alternativi, EVAP-COND fornisce le capacità di analisi dettagliate necessarie per prendere decisioni informate. Incoraggio tutti gli ingegneri e i ricercatori HVAC a esplorare questo potente strumento di simulazione e sperimentare in prima persona come può trasformare il tuo approccio al design dello scambiatore di calore.

Scarica il libro di testo sul trasferimento di calore

The book is meant for juniors, seniors, and first-year graduate students. And to those who choose to learn the subject on their own, and to practicing engineers who use it as a reference. Whether one studies alone or with a class, learning means posing, then answering, one’s own questions.

Calcolatrice per condotti flessibili

Flexible Duct Calculator based on four different methods. Based on Friction Loss, Based on Duct Diameter, Equivalent Rectangular Duct, Equivalent Round Duct Diameter. Also table of Maximum Recommended Supply Velocity.

Calcolatore Cambio Aria Cfm

The rate at which air is exchanged (in the premises) represents another method of measuring ventilation capacity & effectiveness. Air exchange rate is typically expressed in Air Changes per Hour – “ACH”. Air changes per hour can be estimated by determining the total air supplied to, and removed from, the premises “total air exchange” or the outdoor (fresh) air supplied to, and removed from, the premises “outdoor air exchange”. We invite you to experience how this calculator can transform your workflow. Whether you’re specifying a new system, troubleshooting an existing installation, or teaching the next generation of HVAC professionals, this tool was built with your needs in mind.