World Energy · Global Absorption Technology Manufacturer, since 2004

Turn wasted heat
into free cooling & heating

World Energy engineers absorption chillers and absorption heat pumps that convert waste heat — from gas turbines, reciprocating gas engines, steam, hot water, or direct gas/oil firing — into chilled water, hot water, and serious energy savings. No extra fuel burned. No electric compressor. No F-gas refrigerant. CWS is the Master Distributor and service partner for World Energy in the USA, Mexico, the Caribbean, and LATAM.

≤95%
Less electricity vs. electric compressor chillers
↓ CO2
Lower emissions — waste heat replaces grid power
GWP 0
Distilled water + LiBr — zero F-gas refrigerant
World Energy absorption chiller plant room — Incheon Int'l Airport, T2, South Korea
Energy Efficiency
🌍 CO2 Emission Reduction
💰 Energy Cost Reduction
♻️ Waste Heat Recovery
🧊 Zero F-Gas Refrigerant
🔧 Turbines & Reciprocating Engines
See World Energy

Meet the manufacturer

World Energy's own introduction — who they are, how their absorption technology works, and the scale of their manufacturing.

Who We Are

World Energy — a waste-heat energy recovery specialist, not a generic chiller maker

Founded in Korea in 2004, World Energy has spent two decades engineering absorption chillers, absorption heat pumps, and heat exchangers that turn heat other people throw away into cooling, hot water, and savings.

World Energy's absorption machines run on whatever heat source a site already has — hot water, steam, direct gas or oil firing, or exhaust gas from a gas turbine or reciprocating engine — and convert it into chilled water at a fraction of the electric consumption of a conventional compressor chiller. The same core technology also powers World Energy's absorption heat pumps, upgrading low-grade waste heat into usable hot water.

1

Broad heat-source portfolio. Hot water, steam, gas/oil direct-fired, and exhaust gas (turbine or reciprocating engine) — one manufacturer covers nearly every waste-heat scenario.

2

Certified & proven. UL Listed, AHRI 560 certified, CE marked, and GL certified for marine duty — with an installed base across Asia, Europe, the Americas, and Oceania.

3

Specialist range others don't offer. Sub-zero brine chillers to −7°C, maritime absorption chillers, and high-COP heat pumps sit alongside the core chiller line.

4

Local muscle through CWS. CWS Energy & Water Solutions brings on-the-ground engineering, financing (Cooling-as-a-Service), and 24/7 support across the Americas — the local presence a Korean OEM can't provide alone.

2004
World Energy founded — two decades of absorption R&D
4
Heat sources supported: hot water, steam, gas/oil, exhaust gas
UL · AHRI
CE marked · GL certified for marine applications
Global
Installed base: Asia, Europe, Americas & Oceania
−7°C
Sub-zero brine chiller output for food & pharma
GWP 0
Distilled water + LiBr across the entire product range

The CWS + World Energy partnership: CWS is the Master Distributor and authorized service partner for World Energy in the USA, Mexico, the Caribbean, and LATAM — pairing World Energy's engineered hardware with local financing, installation, and 24/7 operations support.

Full Product Range

We transform any heat into cooling — or higher-grade heating

World Energy's absorption technology runs on whatever heat source a site already has. CWS brings the complete range to the Americas — not just one product line — organized by what's driving the machine.

💧

Using Hot Water

Converts heat from hot water as low as 65°C (149°F) into cooling — ideal for district energy loops, campuses, and process cooling.

District Energy
How it works → Explore models →
♨️

Using Steam

Converts heat from steam at pressures as low as 0.5 barg (7.25 psig) into cooling — single- or double-effect depending on steam quality.

Process Steam
How it works → Explore models →
🔥

Using Hot Gases

Converts heat from exhaust/flue gases as low as 260°C (500°F) — from gas turbines, reciprocating gas engines, or industrial processes. Cooling and heating from one machine, COP up to 1.46.

