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Cooling and heating parts for Land Rover and Range Rover models across the Defender, Discovery, Range Rover, Freelander and Series families. Radiators, thermostats, water pumps, expansion tanks, coolant hoses, viscous fans, heater matrix components and HVAC blower parts, stocked in our Dutch warehouse network for EU dispatch.
Intercooler Hose for the turbocharger charge-air circuit. It carries pressurised air between the turbocharger, intercooler and intake on the diesel...
View full detailsCoolant Hose for the heater circuit, carrying coolant back from the heater matrix to the engine cooling system. This is the return leg of the cabi...
View full detailsCoolant Hose for the heater circuit, routing engine coolant to the heater control valve that feeds the heater matrix. Part of the cabin heating ci...
View full detailsHeater Inlet Hose for the heater coolant circuit. This moulded hose carries hot coolant from the engine into the heater matrix, forming the feed s...
View full detailsOil Cooler Hose connecting the oil filter housing to the oil cooler within the engine oil cooling circuit, for diesel engine applications. It carr...
View full detailsOil Cooler Repair Kit for the Td5 engine, serving the oil cooler within the engine lubrication and cooling circuit. The kit renews the oil cooler ...
View full detailsOil Cooler Hose for the engine oil cooling circuit on the V8 engine. Forms part of the hose assembly linking the engine oil cooler to the oil circ...
View full detailsRadiator for the engine cooling system, supplied with an integral oil cooler section. Coolant leaving the engine enters the top tank, passes down ...
View full detailsTop Radiator Hose forming part of the engine cooling circuit. It connects the engine coolant outlet to the top of the radiator, carrying hot coola...
View full detailsOil Cooler Feed Pipe for the engine oil cooling system of the Defender, carrying pressurised oil from the engine to the oil cooler. This pipe is p...
View full detailsIntercooler Hose forms part of the charge-air ducting on the 2.2L TD4 single-turbo diesel engine. It carries pressurised charge air through the in...
View full detailsTiming belt kit with water pump OEM
Intercooler Hose forms part of the charge-air ducting on the 2.2L diesel engine. It connects the turbocharger outlet to the intercooler, carrying ...
View full detailsWater Pump for the engine cooling circuit on the 3.0L V6 diesel engine. This pump circulates coolant through the engine block, cylinder heads, and...
View full detailsOil Cooler O-Ring for the engine oil cooler and filter housing assembly. The Ø 9.5mm O-ring seals the oil-carrying joint between the engine block a...
View full detailsO-Ring sealing the oil cooler and filter housing on the 3.0L V6 diesel engine. Positioned at the mating interface between the oil cooler assembly ...
View full detailsWater Pump for the engine cooling circuit. The pump circulates coolant through the cylinder block, cylinder head and radiator to maintain engine op...
View full detailsIntercooler for the 2.2L Td4 turbo-diesel charge-air cooling circuit. Mounted in the airflow at the front of the vehicle, the intercooler cools th...
View full detailsWater Pump - coolant pump for the 3.6L V8 TDV8 (Lion) diesel engine. Driven from the engine, it circulates coolant through the block, cylinder hea...
View full detailsHeater Valve - T-Piece for the engine cooling and heating circuit. Directs coolant flow through the heater circuit, providing controlled distribut...
View full detailsAir Conditioning Condenser for R134a refrigerant systems, mounted at the front of the vehicle ahead of the radiator. It rejects heat from the high-...
View full detailsHeater Blower Motor - the twin-fan blower motor assembly for the front heating, ventilation and air conditioning (HVAC) system. Mounted in the HVA...
View full detailsHeater Matrix Assembly for the heater and ventilation system. Acts as the heater core, transferring heat from the engine coolant to the air drawn ...
View full detailsOil Cooler Assembly for the engine oil cooling circuit on V8 petrol applications. Mounted in the oil flow path, it passes hot engine oil through a...
View full detailsOil Cooler Pipe connecting the oil cooler to the engine in the oil cooler circuit. It returns engine oil from the cooler to the engine. Used on 2....
View full detailsOil Cooler Pipe in the engine oil cooler circuit of the 2.5L four-cylinder engine. It carries engine oil between the engine and the oil cooler.
