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[IC2] How to white magma [IC2] Industrial Age 2 (INDUSTRIAL CRAFT 2) Minecraft Game

2024-12-10 17:46:53|Myriagame |source:minecraft skins

This tutorial is set by the author's setting without permission.

If you are an old player of IC2, you must have seen it, or have created such a high -heat MOX strong cold nuclear power, its power generation is still considerable.Because the MOX temperature is high, the power generation is high.

However, many people are plagued by magma generated by high -temperature reactors, and the trolley that activate the reaction reactor will be melted.

The range of melting blocks is centered on nuclear reactors, 5x5x5 squares.As shown in the yellow framework below.In fact, this framework is built with a gold -made wire

Only when the temperature of the reactor is higher than 85%, the square will be melted.It will not melt nuclear reaction warehouses, generators and other IDs as IC2: TE blocks.

Pumps can be pumped and can be pumped across the square.

Like this, the magma was pulled away.

After testing, the pump in this position can be drawn in the area of ​​the wooden board area as shown in the wooden board area.

Therefore, adding a pump on the other side can always be removed when any block of this layer is melted into magma can always be pulled away.

Combining these two characteristics can make it use it for us.The general principle is that the cylinder is melted, the melted magma is pumped and collected by the pump, and a new stone supplement is generated.

The next step is the construction tutorial

First, two grids are raised on the ground and a nuclear reactor is placed on the third grid.Set up 4 5 -square -high pillars around the surroundings, which can be replaced with other blocks.The black and white concrete is only used to signal the position of the pillar.

When the two relative planes are covered, the squares that are not washed away by the magma must be used, and glass can be observed.The middle column is replaced with 5 pumps, all facing nuclear reactors.One of the remaining sides of the two sides will be paved with a block that will not be pushed by the piston, such as melting furnaces, obsidian, etc.Put a living door in the middle.

Dig a pit on the last side and put 5 pistons.

It's like that.Pour water and magma on both sides of the pit.Be careful not to pour wrong, the wrong way will become a disposable obsidian generating machine

Put a row of erythema relay to activate the piston.

When connecting a clock circuit, the frequency is best not to be too high, just about once in a second.

On the lattone wall pushed out of the piston, put a row of blocks that cannot be pushed to prevent the stones from being pushed too high.

Put a piston, and connect red stone to ensure that all pistons can be activated at the same time.If there is an end -shadow interface, you can also use the redstone pipe.

The same red stone clock is also slower than the one I made before.

Roundstone will be pushed out by the piston, and enter the range of the nuclear reactor to melt the block.

Export the magma to the pump to the upper fluid pipeline, and power the pump to power the pump.The power consumption of the pump is not high, and the radioactive homogenic temperature difference with a target pill is enough.Pocket containers that can store magma or equipment that can store magma.

Through this small hole, install the tie rod on the reactor.Put the fuel rod to heat the reactor to 85%of the heap temperature. Pay attention to look at it, don't fry it.

After a while, the device had successfully started and began to produce magma.

The efficiency is still good. After a few minutes, more than 20 barrels of magma have been brushed.

Device overall view

Because the calorie of the reactor does not decrease during the shutdown phase, this device can completely consume other resources at all (except for a little electricity consumed by the pump, rarely), and the magma is constantly generated.