TurbinesRecip. Engines
Explore models →

Using a Fuel

No waste heat available? A built-in burner runs on natural gas, diesel oil, LPG, kerosene, or biofuels to generate cooling and heating from the same unit — COP up to 1.32.

Standalone Sites
Explore models →
🌡️

Heat Pumps

Efficiently raises the temperature of hot water, achieving high energy efficiency and savings with our absorption heat pumps. COP up to 1.8.

Heat RecoveryCOP 1.8
Explore heat pumps →
🚢

Marine

Ships generate a lot of heat from onboard engines. Our GL certified chillers convert that recovered thermal energy into cooling at sea.

GL Certified
Explore models →

Also available: Sub-Zero & Brine Chillers

A specialized duty option across the range above — outlet temperatures down to −7°C using ethylene glycol brine, for food processing, cold chain, and pharmaceutical applications.

Ask About Brine Duty
Dreams Rosehall Resort & Spa — Montego Bay, Jamaica UL Listed · AHRI 560 GL Certified — Marine Duty World Energy — Manufacturing Since 2004 USA · Mexico · Caribbean · LATAM Dreams Rosehall Resort & Spa — Montego Bay, Jamaica UL Listed · AHRI 560 GL Certified — Marine Duty World Energy — Manufacturing Since 2004 USA · Mexico · Caribbean · LATAM
Technology Primer

What is an absorption chiller — and why does it matter for CHP?

Most chillers run on electricity. An absorption chiller runs on heat — specifically the exhaust heat your gas turbine or reciprocating gas engine is currently throwing away (or hot water, steam, or direct gas/oil firing on non-CHP sites). Instead of an electric compressor, it uses a lithium bromide solution cycle to produce chilled water at little to no additional fuel cost.

Feature Electric Chiller WE Absorption (CHP)
Energy source Grid electricity Waste exhaust heat
Electric consumption ~400–600 kW 5–9 kW (pumps only)
Refrigerant HFCs (GWP 1,000+) Distilled water (GWP 0)
COP 3.0–6.0 1.40–1.46 (no input cost)
F-gas compliance Future retrofit risk Zero F-gas, future-proof
Ideal pairing Stand-alone Gas turbine or reciprocating engine CHP

The CHP advantage: In a standard trigeneration setup, a 1,000 kW-class gas turbine or reciprocating gas engine genset produces electricity while its exhaust at up to 566°F feeds a World Energy CHP050HH, producing 308–460 tons of cooling. The same exhaust also heats domestic hot water — all from one fuel input. System efficiency exceeds 90%.

Double-Effect Exhaust Gas Absorption Cycle
1
Exhaust gas enters the High-Temperature Generator (566°F / 297°C) and drives the absorption cycle
2
LiBr solution is concentrated — refrigerant (water vapor) is boiled off and rises to the Condenser
3
Refrigerant condenses and flows to the Evaporator — where it flashes to vapor at 4.4°C, absorbing heat from chilled water
4
Chilled water exits at 7–12°C — ready for air handling, fan coils, or process cooling
5
Refrigerant vapor is absorbed by dilute LiBr in the Absorber — cycle repeats. No compressor. No F-gas. GWP = 0
6
HH model option: integrated hot water heat exchanger simultaneously heats domestic water to 55–80°C from the same exhaust pass
Double-effect efficiency advantage

The low-stage generator acts as the condenser for the high stage — heat energy is used twice. This reduces heat input requirement by ~45% vs. single-effect chillers, enabling COP 1.40–1.46.

Heating mode — same unit

Switch the change valve on the control panel: the unit shifts to heating mode, delivering hot water at 60°C (140°F) standard, or 80°C (176°F) with the optional HH heat exchanger. One machine, two seasonal modes.

Product Line — CHP Series

CHP Series — Exhaust Gas Absorption Chillers

All models are double-effect, exhaust gas-driven absorption chillers (CHPHH series) — compatible with exhaust from a gas turbine or a reciprocating gas engine. UL Listed. AHRI 560 certified. Refrigerant: distilled water + lithium bromide. Power: 3-phase 440/460V, 50/60 Hz.