Transmission Oil Cooler dissipates heat from the automatic transmission fluid. It forms part of the transmission cooling circuit: fluid is pumped ...
View full detailsIntercooler Hose the upper charge-air hose in the intercooler circuit of the 200TDi diesel engine. It carries cooled, pressurised charge air from ...
View full detailsOil Cooler Hose forms part of the engine oil cooling circuit, carrying oil between the engine and the front-mounted oil cooler. It feeds hot oil t...
View full detailsOil Cooler Water Hose for the 2.0-litre four-cylinder diesel engine in non-air-conditioned configuration. It forms part of the engine cooling circ...
View full detailsCoolant Pipe is a rigid coolant transfer pipe in the cooling circuit of the 3.5L V8 (twin-carburettor) petrol engine. It carries coolant between t...
View full detailsHeater Deflector fits to the outer heater housing to redirect heated air from the outlet into the footwell. Part of the HVAC heater assembly, it c...
View full detailsUpgrade your Freelander 1 with the high-performance Silicone Intercooler and Turbo Hose Kit designed for the 2.0 Td4 Diesel engine. This 3-piece si...
View full detailsHeater Return Hose forming part of the engine coolant circuit that feeds the cabin heater. It carries coolant on the return side of the heater mat...
View full detailsInlet Heater Hose - 300TDi - RHD
Heater Return Hose moulded coolant hose within the heater circuit, carrying coolant from the heater matrix back to the engine cooling system. Shap...
View full detailsAir Conditioning Condenser - part of the air conditioning refrigerant circuit, mounted at the front of the vehicle in the airflow path ahead of the...
View full detailsWater Pump for the 4.4L V8 petrol engine, forming part of the coolant circulation circuit. Driven by the accessory drive belt, the pump circulates...
View full detailsHeater Wiring Harness is the loom that supplies the heater blower motor circuit. Wired for two-speed operation, it connects the heater switch to t...
View full detailsRadiator for the engine cooling system, serving as the primary heat exchanger that dissipates heat from the coolant circulating through the 3.5L V8...
View full detailsThermostat for the engine cooling circuit of the 2.6L six-cylinder petrol engine, with a 74°C opening temperature. It regulates coolant flow betwe...
View full detailsWater Pump Stud - a mounting stud for the coolant pump in the engine cooling system. It screws into the timing cover / cylinder block and clamps t...
View full detailsRadiator Panel for the front-end assembly on Series III models. This panel forms the surround and support structure for the radiator, integrating w...
View full detailsHeater Air Intake Trim fits the front wing air intake of the heating and ventilation system. It finishes the fresh-air intake aperture in the wing...
View full detailsWater Pump Seal for the engine cooling system on TDV6 diesel engines. The seal is fitted to the water pump and prevents coolant from leaking past t...
View full detailsThermostat for the engine cooling circuit, regulating coolant flow to maintain the correct operating temperature. It remains closed during warm-up...
View full detailsThermostat regulates coolant flow within the engine cooling system of the 3.0L V6 diesel. It remains closed during warm-up to bring the engine qui...
View full detailsThermostat and Housing for the 2.0L 16V Ti-VCT petrol engine, supplied complete as a sealed assembly. It sits in the engine cooling circuit and reg...
View full detailsSystem Overview
The cabin heater on Land Rover and Range Rover vehicles runs on coolant from the engine cooling circuit. A blocked heater matrix, a stuck heater valve, or a coolant leak inside the heater core all show up first as a heating fault, then as a cooling-system fault once coolant level drops far enough. For that reason this collection lists both: the cooling-circuit parts (radiators, thermostats, water pumps, hoses, expansion tanks, viscous fans, oil coolers) and the heating-side parts that share the same coolant loop (heater matrix, heater valves, blend door actuators, blower motors). Air-conditioning parts (compressors, condensers, evaporators) are included where stocked, since they share the climate-control housing with the heater on most generations.
Model Family ReferenceThe cooling demands and common failure points differ enough between model families that ordering by year and engine matters more than ordering by part description. The following is what to expect by family.
