Skip to main content

2getthere’s Group Rapid Transit vehicle passes desert climate test

2getthere’s Group Rapid Tansit (GRT) autonomous vehicle has proven in a simulated desert climate that it can maintain an indoor temperature of 23˚C even in the worst scenario (52˚C outside temperature and 3% humidity). The climate test took place in the Utrecht province and is one of many tests regarding the mega-order received from United Arab Emirates earlier this year. From 2020, five vehicles will perform fully autonomous shuttle services to and from Bluewater Island in Dubai.
October 26, 2017 Read time: 2 mins

8172 2getthere’s Group Rapid Tansit (GRT) autonomous vehicle has proven in a simulated desert climate that it can maintain an indoor temperature of 23˚C even in the worst scenario (52˚C outside temperature and 3% humidity). The climate test took place in the Utrecht province and is one of many tests regarding the mega-order received from United Arab Emirates earlier this year. From 2020, five vehicles will perform fully autonomous shuttle services to and from Bluewater Island in Dubai.

GRT was subject to three tests in weather conditions such as ‘hot dry’ and ‘hot humid’ with a focus on the performance of the air conditioning system (ACS) at the vehicles maximum capacity of 24 passengers.

13 ACS has been developed in collaboration with suppliers DC Airco and Netherlands Aerospace Centre (NLR) who used the simulation of heat management in relation to airflow within the vehicle in its design of the air conditioning. Its development has been partly financed through a 2024 Massachusetts Institute of Technology research grant in which DC Airco and 2getthere have both participated.

The simulated weather conditions included extremely high temperatures and sun radiation with average peaks in the sun radiation of 1,040 Watts per square metre and peaks in temperature of 52˚C around 3.30pm. In the climatic chamber, both peaks were simulated at the same time.

The GRT’s 16 standing passengers represented 120 Watts each and eight seated passengers each represented 100 Watts were simulated by placing a 3000-Watt heat source inside the vehicle. Part of the test focused on performance during transition: the speed at which indoor conditions are brought back to the most comfortable level for passengers after the doors close and the vehicle starts its journey. The most extreme test was based on the vehicle standing still with the doors open for six minutes, but in actual circumstances much shorter stops will be sufficient to allow 24 passengers to enter the vehicle and find their seats.

According to 2getthere the test marks another step towards the operational deployment of the system, scheduled for 2019/2020.

For more information on companies in this article

Related Content

  • Report highlights community impact of new mobility options
    March 29, 2018
    Local authorities and communities must understand the impacts of the new mobility options and regulate to get the transport systems they want, according to a new report. Colin Sowman takes a look. Outside of the big cities plagued with congestion, the existing transportation system(s) often cope adequately, and the ongoing workload (maintenance, safety…) is more than enough to keep local transport authorities busy. Is it, therefore, a good use of public service employees’ time to keep abreast of the raft
  • Abertis helps Spain roll out LEZ projects
    November 30, 2021
    Abertis Mobility Services will help cities across the country to comply with new law
  • $1m Dubai AV competition hots up
    November 7, 2022
    Dubai World Challenge for Self-Driving Transport focuses this year on buses
  • Europe to test autonomous cars with motorcycles
    December 1, 2016
    Following a letter written by motorcyclists’ organisations Federation of European Motorcyclists' Associations (FEMA), MAG NL and KNMV sent to the Netherlands Vehicle Authority RDW, expressing concerns about European type approval for Tesla, vehicle authorities will cooperate with motorcyclists’ organisations and conduct their own test program with different brands of semi-autonomous cars. A driver of a Tesla – and of an increasing number of advanced cars – can leave key actions to the vehicle, while in t