Sub-Zero Brine Chiller
CHP021HH-B
41 TR
145 kW
Outlet temp
−2°C (28°F)
Ethylene Glycol 50%
COP
0.76
Exhaust in
309°C (588°F)
Exhaust out
123°C (253°F)
Flow rate
0.98 kg/s
Electric power
3.6 kW
Dimensions (L×W×H)
3,700×2,000×2,500 mm
Operating weight
8.0 ton
Standard CHP Chiller
CHP032HH
284 TR
3,408,646 Btu/h
Chilled water out
44°F (6.7°C)
COP
1.46
Exhaust in/out
566 / 248°F
Exhaust flow
29,142 lb/hr
CW flow
1,274 GPM
Electric power
4.8 kW
Dimensions (L×W×H)
186.8×105.4×96.9 in
Operating weight
23,100 lb
Mid-Range CHP Chiller
CHP040HH
379 TR
4,544,938 Btu/h
Chilled water out
44°F (6.7°C)
COP
1.46
Exhaust in/out
566 / 248°F
Exhaust flow
38,856 lb/hr
CW flow
1,698 GPM
Electric power
5.6 kW
Dimensions (L×W×H)
191.3×117.9×100.7 in
Operating weight
29,500 lb
Most Specified Model
CHP050HH
308–473 TR
per configuration
COP range
1.40–1.46
Chilled water
37.4–44.6°F out
Exhaust in/out
566 / 248°F
CW flow (max)
2,123 GPM
Electric power
7.2–7.7 kW
Enclosure option
205×144×116 in
Base weight
37,900 lb
Enclosure weight
40,100 lb
High-Capacity CHP Chiller
CHP063HH
388–466 TR
4,653,241–5,587,870 Btu/h
COP
1.40–1.44
Chilled water out
37.4–38°F
Exhaust flow
41,426–48,570 lb/hr
CW flow
1,768–1,892 GPM
Electric power
8.5 kW
Diverter connection
24–30 inch
Dimensions (L×W×H)
232.5×127.2×107.0 in
Operating weight
44,100 lb
Hot Water Heat Exchanger — HH Option

The "HH" suffix designates models with an integrated domestic hot water heat exchanger. As exhaust gas enters at 566°F, a secondary circuit produces domestic hot water at 55–80°C simultaneously with cooling — at no additional fuel cost. Two configurations: DHW heat exchanger inside the high-temp generator, or steam condensate recovery from an external heat exchanger.

Request Sizing
Full Product Line-Up

Every model series, by heat source

Straight from World Energy's product catalogue — the complete series available for each heat source, with capacity range and COP. CHP (exhaust gas) and absorption heat pump series have their own detailed spec cards above/below; the ranges here cover hot water, steam, direct-fired, and marine duty.

💧 Hot Water-Driven Series

Single-effect and single-effect double-lift chillers driven by hot water as low as 65°C (149°F). The USL L-series variant of this line (L50HH–L680HH) is the exact product family field-proven across 25+ USA and Canada installations — see Reference Projects.

Model Series
Type
Capacity Range
COP
HWAR-L**HH
Single-effect, Super High Efficiency
30 – 1,300 usRT
0.83
HWAR-L**H
Single-effect, High Efficiency
30 – 1,300 usRT
0.80
2ABH***
Single-effect double-lift, High Efficiency
30 – 1,300 usRT
0.71
2AB***
Single-effect double-lift
75 – 1,300 usRT
0.64
2AA***
Single-effect, waste-heat recovery
75 – 1,300 usRT
0.41

♨️ Steam-Driven Series

Single- and double-effect chillers driven by steam as low as 0.5 barg (7.25 psig). The USL S-series (S1100HH–S1500HH) is field-proven at North Shore Towers, Brooklyn — 1,402 usRT, the largest single installation in our reference list.