Cooling is a conventional belt-driven water pump, brass-cored radiator, and wax-pellet thermostat. Replacement is straightforward, but radiator core specification varies between 2.25 petrol and 2.25 diesel variants, and between long and short wheelbase chassis. Series owners should verify radiator dimensions against the existing unit before ordering, not against the catalogue listing alone.
Cooling layouts vary by engine across the production run. 200Tdi and 300Tdi share the basic intercooled diesel cooling architecture but with different hose routing and thermostat housings. Td5 introduces a viscous fan with electromagnetic clutch and a separate engine oil cooler. The 2.4 TDCi and 2.2 TDCi Puma variants add a charge-air cooler and revised expansion tank routing. Hose part numbers do not cross-reference between Tdi and Td5, even where the connection points look similar.
Discovery 1 shares cooling architecture with the contemporary Defender Tdi and Range Rover Classic V8. Discovery 2 Td5 introduces the same viscous-fan-with-clutch arrangement as the Defender Td5 and uses the same Td5-specific hose set. Discovery 2 V8 cooling is similar to the late Range Rover Classic V8 layout but is not interchangeable in detail.
These share the IBF platform and the 2.7 TDV6 (276DT) or 3.0 TDV6 (306DT) Lion engine architecture. The TDV6 plastic thermostat housing assembly is a known degradation item across this group: the housing cracks at the welded plastic seams, dropping coolant slowly enough that the first symptom is often a low-level warning rather than an overheat. Aluminium replacement housings are available and are the default sensible upgrade when the OEM plastic unit comes off. The water pump on the 3.0 TDV6 is timing-chain driven, so pump replacement is typically part of a wider timing service rather than a standalone job. Hose kits and the upper water outlet o-ring sets are sold separately and are model-year specific.
BMW M51 diesel and the late Rover V8 share the chassis but not the cooling layout. M51 cooling parts are largely shared with contemporary BMW E34/E36 platforms in part-number terms, so cross-reference is straightforward. The Rover V8 in P38 retains the classic-V8 thermostat housing pattern.
BMW M62 V8 petrol cooling (early production) gives way to the Jaguar AJ-V8 and TDV8 architectures (later production). Cooling layouts are not interchangeable between the M62 and the AJ-V8 era despite the same chassis code.
Modern aluminium-block Ingenium and 3.0 V6 variants use composite plastic cooling housings, electric water pumps on some variants, and integrated cooling-and-HVAC control modules. OEM part numbers are the only reliable cross-reference; visual identification across model years is unreliable on this generation.
K-Series cooling failure on the Freelander 1 is the well-documented head gasket weakness; coolant loss without a visible external leak is the diagnostic indicator. Freelander 2 water pump bearing failure is the dominant cooling fault on that generation, producing gradual overheating and reduced circulation rather than a sudden leak. The impeller can corrode on early FL2 variants and lose circulation without any visible drip.
Buyer ConfidenceCooling failures are urgent. Buyers under time pressure tend to order the most visible part first and discover the actual fault later. The following recurrences turn up in workshop returns.
On the 2.7 and 3.0 TDV6, the plastic thermostat housing cracks before the thermostat itself fails. Ordering only the thermostat means a second job a few months later. Replace the housing as an assembly, and inspect the upper hose connector and oil cooler o-rings while the circuit is drained.
On older diesels (Td5, 300Tdi) and on the Freelander 2, a worn water pump produces gradual overheating that mimics a partial radiator blockage. The radiator core may still flow fine on a flush test. Check pump pulley play and look for weeping at the front of the engine block before ordering a radiator.
Hose part numbers do not cross-reference between Tdi and Td5 on the Defender and Discovery, between M62 and AJ-V8 on the L322, or between 2.7 and 3.0 TDV6 despite shared overall layout. Use OEM part numbers, not catalogue descriptions.
On Discovery 2 and Td5-era Defenders, a non-functioning cabin heater is more often a stuck heater valve than a blocked matrix. Diagnose before ordering the matrix, since matrix replacement is dashboard-out labour and the valve is not.
Pre-Purchase Fitment ChecksA few checks save returns and second orders on cooling-system parts.
