accuris store logo
  • Browse all
  • 3A
  • 9000
  • A3
  • A4A
  • AA
  • AAMI
  • AASHTO
  • AATCC
  • ABCB
  • ABMA
  • ABMA-BOILER
  • ACC
  • ACGIH
  • ACI
  • ADA
  • ADS
  • AEIC
  • AENOR
  • AES
  • AFCEN
  • AGA
  • AGMA
  • AHAM
  • AHP
  • AHRI
  • AIA
  • AIAA
  • AICHE
  • AIHA
  • AIIM
  • AISC
  • ALI
  • ALPEMA
  • AMCA
  • ANS
  • ANSI
  • ANSI/ANSLG
  • ANSI/NEMA
  • ANSI/TCNA
  • ANSI/UAMA
  • API
  • APWA
  • AREMA
  • ARINC
  • ARMY
  • AS
  • ASA
  • ASABE
  • ASCE
  • ASD-STAN prEN
  • ASHE
  • ASHRAE
  • ASIS
  • ASM
  • ASME
  • ASNT
  • ASQ
  • ASSE (Plumbing)
  • ASSP
  • ASTM
  • ATIS
  • AVIXA
  • AWC
  • AWI
  • AWPA
  • AWS
  • AWWA
  • B11
  • BHMA
  • BICSI
  • BIFMA
  • BioWorld
  • BMI
  • BS
  • CAN/CGSB
  • CAN/ULC
  • CEI
  • CFR
  • CGA
  • CGSB
  • CIE
  • CII
  • CISPR
  • CLSI
  • CMAA
  • CRANE
  • CRSI
  • CSA
  • CTA
  • CTI
  • DID
  • DIN
  • DNV
  • DOD
  • DOXPUB
  • DVS
  • ECIA
  • EEC
  • EEMUA
  • ESD
  • ETSI
  • FCI
  • FED
  • FM Approvals
  • FORD
  • FRPI
  • GMW
  • GPA
  • HEI
  • HFES
  • HI
  • HIR
  • HPS
  • I3A
  • IADC
  • IAPMO
  • IATA
  • ICAO
  • ICC
  • ICEA
  • ICML
  • IEC
  • IEEE
  • IEEE/UL
  • IES
  • IEST
  • IFI
  • IICRC
  • INCITS
  • INTERN
  • IPC
  • ISA
  • ISEA
  • ISO
  • ISO/IEC/IEEE
  • ISPE
  • ISTA
  • ISUZU
  • JEDEC
  • JIS
  • LIA
  • MBMA
  • MCGRAW-HILL
  • MIL
  • MPIF
  • MSS
  • NAAMM
  • NACE
  • NADCA
  • NAS
  • NASA
  • NBBI
  • NCSL
  • NECA
  • NEMA
  • NETA
  • NFPA (Fire)
  • NFPA (Fluid)
  • NFSI
  • NG
  • NGA
  • NISO
  • NORSOK
  • NRC
  • NSC
  • NSF
  • NZS
  • OPEI
  • PCI
  • PDA
  • PEI
  • PIA
  • PIP
  • PPI
  • RTCA
  • SAE
  • SAIA
  • SCTE
  • SDI
  • SES
  • SIA
  • SJI
  • SMACNA
  • SME
  • SMPTE
  • SN EN
  • SPC
  • SPI
  • SSPC
  • STI/SPFA
  • TAPPI
  • TCIA
  • TEMA
  • THHILL
  • TIA
  • TMS
  • UL
  • ULC
  • UOP
  • WILEY
  • WRC
  • X9
Publishers
Need Help?
Log in
Create Account
Cart

Your shopping cart is empty.