Model Series
Type
Capacity Range
COP
SWHH***
Double-effect, Super High Efficiency
100 – 2,000 usRT
1.48
SWH***
Double-effect
100 – 1,600 usRT
1.36
S**HH
Single-effect, Super High Efficiency
50 – 2,000 usRT
0.81
SWM***
Double-effect, Marine chiller
50 – 1,100 usRT
1.21

Gas/Oil Direct-Fired Series

No waste heat source on site? A built-in burner runs on natural gas, diesel oil, LPG, kerosene, or biofuels. Every model in this line delivers cooling and heating from the same machine.

Model Series
Type
Capacity Range
COP
DW**HH
Double-effect, Super High Efficiency — Cooling & Heating
50 – 1,500 usRT
1.32
DW**H
Double-effect, High Efficiency — Cooling & Heating
50 – 1,500 usRT
1.22
DW***
Double-effect — Cooling & Heating
50 – 1,500 usRT
1.00

🚢 Marine Duty

Ships generate substantial heat from onboard engines and steam systems. The SWM series is GL certified for marine duty, converting recovered thermal energy into chilled water at sea.

Model Series
Type
Capacity Range
COP
SWM***
Double-effect, Marine chiller — GL Certified
50 – 1,100 usRT
1.21

Model ranges and COPs sourced directly from the World Energy product catalogue. For dedicated absorption heat pumps (HPD/HPS series, heating only), see Absorption Heat Pumps below. For exhaust gas-driven CHP models, see the CHP Series spec sheets.

Product Line — Absorption Heat Pumps

Absorption Heat Pumps — turn low-grade waste heat into usable hot water

Where a chiller isn't the goal, World Energy's absorption heat pumps recover low-grade waste heat (roughly 60–90°C) and upgrade it into higher-temperature hot water for process use, district heating, or domestic hot water — at COPs up to 1.8, with no electric compressor.

🌡️

HPS Series — Steam Driven

Steam-fired absorption heat pump. Capacity 576–4,030 Mcal/h (670–4,686 kW). COP up to 1.8.

COP 1.8
🔥

HPD Series — Direct Fired

Gas or oil direct-fired absorption heat pump for sites without steam. Same capacity range, COP up to 1.65.

COP 1.65
♨️

AHT & H2A Series

Steam-generation type (AHT) and 2-lift type (H2A) heat pumps for higher-lift, higher-temperature-rise applications such as steam generation from waste heat.

High-Lift

Where heat pumps fit: laundry and DHW heating at hotels, process heat recovery in industrial plants, district heating loops, and any site producing 60–90°C waste heat that would otherwise be vented. Often paired with a World Energy absorption chiller on the same site for a full waste-heat-to-utility solution.

Factory-Engineered Integration

Engine & Turbine Pairing — CHP Chillers Matched to Your Genset

World Energy CHP chillers run on exhaust from a gas turbine (e.g. Capstone microturbines) or a reciprocating gas engine genset — the absorption cycle doesn't care which one produced the heat, only that the exhaust flow and temperature are correctly matched. CWS pre-engineers that match so the chiller is never under- or over-sized for your on-site generation asset.

World Energy CHP050HH craned into position on an active project

Why the Capstone × World Energy pairing works

1

Single-source scope. CWS supplies and installs both the on-site generation asset — turbine or reciprocating engine genset — and the World Energy chiller. One engineering team, one contract, one service call.

2

Pre-engineered exhaust match. Diverter valve, connection size, exhaust flow, and temperature conditions are factory-matched to your specific turbine or engine model — no field engineering surprises.

3

Tropical & Caribbean ready. Specified for Jamaican, Dominican Republic, and US site conditions, including both 50Hz/415V and 60Hz/460V variants, with cooling water up to 90°F (32°C).

One example, from an active Caribbean project

A single Capstone C-1000 microturbine (1,000 kW) pairs with a World Energy CHP050HH to turn its exhaust into up to 308 tons of cooling — no extra fuel, no electric compressor. Full data sheets, exact sizing, and pricing are provided once we know your turbine or engine model and site conditions.

