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“Cold Tube” cooling system uses half the energy of an air conditioner

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11–20 of 137 posts

Re: “Cold Tube” cooling system uses half the energy of an air conditioner

#11
> .. as a person stands next to or beneath the panel, the body heat radiates towards the chilled panels to create a cooling sensation ..

I'm not sure that is an accurate description of the physics. Maybe the air next to the panel is cooler, accounting for the cooling sensation.

Re: “Cold Tube” cooling system uses half the energy of an air conditioner

#12
post #9

I wonder how costly it is to fill your walls entirely with water pipes. Also, one currently ensures there is a stud or lack of electrical when putting nails in a wall. I guess you gotta hang things up differently.

There are some "radiant cooling" installations out there. Most use either the ceiling or the floor, for the reasons you point out.

Re: “Cold Tube” cooling system uses half the energy of an air conditioner

#13

> The notoriously bad energy efficiency of air conditioners Air conditioners are actually pretty fantastically efficient for what they do. The problem with air conditioners is that there's no way to move a ton of heat without using a lot of energy. So, they do use a lot, but they make the most of it. What's truly bad are our buildings that have the minimal insulation and sealing possible, leaking all that cold air ri…

New buildings are rather efficient in US. The problem is old buildings that use 5X the energy for HVAC.

I echo that AC is quite efficient. Far more efficient than traditional heating. There's a misconception that hot areas are less environmentally friendly due to AC. The opposite is true.

Hot areas are only 25 freedom units hotter than humans prefer. Cold areas have months of 50+ temperature difference.

The misconception persists because heat uses gas, which is 5-10X less expensive per BTU of energy than electricity. So it might be cheaper to heat cold areas than run AC in hot ones, but its much more damaging to the environment. Plus, hot climates are using a lot of renewables these days which impacts the environmental friendliness of electric but not gas.

I expect migration to the sun belt to accelerate, at least in the US. It makes a lot of sense from environmental perspectives. In some southern cities there's already long stretches every summer where daytime AC use runs on 70%+ renewable energy.

Re: “Cold Tube” cooling system uses half the energy of an air conditioner

#14

> .. as a person stands next to or beneath the panel, the body heat radiates towards the chilled panels to create a cooling sensation .. I'm not sure that is an accurate description of the physics. Maybe the air next to the panel is cooler, accounting for the cooling sensation.

The cold air will contribute, but this is an accurate description. A person constantly radiates a blackbody spectrum determined by temperature, as does the surrounding room. We perceive ourselves as in equilibrium when we radiate as much as we receive. If a wall is cooler than the rest of the room, the person receives less infrared from that direction and perceives cold, even in the absence of convection.

Re: “Cold Tube” cooling system uses half the energy of an air conditioner

#15

> .. as a person stands next to or beneath the panel, the body heat radiates towards the chilled panels to create a cooling sensation .. I'm not sure that is an accurate description of the physics. Maybe the air next to the panel is cooler, accounting for the cooling sensation.

This confused me for a bit. The point of the system is to prevent energy from being reflected or radiated from a surface. Systems like this have been around for a while (https://www.energy.gov/energysaver/home-cooling-systems/radi...), the news here is that this works with temperatures below the dew point because they have solved the condensation issues.

Re: “Cold Tube” cooling system uses half the energy of an air conditioner

#17
post #2

This sounds pretty neat, but their description of cold things sucking thermal radiation doesn't jive with my freshman-physics understanding of thermodynamics. AFAICT they've got cold water circulating in a moisture-repellent membrane, so they're able to absorb heat by chilling the water in the pipes instead of fussing with the humidity in the air like most AC does. So it sounds like trading inefficiency of standard A…

It's the cooling equivalent of a radiant heater, and you need line-of-sight to the walls to feel cooled. The thermal interface is deliberately inefficient for convection (to avoid wasting power chilling the air), but efficient for radiation. Radiation is proportional to absolute temperature T^4. So compared to a glowing radiant patio heater, I'd expect to need maybe (1000^4 - 300^4)/(300^4 - 270^4) ~ 350x the area fo…

Thanks for explaining. I am also surprised by this possibility given my limited physics knowledge.

Do clothes substantially reduce the effectiveness? Is true line of sight required - visible or near visible spectrum?

Secondly, can you expand a bit about the humidity/condensation aspect? I get the impression that condensation represents inefficiency, and that this somehow avoids having to cool air as a middle layer to cooling a person.

Re: “Cold Tube” cooling system uses half the energy of an air conditioner

#18
post #17

Earlier quoted context omitted.

It's the cooling equivalent of a radiant heater, and you need line-of-sight to the walls to feel cooled. The thermal interface is deliberately inefficient for convection (to avoid wasting power chilling the air), but efficient for radiation. Radiation is proportional to absolute temperature T^4. So compared to a glowing radiant patio heater, I'd expect to need maybe (1000^4 - 300^4)/(300^4 - 270^4) ~ 350x the area fo…

Thanks for explaining. I am also surprised by this possibility given my limited physics knowledge. Do clothes substantially reduce the effectiveness? Is true line of sight required - visible or near visible spectrum? Secondly, can you expand a bit about the humidity/condensation aspect? I get the impression that condensation represents inefficiency, and that this somehow avoids having to cool air as a middle layer to…

A cubic meter of air around room temperature and pressure has mass around 1000 g, and isobaric specific heat capacity around 1 J/(g*K). So cooling that air from 30 C to 25 C requires us to suck out 5 kJ. But at 30 C and 100% RH, air holds roughly 30 g/kg of water, while at 25 C it can hold only 20 g/kg. So as we cool the air, 10 g of water will condense, releasing about 20 kJ that we also have to suck out. There's no way to cool the air without condensing the water. In my example, the "latent" heat from the water condensing was much bigger than the "sensible" heat from air cooling. In practice it seems the latent heat is typically around 25% of the total[1], since we're probably at The idea of a radiant cooling tunnel appears to be old, but not very popular because it's not very effective. The cold plates leak cold into the air, just becoming a more cumbersome version of conventional air conditioning. The cold plate also can't run colder than the dew point, since the condensed water would drip and make a mess. The innovation here seems to be that they've placed a thermally non-conductive but transparent (to the thermal radiation) membrane between the cold plate and the user. There's a thin layer of cold, dry air between the cold plates and the membrane, but the membrane stops the cold from leaking out into the room air.

It's analogous to the sun shining through a well-insulated window on a winter day--you still feel the radiative heating from the sun, even as the window keeps the warm and cool air separated. Normal window glass wouldn't work for the cooling case, since the heat source isn't the sun (~6000 K) but the human (~300 K), so the wavelengths are much longer, around 10 um, and window glass is opaque there. Plastics with transmission around there are known, though, like the ones used to make the Fresnel lenses for PIR motion detectors. In any case, that membrane lets them keep the cold plate colder than the dew point without condensing water onto it, and also decreases loss of cooling by convection into the air.

It would work best on exposed skin. It should still work with clothes, as long as the clothes aren't too thermally insulating.

1. https://www.energy.gov/sites/prod/files/2013/12/f5/issue7_se...

Re: “Cold Tube” cooling system uses half the energy of an air conditioner

#19
post #16

Not sure why they are researching the mechanism, these systems are commonly installed in Germany and known as "Kühldecke" (cooling ceiling). https://de.wikipedia.org/wiki/K%C3%BChldecke

Is this the same kind of thing? (english wikipedia)

https://en.wikipedia.org/wiki/Chilled_beam

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