Log in or create account

  1. Home
  2. DE-13-029 -- Method to Compute the Enthalpy Difference of a Liquid Stream When an EOS-Based Function is Not Available

DE-13-029 -- Method to Compute the Enthalpy Difference of a Liquid Stream When an EOS-Based Function is Not Available ✓ Most Recent

1867155

Conference Proceeding by ASHRAE , 2013

K.J. Schultz, PhD, Member ASHRAE

Track This

Full Description

This paper derives equations for the calculation of enthalpy and enthalpy difference as a function of both temperature and pressure that can be used when a full equation of state description is not available for a liquid. A result is the inclusion of the "volume expansivity", usually a small effect, but missing in most other literature. In the end, the equations are easy to implement in the analysis of data or predictions of component performance. This paper also displays the relative importance of pressure drop to change in temperature when computing heat transfer rates. For example, a pressure drop of 140 kPa (20 psid) accounts for 1% of the enthalpy difference for a stream of water undergoing a 2.8°C (5°F ) change in temperature. Although this might not appear to be significant, it can be important when computing system energy balance closures for performance standards that call for tight energy balance closure, plus or minus 3% being typical.

See more

Also Bought By Customers

  • 1867124

    DE-13-030 -- CFD Analysis of Pressure Losses in Flat-Oval...
    Priced From $16.00

  • 1867126

    DE-13-039 -- Corrosion of Embedded Metals in Wood: An Ove...
    Priced From $16.00

  • 1867127

    DE-13-038 -- A Novel Building Component Hybrid Vacuum Gla...
    Priced From $16.00

  • 1867162

    DE-13-025 -- Optimized Control of Automatic Windows for E...
    Priced From $16.00

Browse related products from ASHRAE

  • ASHRAE > Conferences > ASHRAE Conferences > 2013 Annual Conference, Denver, CO > Transactions 2013, Vol. 119, pt. 2 > Technical Papers
  • ASHRAE > Transactions > Transactions 2013, Vol. 119, pt. 2 > Technical Papers

Order Options

Delivery Options
Price: $16.00
Available for Immediate Download

Product Details

Published:

2013

Number of Pages:

8

File Size:

1 file

Product Code(s):

D-DE-13-029

Note:

This product is restricted and cannot be purchased in the following countries Russia, Belarus
✕

Document Delivery Options

PDF
A Portable Document Format which is electronic and downloadable. All PDF's can be downloaded from your My Downloads page in your Accuris Store account. Refer to Help Center for more details.
✕

What is a Secured PDF?

Secured PDFs are equipped with Digital Rights Management (DRM) software, by request of the Publisher to protect the copyright of the Publication, preventing unauthorized duplication and distribution.

What does this mean?

To view the PDF, a DRM tool, FileOpen must be installed. FileOpen is a free plugin which is compatible with Adobe Acrobat Reader DC and Pro DC, as well as other PDF Readers noted on the FileOpen website.

What can you do with a Secured PDF?

  • Print (except for IADC, ICML)
  • Search
  • Highlight
  • Bookmark

Restrictions:

  • Some Publishers do not allow printing.
  • Most Publishers do not permit copy and pasting from the PDF.
  • Sharing, Duplicating and Distribution prohibited.
  • For further information on restrictions, please click here.

PRODUCTS & SERVICES

  1. BPVC 2025
  2. BPVC Previous Editions
  3. Engineering Workbench
  4. Track It

CUSTOMER CARE

  1. Help Center
  2. Glossary
  3. Search Tips

CONNECT WITH US

  1. Contact Us

COMPANY INFORMATION

  1. About Accuris
  2. Press
  • © Copyright 2026 ACCURIS
  • Privacy Policy
  • System Information
Device/OS: Unknown
Browser: Unknown Browser 0.0
User Agent: Mozilla/5.0 AppleWebKit/537.36 (KHTML, like Gecko; compatible; ClaudeBot/1.0; +claudebot@anthropic.com)
Store Name: css
Page: /standards/de-13-029-method-to-compute-the-enthalpy-difference-of-a-liquid-stream-when-an-eos-based-function-is-not-available?product_id=1867155
Referrer: Direct Navigation
IP: 216.73.216.167
Language: en
Customer #: Not Logged In
Member?: NO
Cart #: 1463804773
Order #: None
Cookies: NO
×