Reference Projects

Proven in the field — 47 installations across the Americas

World Energy absorption chillers are installed and operating across hospitality, industrial, institutional, and residential sites in the USA, Canada, Mexico, and the Caribbean. Every project below is sourced directly from World Energy's own delivery records — filter by region or sector to explore.

Caribbean — Jamaica Hospitality
Couples Tower Isle
Ocho Rios, Jamaica
~93 RT
Live reading (1,112,637 BTU/h)
6.8°C
Chilled water out
267→127°C
Exhaust in/out
6,752 h
Verified run hours
Caribbean — Jamaica Hospitality
Dreams Rosehall Resort & Spa
Montego Bay, Jamaica
456 usRT
Cooling capacity
~1.40+
COP
7°C
Chilled water out
1× C-1000
Capstone microturbine
USA — New York Residential
North Shore Towers Apartments
Brooklyn, NY
1,402 usRT
Cooling capacity
S1400HH
Model
56.4/48°F
Chilled water in/out
8 psig
Steam inlet pressure
USA — Louisiana Industrial
Lotte Chemical
MEG Plant, Louisiana, USA
2,738 usRT
Combined cooling, 2 units
+7%
Production yield increase
65→52°C
Waste hot water in/out
2× SE-DL
Single-effect double-lift HW chillers
43 additional installations shown
🏭
🔍 More details
Fuel Cell Site
Dallas, TX · USA
L60HH60 usRT
Jul 2021
🏭
Cidra
Cidra, PR · Caribbean
L580HH425 usRT
Feb 2020 · Details →
🏛️
🔍 More details
Eglin Air Force Base (ECM-10)
Valparaiso, FL · USA
L240HH202 usRT
Jan 2020
🏭
🔍 More details
Acushnet Cogeneration
New Bedford, MA · USA
L300HH183 usRT
Dec 2019
🏛️
🔍 More details
Canandaigua VA Medical Center
Canandaigua, NY · USA
SWHH500400 usRT
Apr 2019
🏛️
🔍 More details
LA Mission College
Sylmar, CA · USA
L50HH50 usRT
Feb 2019
🏭
🔍 More details
CC1
Cayey, PR · Caribbean
L375HH_EN300 usRT
Sep 2018
🏛️
🔍 More details
Mississippi State University
Starkville, MS · USA
L135HH_EN94.9 usRT
Sep 2018
🏭
🔍 More details
Coca-Cola (Martin Energy Group)
Tipton, MO · USA
L420HH ×2301 usRT ea.
Aug 2018
🏭
🔍 More details
Eastern Wholesale Fence
Medford, NY · USA
L180HH_EN144 usRT
Jul 2018
🏨
🔍 More details
Sheraton San Diego
San Diego, CA · USA
L50HH_EN50 usRT
Apr 2018
🏛️
🔍 More details
Berkshire Medical Center
Pittsfield, MA · USA
L340HH206 usRT
Aug 2017
🏭
🔍 More details
Echeverria & Sons Dairy
Bakersfield, CA · USA
L110HH97.5 usRT
Jul 2017
🏛️
🔍 More details
Edward R. Murrow High School
Brooklyn, NY · USA
L210250 usRT
May 2017
🏭
🔍 More details
AstraZeneca