When the TDV6 plastic thermostat housing comes off, the upper water outlet o-ring set contains two of the three required o-rings on the genuine kit. The third o-ring is the most common source of a post-replacement leak. Either source the third o-ring separately from a generic Viton supplier (BS211 size cross-references on the genuine seal) or check the supplier's listing before placing the order.
Freelander 2 water pump failure is gradual, not sudden. Check pump pulley axial play and look for coolant weeping below the pump at every service from 80,000 km onwards. A bearing changed before it seizes prevents the impeller-corrosion secondary fault that turns a 1-hour job into a head-off coolant-contamination job.
A technical reference covering thermostat, water pump, radiator, hose and expansion tank diagnosis sequence, with model-specific failure patterns for the Discovery 4, Range Rover Sport L320, Freelander 2 and Tdi-era vehicles.
Land Rover overheating diagnosis guideA model-specific reference on why the TDV6 plastic thermostat housing fails on the Discovery 4 and what to replace as a complete assembly, including the upper water outlet and o-ring set.
Discovery 4 thermostat housing replacement guideA maintenance reference for the Freelander 1 covering the K-Series head gasket failure pattern, M47R Td4 cooling-side considerations, and the parts needed to address cooling-loop integrity.
Freelander 1 cooling system guideIn-stock radiators for Land Rover and Range Rover models, filterable by engine family above the grid.
Land Rover radiators collectionDefender parts collection covering Classic Defender (1983 to 2016) and New Defender L663 across all engine families.
Defender parts collectionDiscovery parts spanning Discovery 1 through Discovery 5 and Discovery Sport. Filter to your generation above the grid.
Discovery parts collectionRange Rover parts spanning Classic through L460, plus Sport L320, L494, L461, Evoque and Velar. Filter to your generation above the grid.
Range Rover parts collectionFreelander 1 (L314) and Freelander 2 (L359) parts, including K-Series, M47R Td4 and DW12 cooling components.
Freelander parts collectionLand Rover Series I, II, IIA and III parts, including radiator core variants for 2.25 petrol and diesel chassis.
Series parts collectionEngine parts including timing components, gaskets and ancillaries that pair with cooling-system work.
Engine parts collectionThe cabin heater on Land Rover and Range Rover vehicles runs on coolant from the engine cooling loop. A blocked heater matrix or stuck heater valve drops coolant flow and shows up as both a heating fault and a cooling-system fault. Listing both categories together reflects how the systems are linked on the vehicle.
Cooling parts are engine-specific rather than model-specific. Identify your engine family (200Tdi, 300Tdi, Td5, 2.7 TDV6, 3.0 TDV6, M62, AJ-V8, Ingenium and so on) and year of build before ordering. For Defender, Discovery 1 and Range Rover Classic produced before 1997, the chassis number is more reliable than the VIN for cross-referencing.
Air-conditioning compressors, condensers, evaporators and blower motors are listed where stocked, since they share the climate-control housing with the cabin heater on most Land Rover generations. Refrigerant servicing itself is outside the parts scope and is best handled by a workshop with the correct recovery equipment.
The cooling-circuit pressure check and coolant-condition check are part of every annual service on Land Rover vehicles. Factory coolant change intervals vary by engine family, with longer intervals on modern Ingenium variants than on older Td5 and TDV6 diesels. Always verify against the workshop manual entry for the specific engine.
The 2.7 and 3.0 TDV6 (Lion engine family, 276DT and 306DT) use a composite plastic thermostat housing assembly that degrades and cracks at the welded plastic seams over high-mileage service. Coolant loss is gradual; the first symptom is often a low-level warning rather than overheating. Aluminium replacement housings are widely available as a durable upgrade.
On belt-driven Land Rover engines (200Tdi, 300Tdi, M47R Freelander 1, 2.7 TDV6), the water pump is driven by the timing belt and should be replaced as a pair at every belt service. On chain-driven engines (3.0 TDV6, modern Ingenium variants), the water pump is a separate replacement, but on the 3.0 TDV6 the pump is driven by the timing chain, so pump replacement is typically scheduled as part of a wider timing service.
Updated: 17 May 2026