Waltham, MA · USA
L180H197 usRT
Apr 2016
🏛️
🔍 More details
Aquarium of the Pacific
Long Beach, CA · USA
L135H-EN135 usRT
Aug 2016
🏛️
🔍 More details
CSU San Marcos
San Marcos, CA · USA
L90H-EN90 usRT
Oct 2015
🏨
🔍 More details
Millennium Broadway Hotel
New York, NY · USA
L180HH215 usRT
Sep 2015
🏭
🔍 More details
Verizon
San Jose, CA · USA
L90H-EN90 usRT
Aug 2013
🏭
🔍 More details
Verizon
West Sacramento, CA · USA
L135H-EN135 usRT
Aug 2013
🏭
🔍 More details
Verizon
Basking Ridge, NJ · USA
L300-EN240 usRT
Aug 2013
🏨
🔍 More details
Millennium Hilton Hotel
New York, NY · USA
L180H215 usRT
Jan 2013
🏛️
🔍 More details
CBS Television City
Los Angeles, CA · USA
L5050 usRT
Dec 2012
🏛️
🔍 More details
CBS Studio Center
Studio City, CA · USA
L135135 usRT
Dec 2012
🏛️
🔍 More details
Burke Rehabilitation Hospital
White Plains, NY · USA
L210H150 usRT
Jun 2012
🏛️
🔍 More details
Saint Peter's College
Jersey City, NJ · USA
L210150 usRT
Dec 2011
🏛️
🔍 More details
New Haven Hall of Records
New Haven, CT · USA
L5050 usRT
Nov 2011
🏛️
🔍 More details
Embassy of the United Kingdom
Washington, DC · USA
L11086 usRT
Apr 2010
🏛️
🔍 More details
John Muir Medical Center
Walnut Creek, CA · USA
L300307 usRT
Apr 2008
🛒
🔍 More details
Macy's Brooklyn
New York, NY · USA
L180 ×2150 usRT ea.
Sep 2007
🏛️
🔍 More details
Joint Forces Training Base
Los Alamitos, CA · USA
L110130 usRT
Nov 2006
🏭
🔍 More details
400 McLevin Ave
Toronto, ON · Canada
CHP010HH80.8 usRT
May 2021
🏭
🔍 More details
399 South Park Rd
Ontario, Canada · Canada
CHP010HH_EN80.8 usRT
Jul 2021
🛒
🔍 More details
Longo's Supermarket
Burlington, ON · Canada
CHP010HH_EN80.8 usRT
Nov 2021
🏭
🔍 More details
Bondi Produce
Etobicoke, ON · Canada
CHP021HH-B_EN41.2 usRT
Nov 2021
🏭
🔍 More details
70 Mill St
Toronto, ON · Canada
CHP005HH40 usRT
Sep 2024
🏭
🔍 More details
Cashfin Energy
Miguel Hidalgo, CDMX · Mexico
CHP032320 usRT
Dec 2011
🏭
🔍 More details
Bopisa
Guadalajara, Mexico · Mexico
CHP012H120 usRT
Feb 2015
🏭
🔍 More details
Cosma Engineering
Toluca, Mexico · Mexico
CHP040H ×3380 usRT
Mar 2015
🏭
🔍 More details
Hermosillo
Sonora, Mexico · Mexico
CHP040H372 usRT
May 2016
🏭
🔍 More details
Lechera GDL
Guadalajara, Mexico · Mexico
CHP040HH ×2400 usRT
Dec 2018
🏭
🔍 More details
Perrigo (P2)
Mexico · Mexico
CHP032HH293 usRT
Jul 2020
🏭
🔍 More details
Cuvilag
Mexico · Mexico
2ABH180 & DWHH210206/210 usRT
Apr 2021
Your Project

Free preliminary sizing in 48 hours. Share your turbine model and cooling load — we'll return a World Energy data sheet.

Start Your Project →

Market Applications

Where CHP absorption cooling wins

Absorption cooling from waste heat is ideal wherever electricity is expensive, waste heat is available, and cooling loads are continuous — which describes most of our market.

🏨

Hotels & Resorts

The Caribbean's #1 use case. High cooling loads 24/7, on-site power generation, and hot water demand make resorts ideal for CHP trigeneration.

  • Eliminate or drastically reduce purchased electricity for cooling
  • Produce domestic hot water simultaneously at no extra cost
  • Structured as Cooling-as-a-Service (CaaS) — zero CAPEX to hotel
  • 15-year O&M contract with 98% uptime SLA
Caribbean Mexico
🏭

Industrial CHP

Manufacturers with gas turbines or reciprocating engines can recover exhaust heat for process cooling — converting a waste stream into a productivity asset.

  • Food processing: cooling after sterilization and packaging lines
  • Pharma: cleanroom cooling at required setpoints
  • Breweries, distilleries: fermentation temperature control
  • Petrochemical: process fluid cooling
USA Mexico
🖥️

Data Centers

Data centers consuming 40%+ of their electricity on cooling are prime candidates. On-site generation + absorption = massive PUE improvement.

  • Up to 95% less electricity vs. conventional chillers
  • Waste heat recovery from diesel/gas generators or fuel cells
  • Supports ESG and net-zero commitments
  • GWP = 0 — no F-gas refrigerant compliance risk
LATAM USA
🧊

Cold Chain & Sub-Zero

The CHP021HH-B brine chiller produces −2°C outlet temperatures using Ethylene Glycol — serving food, pharma, and cold storage applications where standard chillers can't reach.

  • Outlet temp: −2°C (28°F) with 50% EG solution
  • Ideal for freezing tunnels, blast freezing, pharmaceutical cold rooms
  • CHP-driven — no compressor, minimal electric draw (3.6 kW)
Food & Pharma
🌊

Biogas & Waste-Heat Recovery

Sugar mills, distilleries, and agricultural processors with biogas engines can pair exhaust output with absorption cooling — turning vinasse and waste streams into cooling and power.

  • Compatible with reciprocating engine exhaust (gas, biogas, diesel)
  • Process cooling for fermentation and distillation
  • Replaces purchased electricity and LPG cooling
  • Strong ESG narrative for export markets
LATAM Caribbean
🏙️

District Energy & Microgrids

Mixed-use developments, industrial parks, and island microgrids can centralize trigeneration — one CHP plant serves cooling, heat, and power for multiple buildings.

  • Central plant with chilled water distribution loop
  • Multiple World Energy units in parallel for load staging
  • Structured as Cooling-as-a-Service for anchor tenants
  • Island / off-grid resilience — no grid dependency
Caribbean LATAM
Commercial Model

Cooling-as-a-Service — Zero CAPEX

CWS finances, installs, owns, and operates the entire trigeneration + absorption cooling system. You pay a fixed monthly energy fee — lower than your current electricity bill — and get guaranteed cooling with a 15-year performance warranty.

Traditional Purchase

CAPEX: $500K–$2M upfront
Client owns, maintains, repairs
Technology obsolescence risk
Downtime = your problem
Overhaul costs every 8–10 years
CAPEX: $500K – $2M+

CaaS — Cooling as a Service

Zero upfront investment
CWS owns, operates, maintains
15-year performance guarantee
98% uptime SLA — we carry the risk
Fixed monthly fee below current energy cost
Monthly fee · $0 upfront · Day-1 savings
$0
Client CAPEX

CWS finances 100% through structured project finance against contracted receivables

20–25%
IRR on CaaS projects

Based on 800 TR hotel example: $540K/yr revenue, $150K operating cost, $390K EBITDA

15 yrs
Contract term

ESA or CaaS agreement with performance guarantees and structured financing against receivables

Engineering Resource Center

MEP & Developer Hub

Everything a mechanical engineer or project developer needs to specify, size, or evaluate a World Energy absorption chiller for a CHP project. All documents available on request.

Specification & Sizing

  • 📄AHRI 560 compliant data sheets — all models
  • 📊Exhaust flow & temperature matching guide (Capstone C65–C1000)
  • 🔧Diverter valve sizing and pressure drop tables
  • 💧Chilled water system design parameters (GPM, ΔT, pressure)
  • 🌡️Cooling water temperature limits and tower sizing guidance
  • 📐Dimensional drawings and rigging weights — all models

Engineering Design Data

  • Electrical: 3P 440/460V, 50/60 Hz — ampere tables by model
  • 🔒Design pressure: 145 psig (10 bar brine model)
  • 🧪Refrigerant: distilled water + LiBr — MSDS available
  • 🏗️Enclosure option: outdoor IP-rated unit (IP52)
  • 🔄Cooling & heating cycle diagrams (CHPHH series)
  • ♨️HH heat exchanger — DHW & steam condensate configurations

Certifications & Compliance

  • 🏆UL Listed — Heating and Cooling Equipment (SA32295)
  • 📋AHRI 560 — performance certification standard
  • 🌿GWP = 0 — no F-gas, no HFC, fully EU F-Gas regulation compliant
  • 🔌IP52 standard (outdoor enclosure option)
  • 🛡️Siemens PLC control system (standard)
  • 🌐Remote monitoring ready — 24/7 CWS operations center

Quick Reference — CHP050HH (C-1000S)

  • ❄️Cooling: 455 usRT · COP 1.463 (standard rating)
  • 🔥Exhaust: 536°F in → 248°F out @ 14.77 lb/s
  • 💧CHW: 1,211 GPM · 53.6°F in / 44.6°F out
  • 🌊CW: 2,039 GPM · 89.6°F in / 98.6°F out
  • 📦Unit: 192.1 × 122.7 × 107 in · 37,920 lb operating
  • Electrical & pressure-drop data: request full data sheet

Per World Energy Model Selection sheet, C1000S microturbine pairing. Non-binding theoretical values — confirm with a formal quote.

Request the general engineering package

Data sheets, cycle diagrams, dimensional drawings, and AHRI certificates available immediately. Preliminary sizing completed within 48 hours with your turbine model and cooling load.

🔒 Registered MEP Firms Only

Project-Grade MEP Document Library

Beyond public spec sheets, CWS maintains an installation-grade technical library for engineers of record on active or prospective World Energy projects: foundation drawings, piping diagrams, control logic, full certification package, safety data, and maintenance/spare-parts data. Because these documents are detailed enough to specify or source equipment directly, we don't publish them — access is granted per-firm after a quick verification, not by public login.

Drawings & Diagrams

  • 📐Foundation & outline drawings
  • 🧩P&ID & piping diagrams
  • 🧠Control philosophy & operation logic

Certifications

  • 🏆CE, DNV, IECEx
  • 📋ISO 9001 & ISO 14001
  • 🛡️UL & ASME

Safety & Maintenance

  • ⚠️MSDS safety data sheets
  • 🔧Maintenance schedules
  • ⚙️Spare parts data

CWS verifies each firm before granting access. Approved requests receive secure document links by email, typically within 1 business day.

Knowledge Center

Insights & Technical Articles

All Articles →
🧊
Absorption 101
What is an absorption chiller and why should your hotel care?
Most hotel engineers have never seen one. Here's why the largest resort chains are now specifying them for every new CHP project in the Caribbean.
CHP & Trigeneration
Capstone C-1000 + World Energy: the trigeneration calculation your energy consultant isn't doing
A 1 MW turbine's exhaust can produce 308–388 TR of cooling. Here's the math — and why COP 1.46 changes the project economics entirely.
🏨
Case Study
How a 456 usRT absorption chiller is transforming a Jamaica resort's energy profile
CHP063HH paired with a Capstone C-1000 at a Montego Bay hospitality property: the numbers, the design decisions, and what it means for Caribbean hospitality.
🌿
Sustainability
F-Gas regulations and why GWP = 0 matters now — not in 2030
HFC refrigerant phase-outs are accelerating globally. Absorption chillers use distilled water — no F-gas, no compliance risk, no retrofit costs.
🏭
Industrial
Sub-zero from waste heat: the CHP021HH brine chiller at −2°C
Food processing plants are now running blast freezers from turbine exhaust. How the CHP021HH-B achieves −2°C with Ethylene Glycol — and what it costs to operate.
💰
Finance
Cooling-as-a-Service: why $0 upfront is not a gimmick — it's structured project finance
How contracted ESA receivables become bankable collateral, and why development finance institutions are funding CaaS projects in the Caribbean right now.
Free Cooling Audit

Tell us your turbine or engine. We'll size your chiller — in 48 hours.

Preliminary sizing, data sheet, and savings estimate. No commitment required. Serving USA, Mexico, Caribbean, and LATAM.

We respond within 48 hours. No spam, no third-party sharing. CWS Energy & Water Solutions — cwsmexico.mx